航天推进技术研究院主办
Zhao Jianjall,Liu Hongwei.Technology of relayed test with different oxidizers for liquid rocket engine[J].Journal of Rocket Propulsion,2009,35(03):38-41.
液体火箭发动机接力试验技术
- Title:
- Technology of relayed test with different oxidizers for liquid rocket engine
- Keywords:
- liquid rocket engine; oxidizer; relayed test
- 分类号:
- V434
- 文献标志码:
- A
- 摘要:
- 在一项特殊要求、非例常的试验中,需发动机进行接力试车:在同一次试车中 前后两个阶段分别使用两个不同厂家的氧化剂。在进行氧化剂切换时,发动机连续工作,即 进行接力试车。为此,在原试车台试验系统的基础上,进行了必要的技术改造,建立了试车 台发动机接力试车氧化剂试验系统。经热试车验证,改造后的系统工作安全可靠,满足发动 机接力试验要求。
- Abstract:
- A liquid rocket engine relayed test had to be conducted on a conventional test stand, in which oxidizers from different plants were required to be used without shut-down of the en矛ne for the purpose of checking the performances of the oxidizers.Thus,the original test stand had to be modified and a new oxidizer test system was established for relayed test.The key technology resolved during the relayed test is described in the paper.Hot test proved that the modified system operated reliably and safely.All the engine test requirements were met very well.
参考文献/References:
[l]曾源华,张政.液体火箭发动机试验[M].北京:宇航出版
社.1990.
[2]钱令希。龙驭球,张德良.计算力学[M].中国大百科全书
(力学卷).北京:中国大百科全书出版社,1985.
[3]刘顺隆,郑群.计算流体力学[M].哈尔滨:哈尔滨工业大
学出版社。1998.
[4]李伟民.液氧/煤油发动机试验起动过程推进剂供应技
术[J].火箭推进,1990,32(3):56—62.
[5]何付军,张炜,马宝民,等.推进剂加注设备的现状与
“三化”研究[J].航天标准化,2006(3):19—22.
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备注/Memo
收稿日期:2008--07—20;修回日期:2008-08—10。 作者简介:赵建军(1975一),男,高级工程师,研究领域为液体火箭发动机试验技术。