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Control of Unstart Phenomenon in a Hydrogen Fuelled Scramjet Engine

机译:控制氢燃料炒菜发动机中的unstart现象

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The present work aims at numerical methodology development tor modeling supersonic combustion using 8 species, 13 reaction hydrogen-air reaction model. The governing equations of continuity, momentum, energy, and species conservation have been solved using commercial code of Fluent®. The developed method is then used for modeling the unstart phenomenon in scramjet engine. The unstart is initiated as a result of heat released due to combustion of fuel. An automatic control system to mitigate unstart by leaking high-pressure fluid from the slots designed on the lower wall of the scramjet has been suggested and its efficacy has been tested. It is seen that slots of size 6mm on lower wall are able to prevent inlet choking. The physics behind the unstart phenomenon and its control has been explained with the help of boundary layer bleeding and shock theory.
机译:目前工作旨在使用8种,13型反应氢气反应模型进行数值燃烧超声燃烧的数值现象。使用Fluent®的商业代码解决了连续性,动量,能量和物种保护的控制方程。然后使用开发的方法来建模扰扰发动机中的unstart现象。由于燃料燃烧而导致的热量发起未启动。已经提出了一种自动控制系统,以通过从斯皮克喷嘴的下壁上的槽中泄漏高压流体来减轻高压流体,并测试其功效。可以看出,下墙上尺寸6mm的槽能够防止入口窒息。在边界层出血和震动理论的帮助下,已经解释了Unstart现象及其控制背后的物理学。

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