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Unsteady coupled convection, conduction and radiation simulations on parallel architectures for combustion applications

机译:用于燃烧应用的并行体系结构上的非稳态耦合对流,传导和辐射模拟

摘要

In the aeronautical industry, energy generation relies almost exclusively in the combustion of hydrocarbons. The best way to improve the efficiency of such systems, while controlling their environmental impact, is to optimize the combustion process. With the continuous rise of computational power, simulations of complex combustion systems have become feasible, but until recently in industrial applications radiation and heat conduction were neglected. In the present work the numerical tools necessary for the coupled resolution of the three heat transfer modes have been developed and applied to the study of an helicopter combustion chamber. It is shown that the inclusion of all heat transfer modes can influence the temperature repartition in the domain. The numerical tools and the coupling methodology developed are now opening the way to a good number of scientific and engineering applications.
机译:在航空工业中,能源的产生几乎完全依赖于碳氢化合物的燃烧。在控制此类系统对环境的影响的同时,提高此类系统效率的最佳方法是优化燃烧过程。随着计算能力的不断提高,复杂燃烧系统的模拟已变得可行,但直到最近在工业应用中,辐射和热传导才被忽略。在目前的工作中,已经开发了三种传热模式的耦合分辨率所必需的数值工具,并将其用于直升机燃烧室的研究。结果表明,所有传热模式的包含都会影响域中的温度重新分配。现在,开发的数值工具和耦合方法为许多科学和工程应用打开了道路。

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    Amaya Jorge;

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  • 年度 2010
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