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首页> 外文期刊>Journal of engineering physics and thermophysics >EFFECT OF A SUPERSONIC COUNTERFLOW JET ON BLUNT BODY HEAT TRANSFER RATES FOR ONCOMING HIGH ENTHALPY FLOW
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EFFECT OF A SUPERSONIC COUNTERFLOW JET ON BLUNT BODY HEAT TRANSFER RATES FOR ONCOMING HIGH ENTHALPY FLOW

机译:超音速逆流射流对迎面而来的高焓流的钝体传热速率的影响

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摘要

Heat transfer reduction studies, in the presence of a supersonic counter flow jet from the stagnation point of a 60-deg apex angle blunt cone, are conducted in a free piston driven hypersonic shock tunnel, HST3, to verify the effectiveness of this technique for high enthalpy flows. For flow of Mach number 8 with stagnation enthalpy of 5 MJ/kg, it has been observed that the heat transfer rate at some location decreases initially with increase in the injection pressure ratio until the critical injection pressure ratio is reached. A forty-five percent reduction in heat transfer rate near the stagnation point has been measured for the critical injection pressure ratio, equal to 14.91. A further increase in the injection pressure ratio reduces the overall percentage heat transfer reduction. The dependence of fluidic spike length on percentage heat transfer reduction has been confirmed.
机译:在自由活塞驱动的高超声速冲击通道HST3中,在存在来自60度顶角钝角的滞止点的超音速逆流射流的情况下,进行了减少传热的研究,以验证该技术在高通量下的有效性。焓流。对于停留焓为5 MJ / kg的8马赫数流量,已经观察到,某些位置的传热速率最初会随着注入压力比的增加而降低,直到达到临界注入压力比。对于临界喷射压力比(等于14.91),已经测量到停滞点附近的传热速率降低了45%。注射压力比的进一步增加减少了总的传热减少百分比。流体尖峰长度与传热减少百分比的关系已得到证实。

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