throbber
Professor Daniel Maynes C.V.
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`DANIEL MAYNES
`CURRICULUM VITAE
`Professor of Mechanical Engineering
`435 CTB
`Department of Mechanical Engineering
`Brigham Young University
`Provo, UT 84602
`(801)422-3843, maynes@byu.edu
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`Education
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`Ph.D. University of Utah, Mechanical Engineering, 1997
` M.S. Utah State University, Mechanical Engineering, 1993
`B.S. Utah State University, Mechanical Engineering, 1992
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`Experience
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`Brigham Young University, Provo, UT 84602
`Chair of Mechanical Engineering (2013 – Present)
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`Associate Chair of Mechanical Engineering (2005 – 2013)
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`Professor of Mechanical Engineering (2009 – Present)
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`Associate Professor of Mechanical Engineering (2003 – 2009)
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`Assistant Professor of Mechanical Engineering (1997 – 2003)
` University of Utah, Salt Lake City, UT 84112
`Post-Doctoral Research Professor (1997)
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`Instructor of Mechanical Engineering (1994 – 1997)
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`Research Assistant (1993 – 1997)
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` Utah State University, Logan, UT 84322
`Research Assistant (1992 – 1993)
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`Space Dynamics Laboratory, Logan, UT 84322
`Research Assistant (1991 – 1992)
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` Argonne National Laboratory, Idaho Falls, ID 83403-2528
`Research Assistant (1990)
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`Consultant for many industrial and legal sponsors (1992 – Present)
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`Expertise/Interests
` Microscale fluid mechanics and heat transfer, superhydrophobic surfaces, electroosmotic flow
`transport phenomena, turbomachinery design and analysis, turbulent mixing, turbulence induced
`structural vibrations, convection heat transfer and fluid mechanics applications
`
`Scholarly Publications
`h-Index of 22 and i10 index of 32 with over 1800 total citations
` Archival Journal Publications:
`1.
`J. Prince, D. Maynes, and J. Crockett, 2015, “On Jet Impingement and Thin Film Breakup on a
`Horizontal Superhydrophobic Surface,” Physics of Fluids, Vol. 27, 112108.
`C. Clavijo, J. Crockett, and D. Maynes, 2015, “Effect of Isotropic and Anisotropic Slip on
`Droplet Impingement on a Superhydrophobic Surface,” Physics of Fluids, Vol. 27, 122104.
`J. Pearson, D. Bilodeau, and D. Maynes, 2015, “Two Pronged Jet Formation Caused by Droplet
`Impact on Anisotropic Superhydrophobic Surfaces,” ASME Journal of Fluids Engineering, In
`Press.
`R. Hays, D. Maynes, and J. Crockett, 2015, “Thermal Transport to Droplets on Heated
`Superhydrophobic Substrates,” International Journal of Heat and Mass Transfer, under review.
`K. Langley, D. Maynes, and T. Truscott, 2015, “Eggs and Milk: Spinning Spheres Partially
`Immersed in a Liquid Bath,” Physics of Fluids, Vol. 27, 032102.
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`A. Cowley, D. Maynes, J. Crockett, 2014, "Effective Temperature Jump and Influence of Axial
`Conduction for Thermal Transport through Channels with Superhydrophobic
`Walls," International Journal of Heat and Mass Transfer, Vol. 79, 573-583.
`7. M. Johnson, J. Crockett, and D. Maynes, 2014, "Experimental Characterization of Hydraulic
`Jump Caused by Jet-Impingement on Micro-Patterned Surfaces Exhibiting Ribs and
`Cavities," Experimental Thermal and Fluid Science, Vol. 58, 216-223.
`I. S. Coltrin, J. D. Blotter, R. D. Maynes, and K. L. Gee, 2014, “Influence of Nozzle Spacing and
`Diameter on Acoustic Radiation from Supersonic Jets in Closely Spaced Arrays,” Applied
`Acoustics, Vol. 81, 19-25.
`J. F. Prince, D. Maynes, and J. Crockett, 2014, “Analysis of Laminar Jet Impingement and
`Hydraulic Jump on a Horizontal Surface with Anisotropic Slip,” Physics of Fluids, Vol. 26,
`042104.
`10. D. Maynes and J. Crockett, 2014, "Apparent Temperature Jump and Thermal Transport in
`Channels with Streamwise Rib and Cavity Featured Superhydrophobic Walls at Constant Heat
`Flux," ASME Journal of Heat Transfer, Vol. 136, 011701.
`I. S. Coltrin, J. D. Blotter, R. D. Maynes, and K. L. Gee, 2013, “Shock-cell Structures and
`Corresponding Sound Pressure Levels Emitted from Closely Spaced Supersonic Jets,” Applied
`Acoustics, Vol. 74, 1519-1526.
`12. D. Maynes, G. J. Holt, and J. Blotter, 2013, "Cavitation Inception and Head Loss Due to Liquid
`Flow Through Perforated Plates of Varying Thickness," ASME Journal of Fluids Engineering,
`Vol. 135, 031302.
`13. D. Maynes, B. W. Webb, J. Crockett, and V. Solovjov, 2013, "Analysis of Laminar Slip-Flow
`Thermal Transport in Microchannels with Transverse Rib and Cavity Structured
`Superhydrophobic Walls at Constant Heat Flux," Journal of Heat Transfer, Vol. 135, 021701.
`J. F. Prince, D. Maynes, and J. C. Crockett, 2012, "Analysis of Laminar Jet Impingement and
`Hydraulic Jump on a Horizontal Surface with Slip," Physics of Fluids, Vol. 24, 102103.
`15. D. Maynes, D. Cundick, T. Moore, D. R. Tree, M. R. Jones, and L. L. Baxter, 2012 “In Situ
`Characterization of Coal Ash Thermal Conductivity Under Oxidizing and Reducing Conditions,”
`ASME Journal of Thermal Science and Engineering Applications, Vol. 4, 041002.
`J. T. Pearson, D. Maynes, B. W. Webb, 2012, “Droplet Impact Dynamics for Two Liquids
`Impinging on Anisotropic Superhydrophobic Surfaces,” Experiments in Fluids, Vol. 53, pp.603-
`618.
`J. Xuan, M. Hamblin, J. Stout, H. D. Tolley, D. Maynes, A. Woolley, A. Hawkins, and M. L.
`Lee, 2011, "Surfactant Addition and Alternating Current Oscillation During Size Fractionation of
`Nanoparticles in Channels with Two or Three Different Height Segments," Journal of
`Chromatography A, Vol. 1218, pp. 9102-9110.
`18. T. J. Moore, M. R. Jones, D. R. Tree, D. Maynes, L. L. Baxter, 2011, "In Situ Measurements of
`the Spectral Emittance of Coal Ash Deposits," Journal of Quantitative Spectroscopy and
`Radiative Transfer, Vol. 112, pp. 1978-1986.
`19. D. Maynes, M. Johnson, B. W. Webb, 2011, " Free-Surface Liquid Jet Impingement on Rib
`Patterned Superhydrophobic Surfaces," Physics of Fluids, Vol. 23, 052104.
`J. R. Elsnab, J. C. Klewicki, D. Maynes, T. A. Ameel, 2011, "Mean Dynamics of Channel Flow
`Transition," Journal of Fluid Mechanics, Vol. 678, pp. 451-481.
`21. M. N. Hamblin, A. R. Hawkins, D. Murray, D. Maynes, M. L. Lee, A. T. Woolley, H. D. Tolley,
`2011, "Capillary Flow in Sacrificially-Etched Nanochannels, Biomicrofluidics, Vol. 5, 021103.
`22. T. J. Moore, M. R. Jones, D. R. Tree, D. Maynes, L. L. Baxter, 2011, "An Experimental Method
`for Making Spectral Emittance and Surface Temperature Measurements of Opaque
`Surfaces," Journal of Quantitative Spectroscopy and Radiative Transfer, Vol. 112, pp. 1191-
`1196.
`J. R. Elsnab, D. Maynes, J. C. Klewicki, and T. A. Ameel, 2010, "Mean Velocity Profiles in a
`High Aspect Ratio Microchannel," Experimental Thermal and Fluid Science, Vol 34, pp. 1077-
`1088.
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`Professor Daniel Maynes C.V.
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`24. M. N. Hamblin, J. Xuan, D. Maynes, H. D. Tolley, D. M. Belnap, A. T. Woolley, M. L. Lee, and
`A. R. Hawkins, 2010, “Selective trapping and concentration of nanoparticles and viruses in dual-
`height nanofluidic channels,” Lab on a Chip, Vol. 10, pp. 173-178.
`25. K. Jeffs, D. Maynes, B. W. Webb, 2010, "Turbulent Flow in a Microchannel with Surface
`Patterned Micro-ribs Oriented Parallel to the Flow Direction," International Journal of Heat and
`Mass Transfer, Vol. 53, pp. 786-796.
`26. B. Woolford, J. Prince, D. Maynes, and B. W. Webb, 2009, "PIV Characterization of Turbulent
`Channel Flow with Rib Patterned Superhydrophobic Walls," Physics of Fluids, Vol. 21, p.
`085106.
`27. B. Woolford, D. Maynes, and B. W. Webb, 2009, “Liquid Flow Through Microchannels with
`Grooved Walls Under Wetting and Superhydrophobic Conditions,” Microfluidics and
`Nanofluidics, Vol. 7, p. 121.
`28. D. Maynes, J. Tenny, B. W. Webb, and M. L. Lee, 2008, “Influence of Varying Electroosmotic
`Flow on the Effective Diffusion in Electric Field Gradient Separations,” Electrophoresis, Vol. 29,
`pp. 549-560.
`29. D. Maynes, B. W. Webb, and J. Davies, 2008, “Thermal Transport in a Microchannel Exhibiting
`Ultrahydrophobic Micro-Ribs Maintained at Constant Temperature,” Journal of Heat Transfer,
`Vol. 130, pp. 022402-1-8.
`30. D. Maynes, K. Jeffs, B. Woolford, and B. W. Webb, 2007, “Laminar Fully-Developed Flow in a
`Microchannel with Hydrophobic Surface Patterned Micro-ribs Oriented Parallel to the Flow
`Direction,” Physics of Fluids, Vol. 19, p. 093603.
`J. Davies, D. Maynes, B. W. Webb, and B. Woolford, 2006, “Laminar Flow in a Microchannel
`with Super-Hydrophobic Walls Exhibiting Transverse Ribs,” Physics of Fluids, Vol. 18, p.
`087110.
`32. C. Rands, B.W. Webb, and D. Maynes, 2006, “Characterization of Transition To Turbulence In
`Microchannels, International Journal of Heat and Mass Transfer, Vol. 49, pp. 2924-2930.
`33. S. L. Broderick, B. W. Webb, and D. Maynes, 2005, “Thermally Developing Electro-osmotic
`Convection in Microchannels with Finite Debye Layer Thickness,” Numerical Heat Transfer A,
`Vol. 48 pp. 941-964.
`34. B. C. Liechty. B. W. Webb, and D. Maynes, 2005, “Convective Heat Transfer Characteristics of
`Electro-osmotically Generated Flow in Microtubes at High Wall Potential,” International Journal
`of Heat Transfer, Vol. 48, pp. 2360-2371.
`35. B. R. Thompson, D. Maynes, and B. W. Webb, 2005, “Characterization of the Re-Entrant
`Developing Flow in a Microtube Using MTV,” Journal of Fluids Engineering, Vol. 127, pp.
`1003-1012.
`36. M. T. Pittard, R. P. Evans, D. Maynes, and J. D. Blotter, 2004, “Experimental and Numerical
`Investigation of Turbulent Flow Induced Pipe Vibration in Fully Developed Flow,” Review of
`Scientific Instruments, Vol. 75, pp. 2393-2401.
`37. B. D. Iverson, D. Maynes, and B. W. Webb, 2004, “Thermally Developing Electro-osmotic
`Convection in Rectangular Microchannels with Vanishing Debye Layer Thickness,” AIAA
`Journal of Thermophysics and Heat Transfer, Vol. 18, pp. 486 – 493.
`38. D. Maynes and B. W. Webb, 2004, “The Effect of Viscous Dissipation in Thermally Fully-
`Developed Electro-Osmotic Heat Transfer in Microchannels,” International Journal of Heat and
`Mass Transfer, Vol. 47, pp. 987-999.
`39. D. Maynes and B. W. Webb, 2003, “Fully Developed Electro-osmotic and Pressure Driven
`Convection in a Circular Channel with Constant Heat Flux,” Journal of Heat Transfer, Vol. 125,
`pp. 889-895.
`40. D. Maynes and B. W. Webb, 2003, “Fully-Developed Electro-osmotic Transport in
`Microchannels,” International Journal of Heat and Mass Transfer, Vol. 46, pp. 1359-1369.
`41. Y. Xiang, D. Maynes, M. L. Lee, 2003, “Safety Concerns in Ultrahigh Pressure Capillary Liquid
`Chromatography Using Air-Driven Pumps,” Journal of Chromatography A, Vol. 991, pp. 189-
`196.
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`J. Judy, D. Maynes, and B. W. Webb, 2002, “Characterization of Frictional Pressure Drop for
`Liquid Flows Through Microchannels,” International Journal of Heat and Mass Transfer, Vol.
`45, pp. 3477-3489.
`43. D. Maynes and M. Butcher, 2002, “Steady State and Decay Regime Dynamics for Square
`Impellers of Varying Aspect Ratio in Cylindrical Tanks,” AIChE Journal, Vol. 48, No. 1, pp. 38-
`49.
`44. D. Maynes and A. Webb, 2002, “Velocity Profile Characterization in Sub-millimeter Diameter
`Tubes using Molecular Tagging Velocimetry,” Experiments in Fluids Vol. 32, pp. 3-15.
`45. D. Maynes and M. Butcher, 2001, “Effect of Body Aspect Ratio and Tank Size on the
`Hydrodynamics of a Rotating Bluff Body During the Initial Spin-up Period,” Journal of Fluids
`Engineering, Vol. 123, pp. 649-655.
`46. W. J. Bowman and D. Maynes, 2001, “Comparison of Standard and Heat Pipe Fins with
`Specified Tip Temperature,” AIAA Journal of Thermophysics and Heat Transfer, Vol. 15, pp.
`421-426.
`47. S. Thomson and D. Maynes, 2001, “Spatially Resolved Temperature Measurements in a Liquid
`using Laser Induced Phosphorescence,” Journal of Fluids Engineering, Vol. 123, June 2001, pp.
`293-302.
`48. H. Robey and D. Maynes, 2001, “Numerical Simulation of the Hydrodynamics and Mass
`Transfer in the Large Scale, Rapid Growth of KDP Crystals. Part 1: Computation of the Transient
`Three Dimensional Flow Field,” Journal of Crystal Growth, Vol. 222, Jan. 2001, pp.263-278.
`49. D. Maynes, 2000, “Molecular Tagging Velocimetry Characterization of Rapid KDP Crystal
`Growth,” AIChE Journal, Vol. 46, No. 3, pp. 450-461.
`J. Bowman, T. Moss, D. Maynes, and K. Paulson, 2000, “Efficiency of a Constant Area,
`Adiabatic Tip, Heat Pipe Fin,” AIAA Journal of Thermophysics and Heat Transfer, Vol. 14, pp.
`112-115.
`51. D. Maynes, J. Klewicki, P. McMurtry, 1999, “Spin-up in a Tank Induced by a Rotating Bluff
`Body,” Journal of Fluid Mechanics, Vol. 388, pp. 49-68.
`52. D. Maynes and G. Gebert, 1999, “High Angle of Attack Aerodynamics of a Missile Geometry at
`Low Speed,” Journal of Spacecraft and Rockets, Vol. 36, No. 4, pp. 772-774.
`53. D. Maynes, P. McMurtry and J. Klewicki, 1998, “Time Resolved Torque of Three Dimensional
`Rotating Bluff Bodies in a Cylindrical Tank,” Journal of Fluids Engineering, Vol. 120, No. 1, pp.
`23-29.
`54. D. Maynes, P. McMurtry, J. Klewicki and H. Robey, 1997, “Hydrodynamic Scalings in the Rapid
`Growth of Crystals From Solution,” Journal of Crystal Growth, Vol. 178, pp. 545-558.
`55. R. D. Maynes and G. A. Gebert, 1995, “Rotating Nose Tip Effects on Slender Body
`Aerodynamics at High Angles of Attack,” Journal of Spacecraft and Rockets, Vol. 32, No. 6, pp.
`944-950.
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`Conference Papers/Presentations:
`1.
`K. Stevens, J. Crockett, D. Maynes, and B. Iverson, 2015, “Two Phase Flow Hydrodynamics in
`Superhydrophobic Channels,” American Physical Society Bulletin, Division of Fluid
`Dynamics, Vol. 60, R26-10 (http://meetings.aps.org/link/BAPS.2015.DFD.R26.10).
`A. Cowley, D. Maynes, J. Crockett, B. Iverson, 2015, Inertial Effects on Heat Transfer in
`Superhydrophobic Microchannels,” American Physical Society Bulletin, Division of Fluid
`Dynamics, Vol. 60, H11-10 (http://meetings.aps.org/link/BAPS.2015.DFD.H11.10).
`3. M. Searle, D. Maynes, and J. Crockett, 2015, “Pool Boiling Thermal Transport through Micro-
`Patterned Metal Superhydrophobic Surfaces,” American Physical Society Bulletin, Division of
`Fluid Dynamics, Vol. 60, R18-5 (http://meetings.aps.org/link/BAPS.2015.DFD.R18.5).
`J. Crockett, C. Clavijo, and D. Maynes, 2015, “Droplet Impingement Boiling on Heated
`Superhydrophobic Surfaces,” American Physical Society Bulletin, Division of Fluid
`Dynamics, Vol. 60, G35-7 (http://meetings.aps.org/link/BAPS.2015.DFD.G35.7).
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`T. Fanning, R. Lundgreen, D. Maynes, S. Gorrell, and K. Oliphant, 2015, “The Other Source of
`Inducer Backflow,” American Physical Society Bulletin, Division of Fluid Dynamics, Vol. 60,
`A14-6 (http://meetings.aps.org/link/BAPS.2015.DFD.A14.6).
`C. Clavijo, J. Crockett, and D. Maynes, 2015, “Wenzel to Cassie Transition for Droplet
`Impingement,” American Physical Society Bulletin, Division of Fluid Dynamics, Vol. 60, D34-2
`(http://meetings.aps.org/link/BAPS.2015.DFD.D34.2).
`R. Lundgreen, D. Maynes, K. Oliphant, and S. Gorrell, 2014, “Inducer Performance with Varying
`Inlet Blade Angles with a Stability Control Device,” American Physical Society Bulletin,
`Division of Fluid Dynamics, Vol. 59, A24-3.
`C. Clavijo, D. Maynes, and J. Crockett, 2014, “Thermocapillary Dewetting of Superhydrophobic
`Surfaces,” American Physical Society Bulletin, Division of Fluid Dynamics, Vol. 59, D13-1.
`J. Stoddard, J. Crockett, and D. Maynes, 2014, “Droplet Train Impingement on
`Superhydrophobic Surfaces,” American Physical Society Bulletin, Division of Fluid
`Dynamics, Vol. 59, D13-4.
`10. A. Cowley, D. Maynes, and J. Crockett, 2014, “Effect of Axial Fluid Conduction on Thermal
`Transport in Superhydrophobic Channels,” American Physical Society Bulletin, Division of Fluid
`Dynamics, Vol. 59, G11-6.
`J. Crockett, R. Perkins, and D. Maynes, 2014, Turbulent Flow Drag Reduction on Hybrid Riblet
`Superhydrophobic Surfaces,” American Physical Society Bulletin, Division of Fluid
`Dynamics, Vol. 59, H8-10.
`12. P. Kinghorn and D. Maynes, 2014, “Aerodynamic Drag on Intramodal Railcars,” American
`Physical Society Bulletin, Division of Fluid Dynamics, Vol. 59, R30-4.
`13. M. Searle, D. Maynes, and J. Crockett, 2014, “Liquid Jet Impingement Thermal Transport on a
`Superhydrophobic Surface,” American Physical Society Bulletin, Division of Fluid
`Dynamics, Vol. 59, M26-7.
`J. Stoddard, A. Lee, T. Truscott, J. Crockett, and D. Maynes, 2014, “Breaking Droplets:
`Superhydrophobic Surface Breakup,” Video Entry at the 2014 American Physical Society
`Division of Fluid Dynamics Conference, San Francisco, November 2014.
`15. C. Clavijo, M. Searle, D. Maynes, J. Crockett, and T. Truscott, “Sizzling Droplets: Heated
`Superhydrophobic Surface Impingement,” Poster Entry at the 2014 American Physical Society
`Division of Fluid Dynamics Conference, San Francisco, November 2014.
`16. R. Lundgreen, D. Maynes, S. Gorrell, and K. Oliphant, 2014, “Influence of a Stability Control
`Device on the Performance of a Cavitating Water Pump Inducer,” Proceedings the ASME 2014
`4th Joint US-European Fluids Engineering Meeting Summer Meeting, FEDSM2014-21138, at
`Chicago, IL, August, 2014.
`J. Prince, D. Maynes, and J. Crockett, 2014, “Pressure Drop Measurements in Turbulent Channel
`Flow over Superhydrophobic Surfaces with Riblets,” Proceedings the ASME 2014 4th Joint US-
`European Fluids Engineering Meeting Summer Meeting, FEDSM2014-21690, at Chicago, IL,
`August, 2014.
`18. R. Condie and D. Maynes, 2014, “Methods for Reducing Aerodynamic Drag on Cargo Carrying
`Railcars,” Proceedings the ASME 2014 4th Joint US-European Fluids Engineering Meeting
`Summer Meeting, FEDSM2014-21580, at Chicago, IL, August, 2014.
`19. C. Clavijo, D. Maynes, and J. Crockett, 2014, “Analytical Model Of Post-Impact Droplet
`Spreading On A Micro-Patterned Superhydrophobic Surface With Surface Slip,” Proceedings the
`ASME 2014 4th Joint US-European Fluids Engineering Meeting Summer Meeting, FEDSM2014-
`21648, at Chicago, IL, August, 2014.
`20. C. Clavijo, D. Maynes, and J. Crockett, 2013, “Liquid Droplet Impact Dynamics on Micro-
`Patterned Superhydrophobic Surfaces,” Video Entry at the 2013 American Physical Society
`Division of Fluid Dynamics Conference, Pittsburgh PA, November 2013.
`21. R. Hays, J. Crockett, D. Maynes, and B. W. Webb, 2013, “Sessile Droplet Evaporation on
`Superheated Superhydrophobic Surfaces, Video Entry at the 2013 American Physical Society
`Division of Fluid Dynamics Conference, Pittsburgh PA, November 2013.
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`22. D. Maynes, J. Crockett, and R. Hays, 2013, "Convection to Sessile Droplets on
`Superhydrophobic Surfaces," American Physical Society Bulletin, Division of Fluid
`Dynamics, Vol. 58, D2-8.
`J. Crockett, J. Prince, and D. Maynes, 2013, “Jet Impingement and Thin Film Breakup on a
`Superhydrophobic Surface,” American Physical Society Bulletin, Division of Fluid
`Dynamics, Vol. 58, A28-1.
`24. C. Clavijo and D. Maynes, “Droplet Rebound from Rib and Post Patterned Superhydrophobic
`Surfaces,” Poster presentation at the ASME International Meeting and Exposition, IMECE2013-
`67046, at San Diego, CA, November 2013.
`25. R. Condie and D. Maynes, “Drag Reduction for Automotive Carrying Style Rail Cars,” Poster
`presentation at the ASME International Meeting and Exposition, IMECE2013-67046, at San
`Diego, CA, November 2013.
`26. R. Lundgreen and D. Maynes, “Effects of a Stability Control Device on the Performance of an
`Inducer in a Turbopump,” Poster presentation at the ASME International Meeting and Exposition,
`IMECE2013-67046, at San Diego, CA, November 2013.
`27. A. Cowley and D. Maynes, 2013, “Effective Temperature Jump Length and Influence of Axial
`Conduction for Thermal Transport through Channels with Superhydrophobic Walls,” Poster
`presentation at the ASME International Meeting and Exposition, at San Diego, CA, November
`2013.
`28. R. Hays, J. Crockett, D. Maynes, and B. W. Webb, 2013, “Thermal Transport to Sessile Droplets
`on Superhydrophobic Surfaces with Rib and Cavity Features,” Proceedings the ASME
`International Meeting and Exposition, IMECE2013-63780, at San Diego, CA, November 2013.
`29. A. Cowley, D. Maynes, J. Crockett, and B. W. Webb, 2013, “Effective Temperature Jump Length
`and Influence of Axial Conduction for Thermal Transport through Channels with
`Superhydrophobic Walls,” Proceedings the ASME International Meeting and Exposition,
`IMECE2013-63858, at San Diego, CA, November 2013.
`J. T. Pearson, D. Maynes, D. Bilodeau, B. W. Webb, 2013, “Two-Pronged Jet Formation Caused
`by Droplet Impact on Anisotropic Superhydrophobic Surfaces,” Proceedings the ASME Fluids
`Engineering Summer Meeting, FEDSM2013-16629, at Incline Village, NV, July 2013.
`31. K. N. Oliphant, R. Lundgreen, R. Cluff, D. Maynes, and S. Gorrell, 2013, “Inducer Design for
`Stable High Suction Performance Wide Operating Range, and Increased Structural Robustness
`Utilizing a High Mass Flow Gain Inlet Cover Treatment, Joint Army Navy Nasa Air Force April
`2013 – 60th JANNAF Propulsion Meeting, 9th Modeling and Simulation, 7th Liquid Propulsion, 6th
`Spacecraft Propulsion Joint Subcommittee Meeting, Colorado Springs, CO, April 2013.
`32. R. Cluff, R. K. Lundgreen, S. E. Gorrell, D. Maynes, and K. Oliphant, 2013, “A Comparison of
`3-Bladed and 4-Bladed Inducers at On and Off Design Flow Rates,” AIAA 2013-3761, 49th
`AIAA/ASME/SAE/ASEE Joint Propulsion Conference, San Jose, CA, July 2013.
`33. R. Perkins, J. Prince, J. Vanderhoff, and D. Maynes, 2012, "Pressure Drop Measurements for
`Turbulent Channel Flow over Superhydrophobic Surfaces with Superimposed Riblets," American
`Physical Society Bulletin, Division of Fluid Dynamics, Vol. 57, M20-4.
`34. R. Cluff, R. Lundgreen, S. Gorrell, D. Maynes, and K. Oliphant, 2012, "Comparison: On-Design
`and Off-Design Flow through a High Speed Inducer," American Physical Society Bulletin,
`Division of Fluid Dynamics, Vol. 57, L5-2.
`35. R. Lundgreen, R. Cluff, D. Maynes, S. Gorrell, and K. Oliphant, 2012, "Periodic Cavitation in a
`High-Speed Water Inducer at an Off-Design Flow Coefficient," American Physical Society
`Bulletin, Division of Fluid Dynamics, Vol. 57, L5-1.
`36. R. Condie and D. Maynes, 2012, "Aerodynamic Improvements to Cargo Carrying Rail Cars Due
`to Roof Modifications," American Physical Society Bulletin, Division of Fluid Dynamics, Vol.
`57, E9-1.
`J. Pearson, D. Maynes, D. Bilodeau, and B. W. Webb, 2012, "Two Pronged Jet Formation Caused
`by Droplet Impact on Anisotropic Superhydrophobic Surfaces," American Physical Society
`Bulletin, Division of Fluid Dynamics, Vol. 57, E4-4.
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`Professor Daniel Maynes C.V.
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`39.
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`40.
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`42.
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`45.
`
`38. R. Hays, J. Vanderhoff, and D. Maynes, 2012, "Characterization of Heat Transfer from
`Superhydrophobic-Substrates to Water Droplets," American Physical Society Bulletin, Division
`of Fluid Dynamics, Vol. 57, E4-3.
`J. Prince, M. Johnson, J. Vanderhoff, and D. Maynes, 2012, "Laminar Jet Impingement and
`Hydraulic Jump on a Horizontal Surface with Anisotropic Slip," American Physical Society
`Bulletin, Division of Fluid Dynamics, Vol. 57, D28-7.
`J. Vanderhoff, J. Prince, and D. Maynes, 2012, "Laminar Jet Impingement and Hydraulic Jump
`Behavior on a Superhydrophobic Surface with Isotropic Slip," American Physical Society
`Bulletin, Division of Fluid Dynamics, Vol. 57, D28-5.
`41. A. T. Woolley, S. Kumar, J. Xuan, M. L. Lee, H. D. Tolley, D. R. Maynes, A. R. Hawkins, 2012,
`"Planar Thin-Film Nanofluidic Devices for Sample Fractionation," Pittcon 2012, Orlando, FL,
`March 2012.
`J. Xuan, M. N. Hamblin, J. M. Stout, H. D. Tolley, D. R. Maynes, A. T. Woolley, A. R. Hawkins,
`and M. L. Lee, 2012, "Non-covalent Surface Deactivation in Small Capillaries and Channels,"
`International Symposium on Capillary Chromatography, Riva del Garda, Italy, May 27-June 1,
`2012.
`43. M. Johnson, D. Maynes, and J. Vanderhoff, 2012, “Hydraulic Jump Due to Jet Impingement on
`Micro-Patterned Surfaces Exhibiting Ribs and Cavities,” Proceedings the ASME-IMECE,
`IMECE2012-89441, at Houston, TX, November 2012.
`44. D. Maynes, J. Vanderhoff, G. Rosengarten, 2012, Fully-Developed Thermal Transport in
`Microchannels with Streamwise Grooved Superhydrophobic Walls at Constant Heat Flux,”
`Proceedings the ASME-IMECE, IMECE2012-89441, at Houston, TX, November 2012.
`J. Xuan, M. N. Hamblin, H. D. Tolley, D. Maynes, A. R. Hawkins, A. T. Woolley, M. L. Lee,
`2011, “Planar Nanofluidic Devices for Nanoparticle Sieving,” 35th International Symposium on
`Capillary Chromatography (ISCC) May 2011.
`46. K. N. Oliphant, J. Krise, D. Maynes, and S. Gorrell, 2011, "Inducer Design for Ultra-High
`Suction Performance in the Presence of an Inlet Flow Stabilizing Device," Joint Army Navy Nasa
`Air Force December 2011 8th Modeling and Simulation / 6th Liquid Propulsion 5 5th Propulsion
`Joint Subcommittee Meeting, Huntsville, AL, December 2011.
`47. D. Maynes, N. Tulett, R. Nielson, J. Vanderhoff, and B. W. Webb, 2011, "Influence of
`Superhydrophobic Walls on The Thermal Transport to Liquid Droplets," Proceedings the ASME-
`IMECE, IMECE2011-63673, at Denver CO, November 2011.
`48. G. J. Holt, D. Maynes, and J. Blotter, 2011, "Cavitation at Sharp Edge Multi-hole Baffle
`Plates," Proceedings the ASME-IMECE, IMECE2011-64203, at Denver CO, November 2011.
`49. D. Cundick, D. Maynes, T. Moore, D. R. Tree, M. R. Jones, and L. L. Baxter, 2011, "In Situ
`Characterization of Coal Ash Thermal Conductivity Under Oxidizing and Reducing Conditions,"
`Proceedings the ASME-IMECE, IMECE2011-64836, at Denver CO, November 2011.
`50. D. Maynes, B. W. Webb, and V. Soloviev, 2011, “Analysis of Laminar Slip-Flow Thermal
`Transport in Microchannels with Transverse Rib and Cavity Structured Superhydrophobic Walls
`at Constant Heat Flux,” Proceedings of ASME/JSME 2011 8th Thermal Engineering Joint
`Conference, AJTEC2011-44113, at Honolulu Hawaii, March 2011.
`51. T. Truscott, J. Belden, K. Langley, D. Maynes, 2010, "Eggs in Milk," American Physical Society
`Bulletin, Vol. 55, Fluid Dynamics.
`J. C. Klewicki, J. Elsnab, D. Maynes, T. Ameel, 2010, "Mean Dynamics of Channel Flow
`Transition," American Physical Society Bulletin, Vol. 55, Fluid Dynamics.
`53. G. Holt, D. Maynes, J. D. Blotter, 2010, Characterization of Turbulence and Cavitation Induce
`Pipe Vibrations Due to Flow Through Baffle Plates," American Physical Society Bulletin, Vol.
`55, Fluid Dynamics.
`
`52.
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`7
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`IPR2017-00756
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`f'real Foods Exhibit 2022
`Page 7
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`Professor Daniel Maynes C.V.
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`55.
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`54. M. Johnson, D. Maynes, B. W. Webb, 2010, "Transition Regimes of Jet Impingement on Rib and
`Cavity Superhydrophobic Surfaces," American Physical Society Bulletin, Vol. 55, Fluid
`Dynamics.
`J. Pearson, D. Maynes, B. W. Webb, 2010, "Qualitative Observations of Droplet Impact on
`Superhydrophobic Surfaces with Micro-ribs for Three Fluids," American Physical Society
`Bulletin, Vol. 55, Fluid Dynamics.
`56. A. Amin, D. Maynes, B. W. Webb, 2010, "3-D Simulations of Liquid Laminar Flow over
`Superhydrophobic Surfaces for Two Scenarios: 1. Shear Driven Flow with Square Post
`Geometries, 2. Pressure-driven Flow with Rectangular Post Geometries," American Physical
`Society Bulletin, Vol. 55, Fluid Dynamics.
`57. A. Thompson, D. Maynes, J. Blotter, 2010, "Turbulence Induced Vibrations in Pipe Flow With
`and Without Baffle Plates," Proceedings of the 2010 ASME FEDSM Conference, FEDSM-
`ICNMM2010-30477, at Montreal Canada, August 2010.
`58. T. Shurtz, D. Maynes, J. Blotter, 2010, "Analysis of Induced Vibrations in Fully-Developed
`Turbulent Pipe Flow Using a Coupled LES and FEA Approach, Proceedings of the 2010 ASME
`FEDSM Conference, FEDSM-ICNMM2010-30477, at Montreal Canada, August 2010.
`59. N. O. Packard, R. D. Maynes, D. Japikse, S. E. Gorrell, 2010, "Numerical Characterization of the
`Inlet Flow for Eleven Turbomachines," Proceedings of the AMSE Turbo Expo 2010, at Glasgow
`UK, June 2010.
`60. T. J. Moore, M. R. Jones, D. R. Tree, D. Maynes, L. L. Baxter, 2010, "An Experimental Method
`for Making Spectral Emittance and Surface Temperature Measurements of Opaque Surfaces,"
`Proceedings of the International Symposium on Radiation Transfer VI, at Antalya Turkey, June
`2010.
`61. M. Johnson, B. Russell, D. Maynes, and B. W. Webb, 2009, “Hydraulic Jumps on
`Superhydrophobic Surfaces Exhibiting Ribs and Cavities,” American Physical Society Bulletin,
`Vol. 54, Fluid Dynamics.
`J. Pearson, D. Maynes, and B. W. Webb, 2009, “Influence of Liquid Type on Drop Impingement
`on Rib and Cavity Superhydrophobic Surfaces,” American Physical Society Bulletin, Vol. 54,
`Fluid Dynamics.
`63. M. Amin, D. Maynes, B. W. Webb, 2009, “Numerical Investigation of Liquid Flow through
`Micro-channels with Post Patterned Super-hydrophobic Walls,” American Physical Society
`Bulletin, Vol. 54, Fluid Dynamics.
`J. Prince, B. Woolford, D. Maynes, and B. W. Webb, 2009, “PIV Characterization of Turbulent
`Channel Flow with Rib Patterned Superhydrophobic Walls,” American Physical Society Bulletin,
`Vol. 54, Fluid Dynamics.
`65. A. Thompson, D. Maynes, and J. B. Blotter, 2009, “Experimental Characterization of Induced
`Vibration in Fully-Developed Turbulent Pipe Flow,” Proceedings of the 2009 ASME FEDSM,
`FEDSM2009-78139, Vail CO, Aug. 2009.
`66. M. Hamblin, D. Murray, D. Maynes, A. Hawkins, 2009, “Transient Filling of Closed
`Nanochannels by Capillarity,” Proceedings of the 2009 ASME FEDSM, FEDSM2009-78139, to
`Vail CO, Aug. 2009.
`67. T. P. Moore, D. P. Cundick, M. R. Jones, D. R. Tree, D. Maynes, L. L. Baxter, 2009, “An
`Experimental Method for Making in-situ Spectral Emittance Measurements of Coal Ash
`Deposits,” Proceedings of the 2009 ASME IMECE, IMECE2009-13215, Lake Buena Vista, FL,
`Nov. 2009.
`
`62.
`
`64.
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`8
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`IPR2017-00756
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`f'real Foods Exhibit 2022
`Page 8
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`Professor Daniel Maynes C.V.
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`70.
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`80.
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`68. B. Woolford, J. Prince, D. Maynes, and B. W. Webb, 2008, "PIV Measurements of Laminar and
`Turbulent Channel Flow with Superhydrophobic Walls," American Physical Society Bulletin,
`Vol. 53, Fluid Dynamics.
`69. Z. Collins, D. Maynes, and B. W. Webb, 2008, "The Dynamics of Free-Surface Liquid Jet
`Impingement on Superhydrophobic Surfaces,"American Physical Society Bulletin, Vol. 53, Fluid
`Dynamics.
`J. Pearson, D. Maynes, and B. W. Webb, 2008, "Liquid Drop Impingement on Superhydrophobic
`Surfaces,"American Physical Society Bulletin, Vol. 53, Fluid Dynamics.
`71. B. Woolford, D. Maynes, and B. W. Webb, 2008, "Laminar Flow of a Liquid through
`Microchannels with Superhydrophobic Walls Under Wetting and Non-Wetting Conditions,"
`Proceedings of the ECI Conference on Heat Transfer and Fluid Flow in Microscale, Whistler
`BC, Sept. 2008.
`72. B. Woolford, J. Prince, D. Maynes, and B. W. Webb, 2008, "PIV Measurements of Laminar and
`Turbulent Channel Flow with Superhydrophobic Walls," Proceedings of the ECI Conference on
`Heat Transfer and Fluid Flow in Microscale, Whistler BC, Sept. 2008.
`73. K. Jeffs, D. Maynes, B. W. Webb, 2007, “Turbulent Flow in a Microchannel with Surface
`Patterned Microribs Oriented Parallel to the Flow Direction,” Proceedings of the 2007 ASME
`IMECE Conference, IMECE2007-41392, at Seattle WA, Nov. 2007.
`74. B. Woolford, D. Maynes, B. W. Webb, and B. Jensen, 2007, “Laminar and Turbulent Flow of a
`Liquid through Microchannels with Walls Exhibiting Wetting and Non-Wetting Cavity Regions,"
`American Physical Society Bulletin, Vol. 52, Fluid Dynamics.
`75. K. Jeffs, D. Maynes, and B. W. Webb, 2007, “Turbulent Flow through a Microchannel with
`Superhydrophobic Walls," American Physical Society Bulletin, Vol. 52, Fluid Dynamics.
`76. D. Maynes, K. Jeffs, B. Woolford, and B. W. Webb, 2007, “Influence of the Vapor Cavity Depth
`on Liquid Flow through a Microchannel Exhibiting Superhydrophobic Walls," American Physical
`Society Bulletin, Vol. 52, Fluid Dynamics.
`77. D. Cundick, R. P. Blanchard, D. Maynes, D. Tree, and L. L. Baxter, 2007, “Thermal Transport to
`a Reactor Wall with a Time Varying Ash Layer, Proceedings of the 5th U.S. Combustion
`Meeting, at San Diego, CA, March 2007.
`78. N. Agbonkonkon, D.

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