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Choking phenomena of sonic nozzles at low Reynolds numbers

机译:低雷诺数下声波喷嘴的窒息现象

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The choking phenomena of sonic nozzles were investigated for the Reynolds number range from 40 to 30 000 for nitrogen gas. The results showed that the critical hack pressure ratio is a function of the Reynolds number only, with different characteristics for different nozzle shapes. In ISO-type toroidal-throat Venturi nozzles, the minimum Reynolds number satisfying the choking condition is about 40 and the critical back pressure ratio is only about 0.05 at this minimum Reynolds number. It was also found that the critical back pressure ratio has a local minimum value around Re{sub}(th)=4000 and that the local maximum value is around Re{sub}(th)=10 000 due to the change in characteristics of the boundary layer in the diffuser. On the other hand, the critical back pressure ratio in quadrant nozzles decreases monotonically with decreasing Reynolds number, unlike the former nozzle, and the minimum Reynolds number necessary for choking is estimated to be approximately the same as that in the Venturi nozzle.
机译:对于氮气的雷诺数范围为40至30 000,研究了声波喷嘴的阻塞现象。结果表明,临界起爆压力比仅是雷诺数的函数,对于不同的喷嘴形状具有不同的特性。在ISO型环喉文丘里喷嘴中,满足节流条件的最小雷诺数约为40,而在此最小雷诺数下,临界背压比仅为0.05。还发现临界背压比在Re {sub}(th)= 4000附近有一个局部最小值,并且由于扩散器中的边界层。另一方面,象限喷嘴中的临界背压比随雷诺数的减少而单调降低,这与以前的喷嘴不同,并且窒息所需的最小雷诺数估计与文丘里喷嘴中的最小雷诺数大致相同。

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