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预冷却引射系统性能一维分析
引用本文:张建强,王振国,李清廉,徐万武,邹建军. 预冷却引射系统性能一维分析[J]. 国防科技大学学报, 2017, 39(3): 1-6
作者姓名:张建强  王振国  李清廉  徐万武  邹建军
作者单位:国防科技大学 高超声速冲压发动机技术重点实验室,国防科技大学 航天科学与工程学院,国防科技大学 航天科学与工程学院,国防科技大学 航天科学与工程学院,国防科技大学 航天科学与工程学院
基金项目:新世纪优秀人才支持计划(NCET-13-0156)
摘    要:根据引射器的一维设计理论可知,二次流在进入混合室之前进行预冷降温可以提高引射效率,增大引射系数,但引入预冷器会同时引起流动损失,故需要对引射系统进行性能评估。针对设有预冷器的引射系统,应用一维理论分析预冷对系统性能的影响,重点分析预冷增强效果与流阻减弱效果对引射效率的作用。研究发现:预冷器对引射系统同时带来冷却增强作用和流阻减弱作用,横截面积和换热面积是主要影响因素。预冷器存在临界横截面积,横截面积大于临界值时,换热面积越大,引射性能越高;反之,换热面积越大,引射性能越低。等压混合引射方案比等截面混合引射方案性能高,前者引射系数比后者大60%;预冷却能够有效提高引射性能,尤其是等截面混合引射方案,性能提高可达35.5%。

关 键 词:一维分析;预冷增强;流阻减弱;临界横截面积
收稿时间:2015-11-10
修稿时间:2016-01-31

One-dimensional analysis for performance of ejector with precooling
ZHANG Jianqiang,WANG Zhenguo,LI Qinglian,XU Wanwu and ZOU Jianjun. One-dimensional analysis for performance of ejector with precooling[J]. Journal of National University of Defense Technology, 2017, 39(3): 1-6
Authors:ZHANG Jianqiang  WANG Zhenguo  LI Qinglian  XU Wanwu  ZOU Jianjun
Abstract:According to one-dimension design theory of ejector, cooling the secondary flow before it enters mixing chamber could promote the eject efficiency and increase the eject efficient; but flow loss is brought with the addition of precooler, so the performance evaluation of ejector is necessary. The paper looks on the ejector with precooler, analyzes the effect of precooler to performance of system through the one-dimension theory, especially on intensifying effect of precooling and weakening effect of resistance to eject efficiency. The research results indicate that: 1. Precooler brings effects of intensifying effect of precooling and weakening effect of resistance, cross section area and heat transfer area of the precooler are the dominating factors; 2. Cross section area of the precooler has a critical value, when the cross section area is bigger than critical value, eject performance improves with the increase of heat transfer area, otherwise it worsen; 3. Eject performance of the equivalent pressure mixing scheme is better than the equivalent area mixing scheme, eject efficient of the former is 60% higher than the latter, precooling improves eject performance effectively, especially for the equivalent area mixing scheme, the performance is heightened for 35.5%, and for the equivalent pressure mixing scheme is 13.6%.
Keywords:one-dimensional analysis   intensifying effect of precooling   weakening effect of resistance   critical cross section area
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