Time Dependent Computational Studies Of Premixed Flames In Microgravity

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Time-Dependent Computational Studies of Premixed Flames in Microgravity

Author : National Aeronautics and Space Administration (NASA)
Publisher : Createspace Independent Publishing Platform
Page : 102 pages
File Size : 50,7 Mb
Release : 2018-07-23
Category : Electronic
ISBN : 1723461083

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Time-Dependent Computational Studies of Premixed Flames in Microgravity by National Aeronautics and Space Administration (NASA) Pdf

This report describes the research performed at the Center for Reactive Flow and Dynamical Systems in the Laboratory for Computational Physics and Fluid Dynamics, at the Naval Research Laboratory, in support of NASA Microgravity Science and Applications Program. The primary focus of this research is on investigating fundamental questions concerning the propagation and extinction of premixed flames in earth gravity and in microgravity environments. Our approach is to use detailed time-dependent, multispecies, numerical models as tools to simulate flames in different gravity environments. The models include a detailed chemical kinetics mechanism consisting of elementary reactions among the eight reactive species involved in hydrogen combustion, coupled to algorithms for convection, thermal conduction, viscosity, molecular and thermal diffusion, and external forces. The external force, gravity, can be put in any direction relative to flame propagation and can have a range of values. Recently more advanced wall boundary conditions such as isothermal and no-slip have been added to the model. This enables the simulation of flames propagating in more practical systems than before. We have used the numerical simulations to investigate the effects of heat losses and buoyancy forces on the structure and stability of flames, to help resolve fundamental questions on the existence of flammability limits when there are no external losses or buoyancy forces in the system, to understand the interaction between the various processes leading to flame instabilities and extinguishment, and to study the dynamics of cell formation and splitting. Our studies have been able to bring out the differences between upward- and downward-propagating flames and predict the zero-gravity behavior of these flames. The simulations have also highlighted the dominant role of wall heat losses in the case of downward-propagating flames. The simulations have been able to qualitatively predict the formation...

Time-Dependent Computational Studies of Flames in Microgravity

Author : National Aeronautics and Space Administration (NASA)
Publisher : Createspace Independent Publishing Platform
Page : 112 pages
File Size : 54,9 Mb
Release : 2018-07-23
Category : Electronic
ISBN : 1723460982

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Time-Dependent Computational Studies of Flames in Microgravity by National Aeronautics and Space Administration (NASA) Pdf

The research performed at the Center for Reactive Flow and Dynamical Systems in the Laboratory for Computational Physics and Fluid Dynamics, at the Naval Research Laboratory, in support of the NASA Microgravity Science and Applications Program is described. The primary focus was on investigating fundamental questions concerning the propagation and extinction of premixed flames in Earth gravity and in microgravity environments. The approach was to use detailed time-dependent, multispecies, numerical models as tools to simulate flames in different gravity environments. The models include a detailed chemical kinetics mechanism consisting of elementary reactions among the eight reactive species involved in hydrogen combustion, coupled to algorithms for convection, thermal conduction, viscosity, molecular and thermal diffusion, and external forces. The external force, gravity, can be put in any direction relative to flame propagation and can have a range of values. A combination of one-dimensional and two-dimensional simulations was used to investigate the effects of curvature and dilution on ignition and propagation of flames, to help resolve fundamental questions on the existence of flammability limits when there are no external losses or buoyancy forces in the system, to understand the mechanism leading to cellular instability, and to study the effects of gravity on the transition to cellular structure. A flame in a microgravity environment can be extinguished without external losses, and the mechanism leading to cellular structure is not preferential diffusion but a thermo-diffusive instability. The simulations have also lead to a better understanding of the interactions between buoyancy forces and the processes leading to thermo-diffusive instability. Oran, Elaine S. and Kailasanath, K. Unspecified Center ALGORITHMS; EARTH GRAVITATION; EXTINGUISHING; FLAME PROPAGATION; MATHEMATICAL MODELS; MICROGRAVITY; PREMIXED FLAMES; TIME DEPENDENCE; BUOYANCY; CONVECTION; GAS MIX...

Time-Dependent Computational Studies of Flames in Microgravity

Author : National Aeronautics and Space Administration NASA
Publisher : Unknown
Page : 111 pages
File Size : 43,9 Mb
Release : 2018-11-13
Category : Electronic
ISBN : 1731262957

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Time-Dependent Computational Studies of Flames in Microgravity by National Aeronautics and Space Administration NASA Pdf

The research performed at the Center for Reactive Flow and Dynamical Systems in the Laboratory for Computational Physics and Fluid Dynamics, at the Naval Research Laboratory, in support of the NASA Microgravity Science and Applications Program is described. The primary focus was on investigating fundamental questions concerning the propagation and extinction of premixed flames in Earth gravity and in microgravity environments. The approach was to use detailed time-dependent, multispecies, numerical models as tools to simulate flames in different gravity environments. The models include a detailed chemical kinetics mechanism consisting of elementary reactions among the eight reactive species involved in hydrogen combustion, coupled to algorithms for convection, thermal conduction, viscosity, molecular and thermal diffusion, and external forces. The external force, gravity, can be put in any direction relative to flame propagation and can have a range of values. A combination of one-dimensional and two-dimensional simulations was used to investigate the effects of curvature and dilution on ignition and propagation of flames, to help resolve fundamental questions on the existence of flammability limits when there are no external losses or buoyancy forces in the system, to understand the mechanism leading to cellular instability, and to study the effects of gravity on the transition to cellular structure. A flame in a microgravity environment can be extinguished without external losses, and the mechanism leading to cellular structure is not preferential diffusion but a thermo-diffusive instability. The simulations have also lead to a better understanding of the interactions between buoyancy forces and the processes leading to thermo-diffusive instability. Oran, Elaine S. and Kailasanath, K. Unspecified Center ALGORITHMS; EARTH GRAVITATION; EXTINGUISHING; FLAME PROPAGATION; MATHEMATICAL MODELS; MICROGRAVITY; PREMIXED FLAMES; TIME DEPENDENCE; BUOYANCY; CONVECTION; GAS MIX...

Microgravity Science and Applications Program Tasks

Author : United States. Office of Space Science and Applications
Publisher : Unknown
Page : 280 pages
File Size : 55,5 Mb
Release : 1991
Category : Alloys
ISBN : UIUC:30112106713677

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Microgravity Science and Applications Program Tasks by United States. Office of Space Science and Applications Pdf

NASA Technical Memorandum

Author : Anonim
Publisher : Unknown
Page : 492 pages
File Size : 46,6 Mb
Release : 1994
Category : Aeronautics
ISBN : MINN:31951P00691495X

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NASA Technical Memorandum by Anonim Pdf

NASA Reports Required by Congress

Author : United States. Congress. House. Committee on Science, Space, and Technology. Subcommittee on Space
Publisher : Unknown
Page : 892 pages
File Size : 53,6 Mb
Release : 1993
Category : Aeronautics
ISBN : PSU:000021574351

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NASA Reports Required by Congress by United States. Congress. House. Committee on Science, Space, and Technology. Subcommittee on Space Pdf

NASA Reports Required by Congress

Author : United States. Congress. House. Committee on Science, Space, and Technology. Subcommittee on Space Science and Applications
Publisher : Unknown
Page : 894 pages
File Size : 48,7 Mb
Release : 1992
Category : Aeronautics
ISBN : UCLA:L0079920690

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NASA Reports Required by Congress by United States. Congress. House. Committee on Science, Space, and Technology. Subcommittee on Space Science and Applications Pdf