羽流效应地面模拟试验系统关键技术发展  被引量:10

Development of vacuum plume effects ground simulation experimental system key technology

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作  者:王文龙[1] 周建平[1] 蔡国飙[1] 

机构地区:[1]北京航空航天大学宇航学院,北京100191

出  处:《航空动力学报》2012年第4期900-906,共7页Journal of Aerospace Power

基  金:中俄航天合作项目

摘  要:叙述了羽流效应地面模拟试验系统由高空模拟试车台向真空试验系统发展的过程,指出引射原理的局限性和低温冷凝技术的适用性.介绍了应用低温冷凝技术建成的美国CHAFF-4(the collaborative high altitude flow facility-Ⅳ)系统和德国STG(Simulationsanlage für Treibstrahlenin Gttingen)系统及中国首座大型羽流效应地面模拟试验系统——PES(the plume effects experimental system)系统.采用直接模拟蒙特卡罗DSMC(direct simulation Monte Carlo)方法对PES设备的内置式液氦深冷泵的抽气能力进行了数值模拟研究,结果表明无论有无羽流吸附泵时,2g/s级发动机点火时,内置式液氦深冷泵都能满足发动机出口截面后φ4m×5m范围内的背压小于10-3 Pa,羽流吸附泵能有效地阻止压缩波向喷管方向推进.The development process of vacuum plume effects ground simulation test facilities from high altitude simulation test facilities to vacuum test system was described.The limitation of ejector principle and the applicability of cryogenic condensation technology were described.The American CHAFF-4(the collaborative high altitude flow facility-Ⅳ) facility,German STG(Simulationsanlage für Treibstrahlenin Gttingen) facility and China's first large-scale vacuum plume effects ground simulation experimental system—PES(the plume effects experimental system)facility were introduced,all of which were constructed based on the low temperature condensation technology.Details of the initial simulation investigation of PES's built-in LHe cryogenic pumping were presented along with the results from a direct simulation of Monte Carlo(DSMC).The results demonstrate that,with or without the plume cryogenic pumping,at 2g/s stage thruster working condition,the built-in liquid helium cryogenic pumping can meet the condition that the environment of the back pressure,in the region of 4m×5m,is less than 10-3Pa,and plume cryogenic pumping can effectively prevent the compression wave from diffusion to the nozzle direction.

关 键 词:真空羽流 地面模拟试验系统 低温冷凝技术 深冷泵 高空模拟 

分 类 号:V416.3[航空宇航科学与技术—航空宇航推进理论与工程]

 

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