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Study on discharge coefficient of perforated orifices as a new kind of flowmeter

机译:新型孔板流量计的流量系数研究

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摘要

A perforated orifice is promising in measuring flowrates accurately as a differential pressure device. In this study, the discharge coefficient of a perforated orifice, characterizing the relationship between the volumetric flowrate and the pressure drop across the orifice is presented. Different structures are tested experimentally including orifice thickness, porosity, hole distribution and upstream disturbance. For each case, a wide range of flowrate was tested in a horizontal single-phase water pipe with an I.D. of 29. mm. For comparison, the discharge coefficient was also obtained for the corresponding standard orifice with the same porosity and thickness. Meanwhile, the effect on the discharge coefficients of the structural parameters was assessed in terms of pressure drop. The theoretical analysis shows that a perforated orifice yields a weaker distortion to the flow than the corresponding standard orifice, indicating a lower pressure drop and a more stable flow field for the former. The experimental results show that the discharge coefficient of a perforated orifice is 22.5-25.6% larger but with a weaker scattering than that of the corresponding standard orifice. Furthermore, a perforated orifice has a lower critical Reynolds number and a stronger anti-disturbance ability. As a flowmeter, the perforated orifice is comparable to the newly developed differential pressure orifices, e.g. V-cone and slotted orifices, but with a simpler structure.
机译:多孔孔板有望作为差压装置准确地测量流量。在这项研究中,提出了多孔孔板的排放系数,表征了体积流量和穿过孔板的压降之间的关系。通过实验测试了不同的结构,包括孔口厚度,孔隙率,孔分布和上游干扰。对于每种情况,在具有I.D.的水平单相水管中测试了大范围的流量。 29.毫米。为了进行比较,还获得了具有相同孔隙率和厚度的相应标准孔的排放系数。同时,根据压降评估了对结构参数的排放系数的影响。理论分析表明,穿孔的孔口比相应的标准孔口对流的扭曲更弱,这表明前者的压降更低,流场更稳定。实验结果表明,穿孔孔的排放系数比相应标准孔的排放系数大22.5-25.6%,但散射较弱。此外,穿孔的孔具有较低的临界雷诺数和较强的抗干扰能力。作为流量计,多孔孔口可与新开发的差压孔口相媲美。 V形锥孔和带槽孔口,但结构更简单。

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