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Analytical combustion/emissions research related to the NASA high-speed research program

机译:与NASA高速研究计划相关的分析燃烧/排放研究

摘要

Increasing the pressure and temperature of the engines of new generation supersonic airliners increases the emissions of nitrogen oxides to a level that would have an adverse impact on the Earth's protective ozone layer. In the process of implementing low emissions combustor technologies, NASA Lewis Research Center has pursued a combustion analysis program to guide combustor design processes, to identify potential concepts of greatest promise, and to optimize them at low cost, with short turn-around time. The approach is to upgrade and apply advanced computer programs for gas turbine applications. Efforts have been made to improve the code capabilities of modeling the physics. Test cases and experiments are used for code validation. To provide insight into the combustion process and combustor design, two-dimensional and three-dimensional codes such as KIVA-II and LeRC 3D have been used. These codes are operational and calculations have been performed to guide low emissions combustion experiments.
机译:新一代超音速客机的发动机压力和温度升高,会使氮氧化物的排放增加到一定水平,这会对地球的保护性臭氧层产生不利影响。在实施低排放燃烧器技术的过程中,美国宇航局刘易斯研究中心推行了燃烧分析程序,以指导燃烧器设计过程,确定具有最大前景的潜在概念,并以较短的周转时间以低成本对其进行优化。该方法是针对燃气轮机应用升级和应用高级计算机程序。已经做出努力来改善对物理建模的代码能力。测试用例和实验用于代码验证。为了深入了解燃烧过程和燃烧室设计,已使用二维和三维代码,例如KIVA-II和LeRC 3D。这些规范是可操作的,并且已经进行了计算以指导低排放燃烧实验。

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    Nguyen H. Lee;

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  • 年度 1991
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