Institute of Fluid Flow Machinery, Polish Academy of Sciences, Fiszera 14 st., 80-231 Gdańsk, Poland.
Sensors (Basel). 2020 Dec 18;20(24):7281. doi: 10.3390/s20247281.
The paper presents the results of the experimental and numerical analysis of a six-hole orifice flow meter. The experiments were performed on humid air in a 100 mm diameter duct. The aim of this research was to investigate the mass flow and pressure drop dependency in an orifice of a predetermined shape and to compare the results obtained with computational formulas recommended in the ISO 5167-2 standard for a single-hole orifice flow meter. The experiments and calculations were performed on several multi-hole orifice geometries with different contraction coefficient in a wide range of Reynolds numbers. The pressure was probed immediately upstream and downstream of the orifice. The flow coefficient determined for the six-hole orifice flow meter investigated was compared with the flow coefficient of conventional single-hole orifice with the same contraction coefficient. The results from computational formulas for single-hole orifice from ISO 5167 are also included in the paper. During some experiments, an obstacle has been introduced in the duct at variable distance upstream from the orifice. The effect of the thus generated velocity field disturbance on the measured pressure drop was then investigated. Numerical simulation of the flow with the presence of the obstacle was also performed and compared with experimental data.
本文介绍了一种六孔节流装置流量计的实验和数值分析结果。实验在直径为 100 毫米的管道中进行,使用的是湿空气。本研究的目的是研究预定形状的节流孔的质量流量和压降依赖性,并将获得的结果与 ISO 5167-2 标准中推荐的用于单个孔节流装置流量计的计算公式进行比较。实验和计算在多种具有不同收缩系数的多孔节流装置几何形状上进行,雷诺数范围很宽。在节流孔的上游和下游立即探测压力。所研究的六孔节流装置流量计的流量系数与具有相同收缩系数的传统单孔节流装置的流量系数进行了比较。本文还包括了来自 ISO 5167 的单孔节流装置计算公式的结果。在一些实验中,在节流孔上游的不同距离处引入了障碍物,然后研究了由此产生的速度场干扰对测量压降的影响。还对存在障碍物时的流动进行了数值模拟,并与实验数据进行了比较。