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氢/氧气-气喷注器冷流掺混与燃烧比较的仿真研究
引用本文:汪小卫,金平,杜正刚,蔡国飙.氢/氧气-气喷注器冷流掺混与燃烧比较的仿真研究[J].航空动力学报,2008,23(9):1737-1742.
作者姓名:汪小卫  金平  杜正刚  蔡国飙
作者单位:北京航空航天大学宇航学院,北京,100191
基金项目:国家高技术研究发展计划(863计划) 
摘    要:分别采用无化学反应的和带化学反应的湍流N-S方程描述发动机内流动过程,对气-气同轴剪切式单喷注器进行了冷流掺混和燃烧的仿真.其中化学反应速率由Arrhenius公式计算,采用9步详细反应动力学模型来描述氢氧反应.对典型冷流和燃烧仿真结果进行了比较,结果表明燃烧掺混速率明显小于冷流掺混速率;并对同轴喷注器关键参数对冷流和燃烧掺混的影响进行了仿真和分析比较,得到速度比、缩进量和喷注流量的影响是一致的,而喷注速度的影响是相反的.

关 键 词:气-气喷注器  气-气燃烧  全流量补燃(FFSC)循环发动机  冷流
收稿时间:2007/8/27 0:00:00
修稿时间:2007/11/23 0:00:00

Simulation of cold flow and combustion characteristics of shear-coaxial GH2/GO2 injectors
WANG Xiao-wei,JIN Ping,DU Zheng-gang and CAI Guo-biao.Simulation of cold flow and combustion characteristics of shear-coaxial GH2/GO2 injectors[J].Journal of Aerospace Power,2008,23(9):1737-1742.
Authors:WANG Xiao-wei  JIN Ping  DU Zheng-gang and CAI Guo-biao
Institution:School of Astronautics, Beijing University of Aeronautics and Astronautics, Beijing 100191, China;School of Astronautics, Beijing University of Aeronautics and Astronautics, Beijing 100191, China;School of Astronautics, Beijing University of Aeronautics and Astronautics, Beijing 100191, China;School of Astronautics, Beijing University of Aeronautics and Astronautics, Beijing 100191, China
Abstract:Single-element shear-coaxial GH2/GO2 injectors were simulated with non-chemical N-S equations for cold flow conditions and chemical N-S equations for combustion conditions.The chemical reaction was modeled with Arrhenius formulation.Detailed 9-step chemical dynamic model was used to describe the reaction of hydrogen and oxygen.The simulated results of typical cold flow fields and combustion fields were compared,showing that the mix ratio of combustion is much smaller than that of cold flow.The influences of velocity-ratio,recess-length and injector-flux for the cold flow condition are consistent with those for the combustion condition,while the influences of injection-velocity are contrary to each other.
Keywords:gas-gas injector  gas-gas combustion  full flow stage combustion(FFSC) cycle engine  cold flow
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