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Computational / Experimental Study of a Variable Critical Nozzle Flow

机译:可变临界喷嘴流动的计算/实验研究

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Recently, critical nozzles have been extensively utilized to measure the mass flow rate in a variety of industrial applications. For the measurement of the mass flow rates at a wide range of operation conditions, the critical nozzle is required to be designed with different diameters. The objective of the present study is to investigate the effectiveness of a variable critical nozzle. A rod with a small diameter is inserted into the critical nozzle to change the effective cross-sectional area of the critical nozzle. Experimental work is performed to measure the mass flow rate of the critical nozzle with rod. Computational work is carried out using the 2-dimensional, axisymmetric, compressible Navier-Stokes equations which are discretized using a fully implicit finite volume method. The diameter of the rod is varied to obtain different mass flow rates through the variable critical nozzle. Computational results predict well the measured mass flow rates. The boundary layer displacement and momentum thickness at the throat of the critical nozzle are given as a function of Reynolds number. The discharge coefficient of the critical nozzle is given as an empirical equation.
机译:最近,临界喷嘴已被广泛利用以测量各种工业应用中的质量流量。为了在宽范围的操作条件下测量质量流量,需要具有不同直径的临界喷嘴。本研究的目的是研究可变临界喷嘴的有效性。将具有小直径的杆插入临界喷嘴中以改变临界喷嘴的有效横截面积。进行实验工作以测量杆的临界喷嘴的质量流速。使用二维轴对称,可由完全隐含的有限卷方法离散化的二维轴对称的压缩Navier-Stokes等式进行计算工作。杆的直径变化以通过可变临界喷嘴获得不同的质量流速。计算结果预测测量的质量流量。临界喷嘴喉部的边界层位移和动量厚度作为雷诺数的函数给出。临界喷嘴的放电系数被给出为经验方程。

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