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首页> 外文期刊>Journal of propulsion and power >Inlet Starting of High-Contraction Axisymmetric Scramjets
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Inlet Starting of High-Contraction Axisymmetric Scramjets

机译:高收缩轴对称超燃冲压发动机的进气开始

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摘要

Reliable in-flight starting of the inlet is of critical importance for the successful operation of scramjet engines, particularly axisymmetric configurations with high-contraction inlets. The present research is undertaken to examine the capability of various inlet starting methods based on two principles: unsteady flow effects and variable geometries. Time-accurate viscous computations have been performed to investigate the transitional flowflelds introduced by a variety of methods that are applicable to axisymmetric geometries. Parametric studies have been conducted for instantaneous rupture of conical diaphragms and addition of bleed slots, which induce highly unsteady flow phenomena. Several methods employing variable inlet geometries have been tested for the latter principle, including opening doors and sliding doors (or diaphragm erosion). Successful inlet starting has been achieved as a result of unsteady transition induced by diaphragm rupture and quasi-steady transition, due to the sliding-door opening process. In particular, a bleed addition to the diaphragm rupture method has been found to be highly effective and pronounced flow stability has been observed in the sliding-door process.
机译:进气口在飞行中的可靠启动对于超燃冲压发动机的成功运行至关重要,特别是具有高收缩率进气口的轴对称配置。进行本研究以基于两个原理来检验各种入口启动方法的能力:非定常流动效应和可变几何形状。已经进行了时间精确的粘性计算,以研究适用于轴对称几何形状的各种方法引入的过渡流场。已经进行了参数研究,以研究圆锥形膜片的瞬时破裂和引流槽的增加,这些引流槽会引起高度不稳定的流动现象。对于后一种原理,已经测试了几种采用可变入口几何形状的方法,包括打开门和滑动门(或隔膜腐蚀)。由于滑动门打开过程,隔膜破裂和准稳态过渡引起不稳定过渡,从而实现了成功的进气启动。特别地,发现隔膜破裂方法的放气是非常有效的,并且在滑动门过程中观察到明显的流动稳定性。

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