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Calibration of an ultrasonic flow meter for hot water

机译:热水超声波流量计的校准

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If we want to keep the number of necessary characterisation measurements within acceptable limits, we need to be confident that a flow instrument design reacts in a predictable and straightforward way to systematic influences. In this paper, the important systematic influences for an ultrasonic flow meter (UFM) for feed water flow are identified to decide which characterisations have to be carried out in addition to a typical baseline calibration with water at 20℃. In heat metering applications where there are temperatures up to 120℃ it is for example known that the temperature influence on the flow instrument is important and this also applies to higher temperatures such as in the feed water control of power plants. One of the critical systematic temperature influences that affects most flow instruments is the thermal expansion of the meter body. From June 2009 to March 2010, the "Heat and Vacuum" department of the Physikalisch-Technische Bundesanstalt conducted a measurement campaign to characterise the influence of thermal expansion of a meter body on the calibration of an 8 inch (DN 200) five chord UFM for feed water application in the temperature range from 4℃ to 85℃ and flow range from 50 m~3 h~(-1) to 900 m~3 h~(-1). An overview of the procedures and facility used for the calibration is given and the measurement conditions under which the calibrations were performed are detailed. It is shown that a linear model of the thermal expansion effect is appropriate for the investigated conditions.
机译:如果我们想将必要的表征测量次数保持在可接受的范围内,则需要确信流量仪表的设计能够以可预测和直接的方式对系统影响做出反应。在本文中,确定了超声波流量计(UFM)对给水流量的重要系统影响,以决定除了在20℃的水进行典型的基线校准外,还必须进行哪些表征。例如,在温度最高为120℃的热量计量应用中,众所周知,温度对流量仪表的影响非常重要,这也适用于较高的温度,例如在电厂的给水控制中。影响大多数流量仪表的关键系统温度影响之一是仪表主体的热膨胀。从2009年6月到2010年3月,德国物理技术联合会的“加热和真空”部门开展了一项测量活动,以表征仪表主体的热膨胀对校准8英寸(DN 200)五弦UFM的影响。给水应用温度为4℃至85℃,流量范围为50 m〜3 h〜(-1)至900 m〜3 h〜(-1)。给出了用于校准的程序和设备的概述,并详细说明了执行校准的测量条件。结果表明,热膨胀效应的线性模型适用于所研究的条件。

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