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首页> 外文期刊>International Journal of Turbo and Jet Engines >Preliminary Experimental Investigation on Detonation Initiation in the Ejector of a Pulse Detonation Rocket Engine
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Preliminary Experimental Investigation on Detonation Initiation in the Ejector of a Pulse Detonation Rocket Engine

机译:脉冲爆震火箭发动机喷射器内爆震起爆的初步实验研究

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摘要

A small pulse detonation rocket engine (PDRE) was used as a predetonator to initiate detonation in its ejector. The detonation products discharged from the PDRE was not only ignition source for the ejector but also primary flow which entrained air from environment into the ejector. Stoichiometric liquid kerosene and gaseous oxygen were used as reactants for the PDRE. While in the ejector injected liquid kerosene was used as fuel and entrained air was used as oxidizer. Reactants in the ejector were ignited by the detonation wave and products discharged from the PDRE. Detonation was successfully initiation in present experiments. It was found that flame propagation upstream at the entrance of the ejector was inevitable, which affected the detonation initiation process in the ejector. Disks with orifices were placed at the entrance of the ejector to weaken the flame propagation upstream effect, which would affect the air flow entraining process, but the results show it worked.
机译:小脉冲爆震火箭发动机(PDRE)被用作预爆器,以在其弹射器中引发爆震。从PDRE排出的爆炸产物不仅是喷射器的点火源,而且还是将空气从环境带入喷射器的主要气流。化学计量的液态煤油和气态氧被用作PDRE的反应物。在喷射器中,注入的液体煤油用作燃料,夹带的空气用作氧化剂。爆炸器中的反应物被爆炸波点燃,PDRE排出的产物被点燃。在本实验中成功地引发了爆炸。发现在喷射器入口处火焰不可避免地向上游传播,这影响了喷射器中的起爆过程。将带孔的圆盘放置在喷射器的入口处,以减弱火焰在上游的传播效果,这会影响气流的引流过程,但结果表明该方法有效。

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