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3D Isosceles Triangular Ultrasonic Path of Transit-Time Ultrasonic Flowmeter: Theoretical Design and CFD Simulations

机译:时间超声波流量计的3D等腰三角形超声波路径:理论设计和CFD仿真

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摘要

Increasing the coverage rate of ultrasonic path to flow field is helpful to improve measurement results’ accuracy of transit-time ultrasonic flowmeters while asymmetric flow or turbulence exists. In this paper, a 3D isosceles triangular ultrasonic path is presented considering the width of the ultrasonic signal and the maximum coverage rate of the ultrasonic path to flow field. To evaluate the feasibility and effectiveness of the path proposed, computational fluid dynamics simulations of three pipeline configurations, including straight pipeline, single elbow, and contracted pipeline upstream ultrasonic flowmeter (diameter of pipeline, , , or long are performed. In particular, inlet velocity of flow ranges from 0.1 to 10 m/s. Meanwhile, control simulation of U-type ultrasonic path is discussed to verify the effect of coverage rate of ultrasonic path to flow field on measurement results. It is shown that the proposed 3D isosceles triangular ultrasonic path, whose coverage rate is 54%, does well in improving the stability and accuracy of measurement results while pipeline configuration upstream flowmeter changes.
机译:在存在非对称流动或湍流的情况下,增加超声路径对流场的覆盖率有助于提高超声时时流量计的测量结果准确性。在本文中,考虑了超声信号的宽度和超声路径对流场的最大覆盖率,提出了一种3D等腰三角形超声路径。为了评估所提议的路径的可行性和有效性,对三种管道配置(包括直管,单弯头和收缩管道上游超声流量计(管道直径、、或长)进行了计算流体动力学模拟,特别是入口速度)。流量范围从0.1到10 m / s,同时讨论了U型超声路径的控制仿真,以验证超声路径对流场的覆盖率对测量结果的影响,表明所提出的3D等腰三角超声当管道配置上游流量计发生变化时,该路径的覆盖率为54%,在提高测量结果的稳定性和准确性方面效果很好。

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