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Detonation duct gas generator demonstration program

机译:爆管气体发生器示范方案

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摘要

The feasibility of the generation of detonation waves moving periodically across high speed channel flow is experimentally demonstrated. Such waves are essential to the concept of compressing requirements and increasing the engine pressure compressor with the objective of reducing conventional compressor requirements and increasing the engine thermodynamic efficiency through isochoric energy addition. By generating transient transverse waves, rather than standing waves, shock wave losses are reduced by an order of magnitude. The ultimate objective is to use such detonation ducts downstream of a low pressure gas turbine compressor to produce a high overall pressure ratio thermodynamic cycle. A 4 foot long, 1 inch x 12 inch cross-section, detonation duct was operated in a blow-down mode using compressed air reservoirs. Liquid or vapor propane was injected through injectors or solenoid valves located in the plenum or the duct itself. Detonation waves were generated when the mixture was ignited by a row of spark plugs in the duct wall. Problems with fuel injection and mixing limited the air speeds to about Mach 0.5, frequencies to below 10 Hz, and measured pressure ratios of about 5 to 6. The feasibility of the gas dynamic compression was demonstrated and the critical problem areas were identified.
机译:实验证明了产生爆炸波周期性地跨越高速通道流动的可行性。这样的波对于压缩要求和增加发动机压力压缩机的概念是必不可少的,其目的是通过添加等容能量来降低常规压缩机要求并提高发动机热力学效率。通过产生瞬态横波而不是驻波,冲击波的损失减少了一个数量级。最终目的是在低压燃气轮机压缩机的下游使用这种爆震管,以产生较高的总压力比热力学循环。使用压缩空气储罐以放气模式操作4英尺长,1英寸x 12英寸横截面的爆管。液体或蒸气丙烷通过位于气室或导管本身中的喷射器或电磁阀注入。当混合物通过导管壁中的一排火花塞点燃时,会产生爆震波。燃料喷射和混合的问题将空气速度限制在大约0.5马赫,频率限制在10 Hz以下,并且测得的压力比大约为5至6。证明了气体动态压缩的可行性,并确定了关键问题区域。

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