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Research on windmill starting characteristics of MTE-D micro turbine engine
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作者 Xia Chen Fu Xin +2 位作者 Wan Zhaoyun Huang Guoping Chen Jie 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2013年第4期858-867,共10页
Micro turbine engine (MTE) is an important kind of propulsion system for miniature unmanned aircraft or missiles, because of its better high-speed performance (than propeller propulsion) and higher propulsion effi... Micro turbine engine (MTE) is an important kind of propulsion system for miniature unmanned aircraft or missiles, because of its better high-speed performance (than propeller propulsion) and higher propulsion efficiency (obviously than rockets). Windmill start is a common air-starting mode used in micro turbine engine. The windmill starting characteristics are important to the practical use of micro turbine engine. In this paper, the windmill starting characteristics research for a 12 cm diameter (MTE-D) micro turbine engine is carried out by experiment and numerical simulation. The characteristic of rotor mechanical losses at low-speed condition is stud- ied, and the engine common working line of windmill starting process is obtained. Based on the engine windmill characteristics, the propane ignition characteristics under different inflow conditions are researched, and the envelope of propane ignition and propane flameout is determined. The experimental research of fuel supply and ignition characteristics is completed, and the envelope of fuel supply and ignition is obtained. The windmill stage, propane ignition stage, fuel ignition stage and acceleration process from idling-speed to 80% full speed of MTE-D micro turbine engine is optimized, and the optimization windmill starting parameters are collected. The successful wind-mill starting experiment under this condition with engine speed up to 80% full speed indicates that these starting parameters are reasonable. All the starting parameters of MTE-D micro turbine engine obtained in this work are dimensionless parameters, and the conclusions obtained in this study have some reference to other micro turbine engines with the similar structural form and starting process. 展开更多
关键词 flameout boundary ignition characteristics low speed characteristics micro turbine engine windmill starting
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微型涡轮喷气发动机风车起动特性研究 被引量:1
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作者 万照云 《航空发动机》 2016年第6期30-35,共6页
为研究微小型涡轮喷气发动机风车起动的特性,以某微型涡轮喷气发动机为原型,通过数值模拟和试验研究相结合的方法,研究了其风车起动过程的各种特性。通过试验研究了丙烷气点火时间和丙烷气压对微型涡喷发动机转速以及燃烧室温度的影响规... 为研究微小型涡轮喷气发动机风车起动的特性,以某微型涡轮喷气发动机为原型,通过数值模拟和试验研究相结合的方法,研究了其风车起动过程的各种特性。通过试验研究了丙烷气点火时间和丙烷气压对微型涡喷发动机转速以及燃烧室温度的影响规律,以在最短时间内使得微型涡喷发动机转速和燃烧室温度满足可供油燃烧的条件,并确定所需要的丙烷气最小气量。结果表明:在本试验条件下发动机从起动到慢车状态过程中,以先快后慢的供油规律起动加速时间最短约为82 s;发动机从慢车到80%全转速状态过程中,实现相对最短加速时间的供油规律可分为2段,前段供油斜率较大为0.79,后段供油斜率较小为0.14。对其它结构形式和起动过程类似的微小型涡轮喷气发动机有一定借鉴作用。 展开更多
关键词 微型发动机 风车起动 低速特性 点火特性 航空发动机
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