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You searched for +publisher:"University of Florida" +contributor:("Mei, Renwei"). Showing records 1 – 30 of 40 total matches.

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University of Florida

1. Singh, Shantanu. Computational Investigation of Buoyancy Effect on Temperature Field over an Axisymmetric Microheater.

Degree: MS, Mechanical Engineering - Mechanical and Aerospace Engineering, 2017, University of Florida

 Steady state, laminar, external natural convection flow over a horizontal, circular, isothermal microheater is studied for Rayleigh number range up to 100 at Prandtl number… (more)

Subjects/Keywords: axisymmetric  – microheater  – nucleation

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APA (6th Edition):

Singh, S. (2017). Computational Investigation of Buoyancy Effect on Temperature Field over an Axisymmetric Microheater. (Masters Thesis). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0051624

Chicago Manual of Style (16th Edition):

Singh, Shantanu. “Computational Investigation of Buoyancy Effect on Temperature Field over an Axisymmetric Microheater.” 2017. Masters Thesis, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0051624.

MLA Handbook (7th Edition):

Singh, Shantanu. “Computational Investigation of Buoyancy Effect on Temperature Field over an Axisymmetric Microheater.” 2017. Web. 20 Oct 2019.

Vancouver:

Singh S. Computational Investigation of Buoyancy Effect on Temperature Field over an Axisymmetric Microheater. [Internet] [Masters thesis]. University of Florida; 2017. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0051624.

Council of Science Editors:

Singh S. Computational Investigation of Buoyancy Effect on Temperature Field over an Axisymmetric Microheater. [Masters Thesis]. University of Florida; 2017. Available from: http://ufdc.ufl.edu/UFE0051624


University of Florida

2. Su, Jing. Development of a Novel Compact Reformer for PEMFC.

Degree: PhD, Chemical Engineering, 2009, University of Florida

 A compact reformer to produce hydrogen for portable fuel cell applications is presented in this thesis. This reformer is a conventional single-path tubular reactor type… (more)

Subjects/Keywords: Catalysts; Flow velocity; Fuel cells; Hydrogen; Hydrogen production; Oxygen; Teeth; Water flow; Water tables; Water temperature; cell, compact, fuel, hydrogen, methanol, pemfc, refomer

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APA (6th Edition):

Su, J. (2009). Development of a Novel Compact Reformer for PEMFC. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0023567

Chicago Manual of Style (16th Edition):

Su, Jing. “Development of a Novel Compact Reformer for PEMFC.” 2009. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0023567.

MLA Handbook (7th Edition):

Su, Jing. “Development of a Novel Compact Reformer for PEMFC.” 2009. Web. 20 Oct 2019.

Vancouver:

Su J. Development of a Novel Compact Reformer for PEMFC. [Internet] [Doctoral dissertation]. University of Florida; 2009. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0023567.

Council of Science Editors:

Su J. Development of a Novel Compact Reformer for PEMFC. [Doctoral Dissertation]. University of Florida; 2009. Available from: http://ufdc.ufl.edu/UFE0023567


University of Florida

3. Colson, Fenner E. Fundamental Computation of Molecular Flux in Knudsen-Regime Nanopores.

Degree: PhD, Mechanical Engineering - Mechanical and Aerospace Engineering, 2014, University of Florida

 Molecular transport in systems of high Knudsen number is predominantly calculated using either Knudsens equation or by Einsteins relation coupled with computer simulations. However, Knudsens… (more)

Subjects/Keywords: Diffusion coefficient; Elementary particles; Geometric planes; Mathematics; Molecules; Particle collisions; Particle energy; Particle trajectories; Quantum statistics; Simulations; diffusion  – fick  – flux  – knudsen  – nanopores

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APA (6th Edition):

Colson, F. E. (2014). Fundamental Computation of Molecular Flux in Knudsen-Regime Nanopores. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0047480

Chicago Manual of Style (16th Edition):

Colson, Fenner E. “Fundamental Computation of Molecular Flux in Knudsen-Regime Nanopores.” 2014. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0047480.

MLA Handbook (7th Edition):

Colson, Fenner E. “Fundamental Computation of Molecular Flux in Knudsen-Regime Nanopores.” 2014. Web. 20 Oct 2019.

Vancouver:

Colson FE. Fundamental Computation of Molecular Flux in Knudsen-Regime Nanopores. [Internet] [Doctoral dissertation]. University of Florida; 2014. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0047480.

Council of Science Editors:

Colson FE. Fundamental Computation of Molecular Flux in Knudsen-Regime Nanopores. [Doctoral Dissertation]. University of Florida; 2014. Available from: http://ufdc.ufl.edu/UFE0047480


University of Florida

4. Bobek, Michael M. Investigation of Oxide Morphology, Reaction Kinetics and Mechanisms for Thermochemical Solar Fuel Production.

Degree: PhD, Mechanical Engineering - Mechanical and Aerospace Engineering, 2014, University of Florida

 There are many methods available for capturing solar energy, most notably, photovoltaic methods provide a direct conversion of the light into electricity, and solar concentrators… (more)

Subjects/Keywords: Data lines; Electrons; Hydrogen; Ions; Iron oxides; Oxidation; Oxides; Oxygen; Signals; Water splitting; energy  – solar

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APA (6th Edition):

Bobek, M. M. (2014). Investigation of Oxide Morphology, Reaction Kinetics and Mechanisms for Thermochemical Solar Fuel Production. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0047431

Chicago Manual of Style (16th Edition):

Bobek, Michael M. “Investigation of Oxide Morphology, Reaction Kinetics and Mechanisms for Thermochemical Solar Fuel Production.” 2014. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0047431.

MLA Handbook (7th Edition):

Bobek, Michael M. “Investigation of Oxide Morphology, Reaction Kinetics and Mechanisms for Thermochemical Solar Fuel Production.” 2014. Web. 20 Oct 2019.

Vancouver:

Bobek MM. Investigation of Oxide Morphology, Reaction Kinetics and Mechanisms for Thermochemical Solar Fuel Production. [Internet] [Doctoral dissertation]. University of Florida; 2014. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0047431.

Council of Science Editors:

Bobek MM. Investigation of Oxide Morphology, Reaction Kinetics and Mechanisms for Thermochemical Solar Fuel Production. [Doctoral Dissertation]. University of Florida; 2014. Available from: http://ufdc.ufl.edu/UFE0047431


University of Florida

5. Shaikh, Saif Asif. Dynamics and Rheology of Concentrated Suspensions of Rigid Fibers.

Degree: PhD, Chemical Engineering, 2017, University of Florida

 A combined work of experiments and numerical simulations is proposed to investigate the dynamics and rheology of highly concentrated suspensions of non-colloidal rigid rods in… (more)

Subjects/Keywords: rheology  – suspensions

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APA (6th Edition):

Shaikh, S. A. (2017). Dynamics and Rheology of Concentrated Suspensions of Rigid Fibers. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0051779

Chicago Manual of Style (16th Edition):

Shaikh, Saif Asif. “Dynamics and Rheology of Concentrated Suspensions of Rigid Fibers.” 2017. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0051779.

MLA Handbook (7th Edition):

Shaikh, Saif Asif. “Dynamics and Rheology of Concentrated Suspensions of Rigid Fibers.” 2017. Web. 20 Oct 2019.

Vancouver:

Shaikh SA. Dynamics and Rheology of Concentrated Suspensions of Rigid Fibers. [Internet] [Doctoral dissertation]. University of Florida; 2017. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0051779.

Council of Science Editors:

Shaikh SA. Dynamics and Rheology of Concentrated Suspensions of Rigid Fibers. [Doctoral Dissertation]. University of Florida; 2017. Available from: http://ufdc.ufl.edu/UFE0051779


University of Florida

6. Cook, Charles R. Development of a General Thermodynamically Consistent Projection Method for the Navier-Stokes Equations and Its Application to Compressible Natural Convection of Real Fluids.

Degree: PhD, Aerospace Engineering - Mechanical and Aerospace Engineering, 2015, University of Florida

 The development of a general method for the direct solution of the Navier-Stokes equations, where no assumptions or modeling are required, with any equation of… (more)

Subjects/Keywords: Equations of state; Free convection; Ideal gas; Momentum; Nusselt number; Surface contours; Surface temperature; Temperature distribution; Thermodynamics; Velocity; boussinesq  – cbs  – cfd  – characteristic  – compressible  – convection  – fem  – fluid  – galerkin  – incompressible  – mcbs  – navier  – projection  – rayleigh  – simulation  – stokes  – sutherland  – thermodynamic

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APA (6th Edition):

Cook, C. R. (2015). Development of a General Thermodynamically Consistent Projection Method for the Navier-Stokes Equations and Its Application to Compressible Natural Convection of Real Fluids. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0049535

Chicago Manual of Style (16th Edition):

Cook, Charles R. “Development of a General Thermodynamically Consistent Projection Method for the Navier-Stokes Equations and Its Application to Compressible Natural Convection of Real Fluids.” 2015. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0049535.

MLA Handbook (7th Edition):

Cook, Charles R. “Development of a General Thermodynamically Consistent Projection Method for the Navier-Stokes Equations and Its Application to Compressible Natural Convection of Real Fluids.” 2015. Web. 20 Oct 2019.

Vancouver:

Cook CR. Development of a General Thermodynamically Consistent Projection Method for the Navier-Stokes Equations and Its Application to Compressible Natural Convection of Real Fluids. [Internet] [Doctoral dissertation]. University of Florida; 2015. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0049535.

Council of Science Editors:

Cook CR. Development of a General Thermodynamically Consistent Projection Method for the Navier-Stokes Equations and Its Application to Compressible Natural Convection of Real Fluids. [Doctoral Dissertation]. University of Florida; 2015. Available from: http://ufdc.ufl.edu/UFE0049535


University of Florida

7. Roberts, William. Adaptive Radar Signal Processing.

Degree: PhD, Electrical and Computer Engineering, 2010, University of Florida

 Probing waveform synthesis and receive filter design play crucial roles in achievable performance for many radar applications. A flexible receive filter design approach, at the… (more)

Subjects/Keywords: Antenna arrays; Antenna design; Antennas; Matched filters; Radar; Sidelobes; Signal processing; Signals; Supernova remnants; Waveforms; adaptive, array, beamforming, mimo, phased, processing, radar, receive, signal, transmit

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APA (6th Edition):

Roberts, W. (2010). Adaptive Radar Signal Processing. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0041432

Chicago Manual of Style (16th Edition):

Roberts, William. “Adaptive Radar Signal Processing.” 2010. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0041432.

MLA Handbook (7th Edition):

Roberts, William. “Adaptive Radar Signal Processing.” 2010. Web. 20 Oct 2019.

Vancouver:

Roberts W. Adaptive Radar Signal Processing. [Internet] [Doctoral dissertation]. University of Florida; 2010. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0041432.

Council of Science Editors:

Roberts W. Adaptive Radar Signal Processing. [Doctoral Dissertation]. University of Florida; 2010. Available from: http://ufdc.ufl.edu/UFE0041432


University of Florida

8. Hughes, Christopher R. Multiphysics Analysis of Supercritical Fluids for Nuclear Reactor Application.

Degree: PhD, Mechanical Engineering - Mechanical and Aerospace Engineering, 2016, University of Florida

 The large and continuous density variations with temperature that occur as a supercritical fluid is heated increase the complexity of analysis of the coupled physics… (more)

Subjects/Keywords: Boundary conditions; Geometry; Heat transfer; Neutrons; Reynolds stress; Spectral methods; Tensors; Turbulence models; Velocity; Water temperature; cfd  – dns  – neutronics

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APA (6th Edition):

Hughes, C. R. (2016). Multiphysics Analysis of Supercritical Fluids for Nuclear Reactor Application. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0049857

Chicago Manual of Style (16th Edition):

Hughes, Christopher R. “Multiphysics Analysis of Supercritical Fluids for Nuclear Reactor Application.” 2016. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0049857.

MLA Handbook (7th Edition):

Hughes, Christopher R. “Multiphysics Analysis of Supercritical Fluids for Nuclear Reactor Application.” 2016. Web. 20 Oct 2019.

Vancouver:

Hughes CR. Multiphysics Analysis of Supercritical Fluids for Nuclear Reactor Application. [Internet] [Doctoral dissertation]. University of Florida; 2016. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0049857.

Council of Science Editors:

Hughes CR. Multiphysics Analysis of Supercritical Fluids for Nuclear Reactor Application. [Doctoral Dissertation]. University of Florida; 2016. Available from: http://ufdc.ufl.edu/UFE0049857


University of Florida

9. Ling, Yue. Modeling and Simulation of Particle Dispersal by Shock and Detonation Waves.

Degree: PhD, Mechanical Engineering - Mechanical and Aerospace Engineering, 2010, University of Florida

 Particle dispersal by shock and detonation waves is an interesting and important phenomenon that can be observed in nature, such as in volcanic eruptions, and… (more)

Subjects/Keywords: Blasts; Heat transfer; Interpolation; Particle density; Particle interactions; Particle motion; Shock discontinuity; Shock waves; Simulations; Velocity; compressible, detonation, flow, fluid, multiphase, particle, shock

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APA (6th Edition):

Ling, Y. (2010). Modeling and Simulation of Particle Dispersal by Shock and Detonation Waves. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0042428

Chicago Manual of Style (16th Edition):

Ling, Yue. “Modeling and Simulation of Particle Dispersal by Shock and Detonation Waves.” 2010. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0042428.

MLA Handbook (7th Edition):

Ling, Yue. “Modeling and Simulation of Particle Dispersal by Shock and Detonation Waves.” 2010. Web. 20 Oct 2019.

Vancouver:

Ling Y. Modeling and Simulation of Particle Dispersal by Shock and Detonation Waves. [Internet] [Doctoral dissertation]. University of Florida; 2010. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0042428.

Council of Science Editors:

Ling Y. Modeling and Simulation of Particle Dispersal by Shock and Detonation Waves. [Doctoral Dissertation]. University of Florida; 2010. Available from: http://ufdc.ufl.edu/UFE0042428


University of Florida

10. Mastanaiah, Navya. Dielectric Barrier Discharge (DBD) Surface Plasma Sterilization An In-Depth Study of the Factors Contributing to and Enhancing the Sterilization Process.

Degree: PhD, Aerospace Engineering - Mechanical and Aerospace Engineering, 2013, University of Florida

 Plasma sterilization is a method in which ionized gas is used to treat contaminated objects or surfaces. It can be divided into two regimes: volume… (more)

Subjects/Keywords: Dielectric materials; Electric potential; Electrodes; Narrative devices; Ozone; Plasma generators; Plasmas; Species; Sterilization; Surface temperature; barrier  – dielectric  – discharge  – plasma  – sterilization

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APA (6th Edition):

Mastanaiah, N. (2013). Dielectric Barrier Discharge (DBD) Surface Plasma Sterilization An In-Depth Study of the Factors Contributing to and Enhancing the Sterilization Process. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0045949

Chicago Manual of Style (16th Edition):

Mastanaiah, Navya. “Dielectric Barrier Discharge (DBD) Surface Plasma Sterilization An In-Depth Study of the Factors Contributing to and Enhancing the Sterilization Process.” 2013. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0045949.

MLA Handbook (7th Edition):

Mastanaiah, Navya. “Dielectric Barrier Discharge (DBD) Surface Plasma Sterilization An In-Depth Study of the Factors Contributing to and Enhancing the Sterilization Process.” 2013. Web. 20 Oct 2019.

Vancouver:

Mastanaiah N. Dielectric Barrier Discharge (DBD) Surface Plasma Sterilization An In-Depth Study of the Factors Contributing to and Enhancing the Sterilization Process. [Internet] [Doctoral dissertation]. University of Florida; 2013. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0045949.

Council of Science Editors:

Mastanaiah N. Dielectric Barrier Discharge (DBD) Surface Plasma Sterilization An In-Depth Study of the Factors Contributing to and Enhancing the Sterilization Process. [Doctoral Dissertation]. University of Florida; 2013. Available from: http://ufdc.ufl.edu/UFE0045949


University of Florida

11. Zhao, Ning. Characterizing Structure Rearrangement and Fragmentation Kinetics for Biomolecules in Gas Phase by Spectroscopy.

Degree: PhD, Chemistry, 2016, University of Florida

 Mass spectrometry (MS) is widely used to analyze biomolecules, although MS provides accurate mass-to-charge ratios, the amount of structural information is limited. Spectroscopy techniques can… (more)

Subjects/Keywords: Atoms; Indoles; Ions; Kinetics; Lasers; Mass spectra; Mass spectroscopy; Nitrogen; Photons; Protons; dissociation  – infrared  – mass  – multiple  – photon  – spectrometry

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APA (6th Edition):

Zhao, N. (2016). Characterizing Structure Rearrangement and Fragmentation Kinetics for Biomolecules in Gas Phase by Spectroscopy. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0050616

Chicago Manual of Style (16th Edition):

Zhao, Ning. “Characterizing Structure Rearrangement and Fragmentation Kinetics for Biomolecules in Gas Phase by Spectroscopy.” 2016. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0050616.

MLA Handbook (7th Edition):

Zhao, Ning. “Characterizing Structure Rearrangement and Fragmentation Kinetics for Biomolecules in Gas Phase by Spectroscopy.” 2016. Web. 20 Oct 2019.

Vancouver:

Zhao N. Characterizing Structure Rearrangement and Fragmentation Kinetics for Biomolecules in Gas Phase by Spectroscopy. [Internet] [Doctoral dissertation]. University of Florida; 2016. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0050616.

Council of Science Editors:

Zhao N. Characterizing Structure Rearrangement and Fragmentation Kinetics for Biomolecules in Gas Phase by Spectroscopy. [Doctoral Dissertation]. University of Florida; 2016. Available from: http://ufdc.ufl.edu/UFE0050616


University of Florida

12. Li, Like. Computational Study of Heat Transfer in Fluid-Solid Flows.

Degree: PhD, Mechanical Engineering - Mechanical and Aerospace Engineering, 2013, University of Florida

 Efficient and accurate heat transfer evaluation is essential to the study of thermal flows and energy exchange in fluid-solid systems. For fluid-solid flows with moving… (more)

Subjects/Keywords: Boundary conditions; Conceptual lattices; Conductive heat transfer; Error rates; Heat flux; Heat transfer; Modeling; Simulations; Temperature distribution; Velocity; heat-transfer  – lattice-boltzmann

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APA (6th Edition):

Li, L. (2013). Computational Study of Heat Transfer in Fluid-Solid Flows. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0045862

Chicago Manual of Style (16th Edition):

Li, Like. “Computational Study of Heat Transfer in Fluid-Solid Flows.” 2013. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0045862.

MLA Handbook (7th Edition):

Li, Like. “Computational Study of Heat Transfer in Fluid-Solid Flows.” 2013. Web. 20 Oct 2019.

Vancouver:

Li L. Computational Study of Heat Transfer in Fluid-Solid Flows. [Internet] [Doctoral dissertation]. University of Florida; 2013. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0045862.

Council of Science Editors:

Li L. Computational Study of Heat Transfer in Fluid-Solid Flows. [Doctoral Dissertation]. University of Florida; 2013. Available from: http://ufdc.ufl.edu/UFE0045862


University of Florida

13. ALNAIMAT,FADI M. Transient Analysis of Solar Diffusion Driven Desalination.

Degree: PhD, Mechanical Engineering - Mechanical and Aerospace Engineering, 2011, University of Florida

 This research concerns a transient analysis of the solar diffusion driven desalination (DDD) process, in which solar energy is utilized as the driving source to… (more)

Subjects/Keywords: Desalination; Energy consumption; Evaporators; Fresh water; Inlet temperature; Inlets; Liquids; Saltwater; Sea water; Water temperature; DESALINATION  – ENERGY  – SOLAR

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APA (6th Edition):

M, A. (2011). Transient Analysis of Solar Diffusion Driven Desalination. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0042677

Chicago Manual of Style (16th Edition):

M, ALNAIMAT,FADI. “Transient Analysis of Solar Diffusion Driven Desalination.” 2011. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0042677.

MLA Handbook (7th Edition):

M, ALNAIMAT,FADI. “Transient Analysis of Solar Diffusion Driven Desalination.” 2011. Web. 20 Oct 2019.

Vancouver:

M A. Transient Analysis of Solar Diffusion Driven Desalination. [Internet] [Doctoral dissertation]. University of Florida; 2011. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0042677.

Council of Science Editors:

M A. Transient Analysis of Solar Diffusion Driven Desalination. [Doctoral Dissertation]. University of Florida; 2011. Available from: http://ufdc.ufl.edu/UFE0042677


University of Florida

14. Kwon, Jiwoon. Rheological Behavior of Gelatin at High Shear Rates.

Degree: PhD, Mechanical Engineering - Mechanical and Aerospace Engineering, 2010, University of Florida

 Gelatin is used as a model material or as a surrogate in biomedical investigation due to its properties being similar to human organ tissue. For… (more)

Subjects/Keywords: Ballistics; Gelatins; Gels; Momentum; Shear stress; Signals; Specimens; Strain rate; Velocity; Viscosity; ballistic, compressive, high, polymer, power, self

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APA (6th Edition):

Kwon, J. (2010). Rheological Behavior of Gelatin at High Shear Rates. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0041904

Chicago Manual of Style (16th Edition):

Kwon, Jiwoon. “Rheological Behavior of Gelatin at High Shear Rates.” 2010. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0041904.

MLA Handbook (7th Edition):

Kwon, Jiwoon. “Rheological Behavior of Gelatin at High Shear Rates.” 2010. Web. 20 Oct 2019.

Vancouver:

Kwon J. Rheological Behavior of Gelatin at High Shear Rates. [Internet] [Doctoral dissertation]. University of Florida; 2010. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0041904.

Council of Science Editors:

Kwon J. Rheological Behavior of Gelatin at High Shear Rates. [Doctoral Dissertation]. University of Florida; 2010. Available from: http://ufdc.ufl.edu/UFE0041904


University of Florida

15. TRIPLETT,BRIAN SCOTT. Generation of Fast Neutron Spectra using an Adaptive Gauss-Kronrod Quadrature Algorithm.

Degree: PhD, Nuclear Engineering Sciences - Nuclear and Radiological Engineering, 2011, University of Florida

 A lattice physics calculation is often the first step in analyzing a nuclear reactor. This calculation condenses regions of the reactor into average parameters (i.e.,… (more)

Subjects/Keywords: Energy; Error rates; Fuel cells; Gaussian quadratures; Isotopes; Libraries; Neutron spectra; Neutrons; Nuclides; Spectral methods; GAUSS  – INTEGRATION  – KRONROD  – LATTICE  – NUCLEAR  – NUMERICAL

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APA (6th Edition):

SCOTT, T. (2011). Generation of Fast Neutron Spectra using an Adaptive Gauss-Kronrod Quadrature Algorithm. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0042859

Chicago Manual of Style (16th Edition):

SCOTT, TRIPLETT,BRIAN. “Generation of Fast Neutron Spectra using an Adaptive Gauss-Kronrod Quadrature Algorithm.” 2011. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0042859.

MLA Handbook (7th Edition):

SCOTT, TRIPLETT,BRIAN. “Generation of Fast Neutron Spectra using an Adaptive Gauss-Kronrod Quadrature Algorithm.” 2011. Web. 20 Oct 2019.

Vancouver:

SCOTT T. Generation of Fast Neutron Spectra using an Adaptive Gauss-Kronrod Quadrature Algorithm. [Internet] [Doctoral dissertation]. University of Florida; 2011. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0042859.

Council of Science Editors:

SCOTT T. Generation of Fast Neutron Spectra using an Adaptive Gauss-Kronrod Quadrature Algorithm. [Doctoral Dissertation]. University of Florida; 2011. Available from: http://ufdc.ufl.edu/UFE0042859


University of Florida

16. Garrity, Patrick. A Flow Boiling Microchannel Thermosyphon for Fuel Cell Thermal Management.

Degree: PhD, Mechanical Engineering - Mechanical and Aerospace Engineering, 2009, University of Florida

 To provide a high power density thermal management system for proton exchange membrane (PEM) fuel cell applications, a passively driven thermal management system was assembled… (more)

Subjects/Keywords: Boiling; Flow velocity; Foams; Fuel cells; Heat flux; Heat transfer; Microchannels; Pressure reduction; Vapors; Velocity; cell, fuel, microchannel, pem, thermal, thermosyphon

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APA (6th Edition):

Garrity, P. (2009). A Flow Boiling Microchannel Thermosyphon for Fuel Cell Thermal Management. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0024061

Chicago Manual of Style (16th Edition):

Garrity, Patrick. “A Flow Boiling Microchannel Thermosyphon for Fuel Cell Thermal Management.” 2009. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0024061.

MLA Handbook (7th Edition):

Garrity, Patrick. “A Flow Boiling Microchannel Thermosyphon for Fuel Cell Thermal Management.” 2009. Web. 20 Oct 2019.

Vancouver:

Garrity P. A Flow Boiling Microchannel Thermosyphon for Fuel Cell Thermal Management. [Internet] [Doctoral dissertation]. University of Florida; 2009. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0024061.

Council of Science Editors:

Garrity P. A Flow Boiling Microchannel Thermosyphon for Fuel Cell Thermal Management. [Doctoral Dissertation]. University of Florida; 2009. Available from: http://ufdc.ufl.edu/UFE0024061


University of Florida

17. Parmar, Manoj. Unsteady Forces on a Particle in Compressible Flows.

Degree: PhD, Aerospace Engineering - Mechanical and Aerospace Engineering, 2010, University of Florida

 Compressible multiphase flows occur in a variety of industrial and environmental problems. The key to improved prediction and control of these flows at the macroscale… (more)

Subjects/Keywords: Acceleration; Compressible flow; Cylinders; Drag coefficient; Mach number; Particle acceleration; Particle motion; Reynolds number; Shock waves; Velocity; axisymmetric, basset, boussinesq, compressible, drag, force, gatignol, history, inhomogeneous, inviscid, maxey, multiphase, nonuniform, oseen, particle, quasisteady, riley, shock, steady, unsteady, viscous

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APA (6th Edition):

Parmar, M. (2010). Unsteady Forces on a Particle in Compressible Flows. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0042516

Chicago Manual of Style (16th Edition):

Parmar, Manoj. “Unsteady Forces on a Particle in Compressible Flows.” 2010. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0042516.

MLA Handbook (7th Edition):

Parmar, Manoj. “Unsteady Forces on a Particle in Compressible Flows.” 2010. Web. 20 Oct 2019.

Vancouver:

Parmar M. Unsteady Forces on a Particle in Compressible Flows. [Internet] [Doctoral dissertation]. University of Florida; 2010. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0042516.

Council of Science Editors:

Parmar M. Unsteady Forces on a Particle in Compressible Flows. [Doctoral Dissertation]. University of Florida; 2010. Available from: http://ufdc.ufl.edu/UFE0042516


University of Florida

18. Rorrer, Leonard. Parameters Affecting Performance of Planar High-Field Asymmetric Waveform Ion Mobility Spectrometry (FAIMS).

Degree: PhD, Chemistry, 2010, University of Florida

 PARAMETERS AFFECTING PERFORMANCE OF PLANAR HIGH-FIELD ASYMMETRIC WAVEFORM ION MOBILITY SPECTROMETRY (FAIMS) By Leonard Calvin Rorrer, III December 2010 Chair: Richard A. Yost Major: Chemistry… (more)

Subjects/Keywords: Curtains; Electric potential; Field strength; Ions; Nitrogen; Phthalic acids; Signals; Solvents; Vapors; Waveforms; faims, ion, mass, mobility, planar, solvent, spectrometry

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APA (6th Edition):

Rorrer, L. (2010). Parameters Affecting Performance of Planar High-Field Asymmetric Waveform Ion Mobility Spectrometry (FAIMS). (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0042321

Chicago Manual of Style (16th Edition):

Rorrer, Leonard. “Parameters Affecting Performance of Planar High-Field Asymmetric Waveform Ion Mobility Spectrometry (FAIMS).” 2010. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0042321.

MLA Handbook (7th Edition):

Rorrer, Leonard. “Parameters Affecting Performance of Planar High-Field Asymmetric Waveform Ion Mobility Spectrometry (FAIMS).” 2010. Web. 20 Oct 2019.

Vancouver:

Rorrer L. Parameters Affecting Performance of Planar High-Field Asymmetric Waveform Ion Mobility Spectrometry (FAIMS). [Internet] [Doctoral dissertation]. University of Florida; 2010. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0042321.

Council of Science Editors:

Rorrer L. Parameters Affecting Performance of Planar High-Field Asymmetric Waveform Ion Mobility Spectrometry (FAIMS). [Doctoral Dissertation]. University of Florida; 2010. Available from: http://ufdc.ufl.edu/UFE0042321


University of Florida

19. Wang, Chin-Cheng. Numerical Modeling of Microscale Plasma Actuators.

Degree: PhD, Mechanical Engineering - Mechanical and Aerospace Engineering, 2009, University of Florida

 We present the study of the dielectric barrier discharge (DBD) plasma actuator for both macro and microscale applications. Such actuators create a stable glow discharge… (more)

Subjects/Keywords: Electric potential; Electrodes; Electrons; Flow velocity; Horseshoes; Ions; Plasma velocity; Plasmas; Pumps; Simulations; actuator, bulk, computational, control, cooling, discharge, dynamics, electrohydrodynamic, element, film, finite, flow, fluid, heat, horseshoe, method, micropump, microscale, multiscale, plasma, serpentine, sheath, transfer

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APA (6th Edition):

Wang, C. (2009). Numerical Modeling of Microscale Plasma Actuators. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0024818

Chicago Manual of Style (16th Edition):

Wang, Chin-Cheng. “Numerical Modeling of Microscale Plasma Actuators.” 2009. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0024818.

MLA Handbook (7th Edition):

Wang, Chin-Cheng. “Numerical Modeling of Microscale Plasma Actuators.” 2009. Web. 20 Oct 2019.

Vancouver:

Wang C. Numerical Modeling of Microscale Plasma Actuators. [Internet] [Doctoral dissertation]. University of Florida; 2009. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0024818.

Council of Science Editors:

Wang C. Numerical Modeling of Microscale Plasma Actuators. [Doctoral Dissertation]. University of Florida; 2009. Available from: http://ufdc.ufl.edu/UFE0024818


University of Florida

20. Jackson, Philip B. Numerical Modeling of the Plasma-Particle Interactions of Aerosol Vaporization in a Laser-Induced Plasma.

Degree: PhD, Mechanical Engineering - Mechanical and Aerospace Engineering, 2011, University of Florida

 Laser-Induced Breakdown Spectroscopy (LIBS) is a powerful and well-established atomic emission diagnostic for the identification and analysis of unknown samples. Recent research efforts have shown… (more)

Subjects/Keywords: Aerosols; Argon; Cadmium; Heat transfer; Ionization; Laser induced breakdown spectroscopy; Lasers; Particle mass; Plasma temperature; Plasmas; laser  – model  – plasma

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APA (6th Edition):

Jackson, P. B. (2011). Numerical Modeling of the Plasma-Particle Interactions of Aerosol Vaporization in a Laser-Induced Plasma. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0043727

Chicago Manual of Style (16th Edition):

Jackson, Philip B. “Numerical Modeling of the Plasma-Particle Interactions of Aerosol Vaporization in a Laser-Induced Plasma.” 2011. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0043727.

MLA Handbook (7th Edition):

Jackson, Philip B. “Numerical Modeling of the Plasma-Particle Interactions of Aerosol Vaporization in a Laser-Induced Plasma.” 2011. Web. 20 Oct 2019.

Vancouver:

Jackson PB. Numerical Modeling of the Plasma-Particle Interactions of Aerosol Vaporization in a Laser-Induced Plasma. [Internet] [Doctoral dissertation]. University of Florida; 2011. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0043727.

Council of Science Editors:

Jackson PB. Numerical Modeling of the Plasma-Particle Interactions of Aerosol Vaporization in a Laser-Induced Plasma. [Doctoral Dissertation]. University of Florida; 2011. Available from: http://ufdc.ufl.edu/UFE0043727


University of Florida

21. Park, Joontaek. Dynamics of Suspensions of Rodlike Polymers with Hydrodynamic Interactions.

Degree: PhD, Chemical Engineering, 2009, University of Florida

 Dynamics of suspensions of rigid rod-like polymers are studied by theoretical analysis and simulation considering hydrodynamic interactions. The motions of rigid rods in Newtonian suspending… (more)

Subjects/Keywords: Diffusion coefficient; Hydrodynamics; Polymers; Shear flow; Shear stress; Simple shear; Simulations; Stress distribution; Torque; Velocity; brownian, fiber, fluid, hydrodynamics, microchannel, polymer, rod, shear, slender

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APA (6th Edition):

Park, J. (2009). Dynamics of Suspensions of Rodlike Polymers with Hydrodynamic Interactions. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0024219

Chicago Manual of Style (16th Edition):

Park, Joontaek. “Dynamics of Suspensions of Rodlike Polymers with Hydrodynamic Interactions.” 2009. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0024219.

MLA Handbook (7th Edition):

Park, Joontaek. “Dynamics of Suspensions of Rodlike Polymers with Hydrodynamic Interactions.” 2009. Web. 20 Oct 2019.

Vancouver:

Park J. Dynamics of Suspensions of Rodlike Polymers with Hydrodynamic Interactions. [Internet] [Doctoral dissertation]. University of Florida; 2009. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0024219.

Council of Science Editors:

Park J. Dynamics of Suspensions of Rodlike Polymers with Hydrodynamic Interactions. [Doctoral Dissertation]. University of Florida; 2009. Available from: http://ufdc.ufl.edu/UFE0024219


University of Florida

22. Snook, Braden J. The Dynamics of the Microstructure and the Rheology in Suspensions of Rigid Particles.

Degree: PhD, Chemical Engineering, 2015, University of Florida

 Numerical and experimental methods have been used to reveal the complex relationship between the macroscopic properties and the microstructure, or relative arrangement of particles, of… (more)

Subjects/Keywords: Aspect ratio; Experimental results; Hydrodynamics; Material concentration; Rheology; Shear flow; Shear stress; Simulations; Velocity; Vorticity; fibers  – multiphase-flow  – spheres  – suspensions

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APA (6th Edition):

Snook, B. J. (2015). The Dynamics of the Microstructure and the Rheology in Suspensions of Rigid Particles. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0047628

Chicago Manual of Style (16th Edition):

Snook, Braden J. “The Dynamics of the Microstructure and the Rheology in Suspensions of Rigid Particles.” 2015. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0047628.

MLA Handbook (7th Edition):

Snook, Braden J. “The Dynamics of the Microstructure and the Rheology in Suspensions of Rigid Particles.” 2015. Web. 20 Oct 2019.

Vancouver:

Snook BJ. The Dynamics of the Microstructure and the Rheology in Suspensions of Rigid Particles. [Internet] [Doctoral dissertation]. University of Florida; 2015. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0047628.

Council of Science Editors:

Snook BJ. The Dynamics of the Microstructure and the Rheology in Suspensions of Rigid Particles. [Doctoral Dissertation]. University of Florida; 2015. Available from: http://ufdc.ufl.edu/UFE0047628


University of Florida

23. Guan, Cheng Kang. A New Mechanistic Understanding and Modeling of Pool Boiling Crticial Heat Flux on Horizontal Surface.

Degree: PhD, Mechanical Engineering - Mechanical and Aerospace Engineering, 2011, University of Florida

 This work proposes a new mechanistic model for predicting the critical heat flux (CHF) in horizontal pool boiling systems. It is postulated that when the… (more)

Subjects/Keywords: Boiling; Brasses; Heat flux; Heaters; Heating; Hexanes; Liquids; Modeling; Pentanes; Vapors; boiling  – capillary  – chf  – critical  – flux  – force  – heat  – hydrodynamic  – model  – pool  – wettability

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APA (6th Edition):

Guan, C. K. (2011). A New Mechanistic Understanding and Modeling of Pool Boiling Crticial Heat Flux on Horizontal Surface. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0043584

Chicago Manual of Style (16th Edition):

Guan, Cheng Kang. “A New Mechanistic Understanding and Modeling of Pool Boiling Crticial Heat Flux on Horizontal Surface.” 2011. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0043584.

MLA Handbook (7th Edition):

Guan, Cheng Kang. “A New Mechanistic Understanding and Modeling of Pool Boiling Crticial Heat Flux on Horizontal Surface.” 2011. Web. 20 Oct 2019.

Vancouver:

Guan CK. A New Mechanistic Understanding and Modeling of Pool Boiling Crticial Heat Flux on Horizontal Surface. [Internet] [Doctoral dissertation]. University of Florida; 2011. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0043584.

Council of Science Editors:

Guan CK. A New Mechanistic Understanding and Modeling of Pool Boiling Crticial Heat Flux on Horizontal Surface. [Doctoral Dissertation]. University of Florida; 2011. Available from: http://ufdc.ufl.edu/UFE0043584


University of Florida

24. Pham, Phong N. Origin of Shear-Induced Diffusion in Particulate Suspensions Crucial Role of Solid Contacts Between Particles.

Degree: PhD, Chemical Engineering, 2016, University of Florida

 The fluid mechanics of non-colloidal and neutrally buoyant particles suspended in Newtonian fluids are still an active area of research because accurate predictive capabilities for… (more)

Subjects/Keywords: Chaos; Hydrodynamics; Lubrication; Particle collisions; Particle interactions; Particle motion; Particle trajectories; Shear flow; Simulations; Trajectories; contact  – lubrication  – rheology  – suspensions

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APA (6th Edition):

Pham, P. N. (2016). Origin of Shear-Induced Diffusion in Particulate Suspensions Crucial Role of Solid Contacts Between Particles. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0049731

Chicago Manual of Style (16th Edition):

Pham, Phong N. “Origin of Shear-Induced Diffusion in Particulate Suspensions Crucial Role of Solid Contacts Between Particles.” 2016. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0049731.

MLA Handbook (7th Edition):

Pham, Phong N. “Origin of Shear-Induced Diffusion in Particulate Suspensions Crucial Role of Solid Contacts Between Particles.” 2016. Web. 20 Oct 2019.

Vancouver:

Pham PN. Origin of Shear-Induced Diffusion in Particulate Suspensions Crucial Role of Solid Contacts Between Particles. [Internet] [Doctoral dissertation]. University of Florida; 2016. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0049731.

Council of Science Editors:

Pham PN. Origin of Shear-Induced Diffusion in Particulate Suspensions Crucial Role of Solid Contacts Between Particles. [Doctoral Dissertation]. University of Florida; 2016. Available from: http://ufdc.ufl.edu/UFE0049731


University of Florida

25. Al-Raqom, Fotouh. Reactivity of Iron Powder Fluidized Bed For Solar Hydrogen Production.

Degree: PhD, Mechanical Engineering - Mechanical and Aerospace Engineering, 2012, University of Florida

 Thermochemical hydrogen production utilizing iron reduction oxidization (Redox) reactions is a promising high-efficiency route to renewable fuels. The oxidation of iron by water vapor releases… (more)

Subjects/Keywords: Hydrogen; Hydrogen production; Iron; Iron oxides; Kinetics; Oxidation; Particle size classes; Sintering; Steam; Steam irons; bed  – fluidized  – hydrogen  – iron  – redox  – solar

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APA (6th Edition):

Al-Raqom, F. (2012). Reactivity of Iron Powder Fluidized Bed For Solar Hydrogen Production. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0044598

Chicago Manual of Style (16th Edition):

Al-Raqom, Fotouh. “Reactivity of Iron Powder Fluidized Bed For Solar Hydrogen Production.” 2012. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0044598.

MLA Handbook (7th Edition):

Al-Raqom, Fotouh. “Reactivity of Iron Powder Fluidized Bed For Solar Hydrogen Production.” 2012. Web. 20 Oct 2019.

Vancouver:

Al-Raqom F. Reactivity of Iron Powder Fluidized Bed For Solar Hydrogen Production. [Internet] [Doctoral dissertation]. University of Florida; 2012. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0044598.

Council of Science Editors:

Al-Raqom F. Reactivity of Iron Powder Fluidized Bed For Solar Hydrogen Production. [Doctoral Dissertation]. University of Florida; 2012. Available from: http://ufdc.ufl.edu/UFE0044598

26. Nili, Samaun. Investigation of Thermal Conductivity of Iron-Silica Magnetically Stabilized Porous Structure.

Degree: MS, Mechanical Engineering - Mechanical and Aerospace Engineering, 2013, University of Florida

 It is a fact of experience that simulation of thermo-fluidproperties of magnetically stabilized porous structure (MSPS) measurementrequires accurate value of thermal conductivity of structure. Therefore,… (more)

Subjects/Keywords: Heat; Heat flux; Heat transfer; Iron; Magnetic fields; Magnetism; Porosity; Thermal conductivity; Thermocouples; Wires; anisentropic  – bed  – conductivity  – hot  – magnetic  – magnetically  – method  – msps  – packed  – porous  – stablized  – structure  – thermal  – transient  – wire

…Abstract of Thesis Presented to the Graduate School of the University of Florida in Partial… 

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APA (6th Edition):

Nili, S. (2013). Investigation of Thermal Conductivity of Iron-Silica Magnetically Stabilized Porous Structure. (Masters Thesis). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0045600

Chicago Manual of Style (16th Edition):

Nili, Samaun. “Investigation of Thermal Conductivity of Iron-Silica Magnetically Stabilized Porous Structure.” 2013. Masters Thesis, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0045600.

MLA Handbook (7th Edition):

Nili, Samaun. “Investigation of Thermal Conductivity of Iron-Silica Magnetically Stabilized Porous Structure.” 2013. Web. 20 Oct 2019.

Vancouver:

Nili S. Investigation of Thermal Conductivity of Iron-Silica Magnetically Stabilized Porous Structure. [Internet] [Masters thesis]. University of Florida; 2013. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0045600.

Council of Science Editors:

Nili S. Investigation of Thermal Conductivity of Iron-Silica Magnetically Stabilized Porous Structure. [Masters Thesis]. University of Florida; 2013. Available from: http://ufdc.ufl.edu/UFE0045600

27. Chen, Chen. Numerical Modeling for High Temperature Solar Thermochemical Reactor.

Degree: PhD, Mechanical Engineering - Mechanical and Aerospace Engineering, 2016, University of Florida

 Solar energy, especially concentrated solar thermal energy, has vast potential to contribute towards a more sustainable and clean energy portfolio. Utilizing solar energy, thermochemical water… (more)

Subjects/Keywords: Boundary conditions; Chemical reactions; Conceptual lattices; Insulation; Modeling; Oxidation; Reaction kinetics; Simulations; Temperature distribution; Velocity; cfd  – glbe  – lbe  – solar

…Graduate School of the University of Florida in Partial Fulfillment of the Requirements for the… 

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APA (6th Edition):

Chen, C. (2016). Numerical Modeling for High Temperature Solar Thermochemical Reactor. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0050284

Chicago Manual of Style (16th Edition):

Chen, Chen. “Numerical Modeling for High Temperature Solar Thermochemical Reactor.” 2016. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0050284.

MLA Handbook (7th Edition):

Chen, Chen. “Numerical Modeling for High Temperature Solar Thermochemical Reactor.” 2016. Web. 20 Oct 2019.

Vancouver:

Chen C. Numerical Modeling for High Temperature Solar Thermochemical Reactor. [Internet] [Doctoral dissertation]. University of Florida; 2016. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0050284.

Council of Science Editors:

Chen C. Numerical Modeling for High Temperature Solar Thermochemical Reactor. [Doctoral Dissertation]. University of Florida; 2016. Available from: http://ufdc.ufl.edu/UFE0050284

28. Kelvin Randhir, Fnu. Porous Reactive Structures for Thermochemical Processes.

Degree: PhD, Mechanical Engineering - Mechanical and Aerospace Engineering, 2016, University of Florida

 Solar thermochemical water and carbon dioxide splitting and solar thermochemical energy storage are emerging fields of research which utilize solar energy to produce fuels and… (more)

Subjects/Keywords: Energy storage; Flux density; High temperature; Hydrogen; Oxidation; Oxides; Oxygen; Sintering; Steam; Water splitting; porous  – solar  – thermochemical

…Abstract of Dissertation Presented to the Graduate School of the University of Florida in Partial… 

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APA (6th Edition):

Kelvin Randhir, F. (2016). Porous Reactive Structures for Thermochemical Processes. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0049939

Chicago Manual of Style (16th Edition):

Kelvin Randhir, Fnu. “Porous Reactive Structures for Thermochemical Processes.” 2016. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0049939.

MLA Handbook (7th Edition):

Kelvin Randhir, Fnu. “Porous Reactive Structures for Thermochemical Processes.” 2016. Web. 20 Oct 2019.

Vancouver:

Kelvin Randhir F. Porous Reactive Structures for Thermochemical Processes. [Internet] [Doctoral dissertation]. University of Florida; 2016. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0049939.

Council of Science Editors:

Kelvin Randhir F. Porous Reactive Structures for Thermochemical Processes. [Doctoral Dissertation]. University of Florida; 2016. Available from: http://ufdc.ufl.edu/UFE0049939

29. Rahmatian Masooleh, Nima. Magnetic stabilization of particle clusters for mass transport enhancement.

Degree: PhD, Mechanical Engineering - Mechanical and Aerospace Engineering, 2015, University of Florida

 Hydrogen as a clean and high-energy content fuel is a future viable solution to increasing demands. Redox of metals at elevated temperatures is a well-known… (more)

Subjects/Keywords: Conceptual lattices; Fluids; Hydrogen; Hydrogen production; Magnetic fields; Magnetism; Magnets; Porosity; Simulations; Velocity; dem  – magnetic  – porous  – sintering

…132 11 Abstract of Dissertation Presented to the Graduate School of the University of… …Florida in Partial Fulfillment of the Requirements for the Degree of Doctor of Philosophy… 

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APA (6th Edition):

Rahmatian Masooleh, N. (2015). Magnetic stabilization of particle clusters for mass transport enhancement. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0047814

Chicago Manual of Style (16th Edition):

Rahmatian Masooleh, Nima. “Magnetic stabilization of particle clusters for mass transport enhancement.” 2015. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0047814.

MLA Handbook (7th Edition):

Rahmatian Masooleh, Nima. “Magnetic stabilization of particle clusters for mass transport enhancement.” 2015. Web. 20 Oct 2019.

Vancouver:

Rahmatian Masooleh N. Magnetic stabilization of particle clusters for mass transport enhancement. [Internet] [Doctoral dissertation]. University of Florida; 2015. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0047814.

Council of Science Editors:

Rahmatian Masooleh N. Magnetic stabilization of particle clusters for mass transport enhancement. [Doctoral Dissertation]. University of Florida; 2015. Available from: http://ufdc.ufl.edu/UFE0047814

30. Singh, Abhishek K. Multi-Scale, Multi Physics Modeling of Thermo-Chemical Iron/Iron Oxide Cycle for Fuel Production.

Degree: PhD, Mechanical Engineering - Mechanical and Aerospace Engineering, 2013, University of Florida

 Present dissertation focuses on multi-scale,multi-physics modeling of thermochemical iron/iron oxide cycle for hydrogen production. Matlab/Fortran based numerical models are developed to study the thermochemical hydrogen… (more)

Subjects/Keywords: Aspect ratio; Gas composition; Hydrogen; Hydrogen production; Iron oxides; Magnetite; Open systems; Oxides; Steam; Synthesis gas; cavity  – diffusion  – hydrogen  – iron  – ironoxide  – mcrt  – thermochemical

…Abstract of Dissertation Presented to the Graduate School of the University of Florida in Partial… 

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APA (6th Edition):

Singh, A. K. (2013). Multi-Scale, Multi Physics Modeling of Thermo-Chemical Iron/Iron Oxide Cycle for Fuel Production. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0045806

Chicago Manual of Style (16th Edition):

Singh, Abhishek K. “Multi-Scale, Multi Physics Modeling of Thermo-Chemical Iron/Iron Oxide Cycle for Fuel Production.” 2013. Doctoral Dissertation, University of Florida. Accessed October 20, 2019. http://ufdc.ufl.edu/UFE0045806.

MLA Handbook (7th Edition):

Singh, Abhishek K. “Multi-Scale, Multi Physics Modeling of Thermo-Chemical Iron/Iron Oxide Cycle for Fuel Production.” 2013. Web. 20 Oct 2019.

Vancouver:

Singh AK. Multi-Scale, Multi Physics Modeling of Thermo-Chemical Iron/Iron Oxide Cycle for Fuel Production. [Internet] [Doctoral dissertation]. University of Florida; 2013. [cited 2019 Oct 20]. Available from: http://ufdc.ufl.edu/UFE0045806.

Council of Science Editors:

Singh AK. Multi-Scale, Multi Physics Modeling of Thermo-Chemical Iron/Iron Oxide Cycle for Fuel Production. [Doctoral Dissertation]. University of Florida; 2013. Available from: http://ufdc.ufl.edu/UFE0045806

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