首页> 外文会议>ASME Fluids Engineering Division summer meeting >EXPERIMENTAL AND THEORETICAL ANALYSIS OF DISCHARGE COEFFICIENT OF THROAT TAP NOZZLE BASED ON PTC 6 FOR WIDE RANGE REYNOLDS NUMBER
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EXPERIMENTAL AND THEORETICAL ANALYSIS OF DISCHARGE COEFFICIENT OF THROAT TAP NOZZLE BASED ON PTC 6 FOR WIDE RANGE REYNOLDS NUMBER

机译:基于PTC 6的大范围雷诺数的喉嘴喷嘴放电系数实验与理论分析。

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Throat tap nozzle of ASME PTC 6 is widely used in engineering fields, and its discharge coefficient is normally estimated by an extrapolation in Reynolds number range higher than the order of 10~7. The purpose of this paper is to propose a new relationship of the discharge coefficient of the throat tap nozzle and Reynolds number that can be applied to Reynolds number up to 1.5×10~7 by a detailed analysis of the experimental data and the theoretical models. The discharge coefficients are measured for several tap diameters in Reynolds number range from 2.4×10~5 to 1.4×10~7 using the high Reynolds number calibration rig in NMIJ. Experimental results show that the discharge coefficients depend on the tap diameter and the deviation between the experimental results and the reference curve of PTC 6 is 0.75% at maximum. New equations to estimate the discharge coefficient are developed based on the experimental results and the theoretical equations including the tap effects. The developed equations estimate the discharge coefficient of the present experimental data within 0.21%, and they are expected to estimate more accurately the discharge coefficient of the throat tap nozzle of PTC 6 in comparison with the reference curve of PTC 6.
机译:ASME PTC 6的喉头喷嘴广泛用于工程领域,其排放系数通常通过雷诺数范围大于10〜7的外推法估算。本文旨在通过对实验数据和理论模型的详细分析,提出一种适用于1.5×10〜7的雷诺数的喉道喷嘴出水系数与雷诺数的新关系。使用NMIJ中的高雷诺数校准装置,可以测量雷诺数范围从2.4×10〜5到1.4×10〜7的多个丝锥直径的放电系数。实验结果表明,放电系数取决于抽头直径,并且实验结果与PTC 6的参考曲线之间的偏差最大为0.75%。根据实验结果和包括抽头效应的理论方程式,开发了估算放电系数的新方程式。所开发的方程式将当前实验数据的排放系数估计在0.21%以内,并且与PTC 6的参考曲线相比,它们有望更准确地估计PTC 6的喉头喷嘴的排放系数。

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