Merrill W. Beckstead

Affiliations: 
Brigham Young University, Provo, UT, United States 
Area:
Aerospace Engineering, Mechanical Engineering, Chemical Engineering, Acoustics Physics
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"Merrill Beckstead"
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Children

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Brian R. Newbold grad student 2000 BYU
Karl V. Meredith grad student 2003 BYU
Scott A. Felt grad student 2004 BYU
Ephraim B. Washburn grad student 2004 BYU
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Publications

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Gross ML, Meredith KV, Beckstead MW. (2015) Fast cook-off modeling of HMX Combustion and Flame
Meredith KV, Gross ML, Beckstead MW. (2015) Laser-induced ignition modeling of HMX Combustion and Flame. 162: 506-515
Yavor Y, Gany A, Beckstead MW. (2014) Modeling of the agglomeration phenomena in combustion of aluminized composite solid propellant Propellants, Explosives, Pyrotechnics. 39: 108-116
Gross ML, Hedman TD, Son SF, et al. (2013) Coupling micro and meso-scale combustion models of AP/HTPB propellants Combustion and Flame. 160: 982-992
Yavor Y, Gany A, Beckstead MW. (2011) Aluminum agglomeration in metallized solid propellants 51st Israel Annual Conference On Aerospace Sciences 2011. 2: 843-854
Gross ML, Washburn EB, Beckstead MW. (2010) High-fidelity predictions of the effects of pressure and particle size on ammonium perchlorate/hydroxyterminated- polybutadiene propellants International Journal of Energetic Materials and Chemical Propulsion. 9: 327-339
Washburn EB, Webb JA, Beckstead MW. (2010) The simulation of the combustion of micrometer-sized aluminum particles with oxygen and carbon dioxide Combustion and Flame. 157: 540-545
Gross ML, Beckstead MW. (2010) Diffusion flame calculations for composite propellants predicting particle-size effects Combustion and Flame. 157: 864-873
Gross ML, Beckstead MW. (2009) Diffusion flame calculations for composite propellants using a vorticity-velocity formulation Journal of Propulsion and Power. 25: 74-82
Washburn EB, Trivedi JN, Catoire L, et al. (2008) The simulation of the combustion of micrometer-sized aluminum particles with steam Combustion Science and Technology. 180: 1502-1517
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