典型挡板干扰下直管长度对超声波流量计测量的影响研究

Min Wei, Zhu Rui
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引用次数: 0

摘要

在目前国内市场上,各种超声波流量计,包括四(声)通道、六通道、八通道,无论是通束式还是反反射式,都声称对挡板干扰具有极强的适应性,直管比国标要求的要短。为了观察和研究这些气体超声波流量计对典型挡板干扰的公差和对前直管段长度的要求,我们的技术团队根据GB/T18604-2014气体超声波流量计测量天然气流量的工艺安装要求,以及AGA NO.9 -2017报告,采用涡轮工作标准组合系统作为流量测量标准装置,对具有代表性的DN100型a、B、C、D通道不同布置的气体超声波流量计进行天然气真实流量的测试。测试流程:首先在理想管道条件下测试获得基础数据,然后在典型流阻部件(空间弯头和歧管分别位于超声波流量计上游30D、20D和15D)的干扰条件下安装流量调节器,看主要技术指标是否能满足行业交接要求。笔者技术团队设计了不同工艺安装条件对气体超声波流量计测量精度影响的试验,并在分析试验数据的基础上提出了自己的看法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of Effect of Straight Pipe Length on Ultrasonic Flowmeter Measurement during Typical Baffle Interference
: On the current domestic market, a variety of ultrasonic flowmeters, including those with four (sound) channels, six channels, and eight channels, either through-beam and retro-reflective in channel arrangement, are all claimed to be extremely adaptable to baffle interference and have shorter straight pipes than required by the national standard. To observe and study the tolerance of these gas ultrasonic flowmeters to typical baffle interference and the requirements on the length of the front straight pipe segment, our technical team, according to the process installation requirements of GB/T18604-2014 measurement of natural gas flow by gas ultrasonic flow meters, as well as the AGA NO.9 -2017 report, use the turbine working standard combination system as a flow measurement standard device to test the real flow of natural gas for representative DN100 gas ultrasonic flowmeters with A, B, C, and D channels and different arrangements. Testing process: First, basic data were obtained by testing under ideal pipeline conditions, and then a flow regulator is installed under the interference conditions of typical flow blocking parts (space elbow and manifold are located 30D, 20D and 15D upstream of ultrasonic flowmeter), and see whether the main technical indicators can meet the requirements of trade handover. The technical team of the author designed the test of the effect of different process installation conditions on the measurement accuracy of the gas ultrasonic flowmeter and put forward their own views on the basis of analyzing the test data.
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