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多喷嘴氢氧燃烧二元加热器设计与仿真
引用本文:田亮,陈超群,徐旭,宋冈霖,张岩.多喷嘴氢氧燃烧二元加热器设计与仿真[J].航空动力学报,2013,28(7):1475-1481.
作者姓名:田亮  陈超群  徐旭  宋冈霖  张岩
作者单位:1. 北京航空航天大学 宇航学院,北京,100191
2. 北京航空航天大学 宇航学院,北京100191;中国西昌卫星发射中心 发射测试站,四川西昌615608
3. 南阳理工学院 土木工程系,河南南阳,473300
摘    要:为了获得均匀的喷管出口参数,设计了两种喷注形式的多喷嘴氢氧燃烧二元加热器和一个拉瓦尔喷管,利用CFD仿真软件对其进行了流场计算,研究了同一工况下不同喷注器构型、速度比和喷嘴压降对喷管出口均匀度的影响.结果表明:喷注器构型对出口气流的均匀程度影响不大,它主要影响喷注器的温度;氢气与空氧混气的速度比越低,出口均匀性越好,空氧混气喷嘴的压降越低,出口均匀性越好;拉瓦尔喷管收缩比对出口均匀性有很大影响,设计时应尽量使两方向收缩比相近.

关 键 词:加热器  均匀性  速度比  氧喷嘴压降  收缩比
收稿时间:2012/7/13 0:00:00

Design and numerical simulation of two-dimensional oxygen-hydrogen heater with multiply jet
TIAN Liang,CHEN Chao-qun,XU Xu,SONG Gang-lin and ZHANG Yan.Design and numerical simulation of two-dimensional oxygen-hydrogen heater with multiply jet[J].Journal of Aerospace Power,2013,28(7):1475-1481.
Authors:TIAN Liang  CHEN Chao-qun  XU Xu  SONG Gang-lin and ZHANG Yan
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;China Xichang Satellite Launch Center, Xichang Sichuan 615608, China;Department of Civil Engineering, Nanyang Institute of Technology, Nanyang Henan 473300, China
Abstract:For generating uniform air flow at Laval nozzle outlet,the influences of the form,velocity ratio and pressure drop of the injection was studied.An air heater with two forms of injection and a Laval nozzle were designed,then FLUENT was used to simulate the combustion and flow filed.The result show that:there is little influence from the form of the injection,which mainly influences the temperature of the injector;the lower velocity rate and oxygen drop of the jet means the more uniform of nozzle outlet and approximative contraction ratio in two directions is better for the outlet.
Keywords:heater  uniformity  velocity ratio  oxygen pressure drop  contraction ratio
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