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首页> 外文期刊>Journal of Mechanical Science and Technology >Study on the compressible viscous flows through a straight pipe
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Study on the compressible viscous flows through a straight pipe

机译:流经直管的可压缩粘性流的研究

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摘要

When sonic nozzles of significantly smaller diameter are used as standard flow meters, the critical backpressure ratio is affected by the boundary layer at the nozzle throat. It is known that, as the flow pathway is complicated in actual valves, the critical pressure ratio differs from the ideal value. However, the effect of the boundary layer thickness on choking criteria is still controversial. Choking phenomenon in a sonic nozzle fitted with a straight circular pipe of variable length is investigated numerically and the results are compared with experimental and theoretical ones. The results show that the actual critical pressure ratio is less than the ideal value and it decreases with increase in pipe length. The effect of boundary layer thickness on main flow Mach number is also made clear in this work. In addition, sonic conductance and pressure loss in actual viscous flows computed are compared with the ISO 6358 standard.
机译:当使用直径明显较小的声波喷嘴作为标准流量计时,临界反压比会受到喷嘴喉部边界层的影响。众所周知,由于实际阀中的流路复杂,因此临界压力比与理想值不同。然而,边界层厚度对窒息标准的影响仍然存在争议。数值研究了装有可变长度直管的声波喷嘴的窒息现象,并将其与实验和理论结果进行了比较。结果表明,实际临界压力比小于理想值,并且随着管道长度的增加而降低。在这项工作中,边界层厚度对主流马赫数的影响也很清楚。另外,将计算出的实际粘性流中的声导和压力损失与ISO 6358标准进行了比较。

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