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首页> 外文期刊>Journal of Mechanical Science and Technology >Effect of diffuser angle on the discharge coefficient of miniature critical nozzles
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Effect of diffuser angle on the discharge coefficient of miniature critical nozzles

机译:扩散器角度对微型临界喷嘴排放系数的影响

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摘要

Many studies on critical nozzles have been made to accurately measure the mass flow rate of gas and standardize its performance as a flow meter. Recently, much interest has been given to measuring very small mass flow rates in industrial fields, such as MEMS applications. However, the design and performance data of the critical nozzles obtained thus far have been applied mainly to critical nozzles with comparatively large diameters, and available studies on miniature critical nozzles are lacking. In this study, computational fluid dynamics (CFD) method was applied to investigate the influence of the diffuser angle on the discharge coefficient of miniature critical nozzles. In computations, the throat diameter of a critical nozzle varied from 0.2 to 5.0 mm, and the diffuser angle changed from 2° to 8°. The computational results were validated with some available experimental data. The present computational results accurately predicted the discharge coefficient of gas flows through miniature critical nozzles. The discharge coefficient is considerably influenced by the diffuser angle as the throat diameter of the nozzle becomes smaller below a certain value. This implies that miniature critical nozzles should be designed with careful consideration of its effects.
机译:已经对临界喷嘴进行了许多研究,以精确地测量气体的质量流量并标准化其作为流量计的性能。最近,人们非常关注在诸如MEMS应用的工业领域中测量非常小的质量流率。然而,迄今为止获得的关键喷嘴的设计和性能数据已经主要应用于具有较大直径的关键喷嘴,并且缺乏对微型关键喷嘴的可用研究。在这项研究中,应用计算流体动力学(CFD)方法来研究扩散器角度对微型临界喷嘴的排放系数的影响。在计算中,临界喷嘴的喉管直径从0.2到5.0 mm不等,扩散器角度从2°到8°不等。计算结果已得到一些可用的实验数据的验证。当前的计算结果准确地预测了通过微型临界喷嘴的气流的排放系数。当喷嘴的喉部直径变得小于特定值时,排出系数受扩散角的影响很大。这意味着在设计微型临界喷嘴时应仔细考虑其作用。

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