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Investigation on Pressure-tapping Methods of Long Waist Cone Flow meter Using CFD Simulation

机译:基于CFD仿真的长锥流量计攻丝方法研究。

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Differential pressure (DP) flow meters are playing an increasingly important role in multiphase flow in petroleum industry. The long waist cone flow meter, as a new type of DP flow meter, is introduced in this paper. And its flow field in a horizontal pipe of 50mm diameter is numerically simulated with Computational Fluid Dynamics (CFD), in search of the optimum pressure-tapping method. The results of numerical simulations indicate that the long waist cone flow meter has the merits of the annular channel flow meters by forming an annular flow in annular channel region, which makes it possible to improve the repeatability and accuracy of measurement. The high pressure port at the ID upstream of the cone's entrance section and the low pressure port at the middle of annular channel region and 3D downstream of the cone's exit section are the optimum pressuretapping methods. The relative error of discharge coefficient is within ±0.5%. This investigation will provide a theoretical and design basis for the development of new DP flow meters.
机译:差压(DP)流量计在石油工业的多相流中扮演着越来越重要的角色。介绍了一种新型的DP流量计长腰锥流量计。为了寻找最佳的攻压方法,利用计算流体力学(CFD)对50mm直径水平管中的流场进行了数值模拟。数值模拟结果表明,长腰锥流量计通过在环形通道区域形成环形流,具有环形通道流量计的优点,从而有可能提高测量的可重复性和准确性。最佳的攻丝方法是在圆锥形入口部分的上游ID处的高压端口和环形通道区域的中部和圆锥形出口部分下游的3D低压端口。放电系数的相对误差在±0.5%以内。这项研究将为新型DP流量计的开发提供理论和设计基础。

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