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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Study on supersonic rectangular microjets using molecular tagging velocimetry
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Study on supersonic rectangular microjets using molecular tagging velocimetry

机译:利用分子标记测速技术研究超音速矩形微射流

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摘要

In the present study, the characteristics of supersonic rectangular microjets are investigated experimentally using molecular tagging velocimetry. The jets are discharged from a convergent–divergent rectangular nozzle whose exit height is 500 μm. The jet Mach number is set to 2.0 for all tested jets, and the Reynolds number Re is altered from 154 to 5,560 by changing the stagnation pressure. The experimental results reveal that jet velocity decays principally due to abrupt jet spreading caused by jet instability for relatively high Reynolds numbers (Re>~450). The results also reveal that the jet rapidly decelerates to a subsonic speed near the nozzle exit for a low Reynolds number (Re = 154), although the jet does not spread abruptly; i.e., a transition in velocity decay processes occurs as the Reynolds number decreases. A supersonic core length is estimated from the streamwise distribution of the centerline velocity, and the length is then normalized by the nozzle exit height and plotted against the Reynolds number. As a result, it is found that the normalized supersonic core length attains a maximum value at a certain Reynolds number near which the transition in the velocity decay process occurs.
机译:在本研究中,使用分子标记测速技术对超音速矩形微射流的特性进行了实验研究。射流从会聚发散的矩形喷嘴排出,该喷嘴的出口高度为500μm。对于所有测试的喷嘴,喷嘴的马赫数均设置为2.0,并且通过更改停滞压力,将雷诺数Re从154更改为5,560。实验结果表明,相对较高的雷诺数(Re>〜450),射流速度的衰减主要是由于射流不稳定引起的突然射流扩展。结果还表明,尽管射流不会突然扩散,但在雷诺数较低(Re = 154)时,射流会迅速减速至喷嘴出口附近的亚音速。即,随着雷诺数减小,速度衰减过程发生过渡。根据中心线速度的流向分布估计超音速芯的长度,然后通过喷嘴出口高度对长度进行归一化,并针对雷诺数作图。结果发现,归一化的超音速铁心长度在一定的雷诺数处达到最大值,在该雷诺数附近发生速度衰减过程中的转变。

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