首页> 外文会议>International Measurement Federation world congress >A TECHNIQUE TO MEASURE INSTANTANEOUS MASS FLOW RATE FOR TIME-PERIODIC LAMINAR PIPE FLOWS AND ITS VERIFICATION WITH A UNIQUE MASS FLOW RATE CONTROL DEVICE
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A TECHNIQUE TO MEASURE INSTANTANEOUS MASS FLOW RATE FOR TIME-PERIODIC LAMINAR PIPE FLOWS AND ITS VERIFICATION WITH A UNIQUE MASS FLOW RATE CONTROL DEVICE

机译:一种用于测量时间周期层流的瞬时质量流量的技术及其通过唯一的质量流量控制装置进行验证

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The present paper reports a mass flow rate measurement technique which, in principle, is applicable to any time-periodic laminar pipe flows. The referred mass flow rate metering technique is based on the exact analytical solution for fully-developed, laminar, pulsating pipe flows. In this paper, the theoretical background of the measuring technique is summarized. For experimental verification, a mass flow rate control unit was employed which permits any predetermined, time-varying, mass flow rates to be produced that is proportional to the voltage of an electronic input signal to the unit. The basic concept of this unit and its performance are also summarized in the paper. The application of this unit for verifying the performance of the developed mass flow rate measuring technique forms the major part of the paper. Performance tests were carried out for various time variations in mass flow rate pulsations. It is shown that the mass flow rate of the mean flow and that of the pulsating flow can be separated and both can be accurately measured with the proposed method. Comparative measurements show that this technique works extremely well and accurately reproduces the mass flow rate variations in time, imposed by the mass flow rate control unit, even in the case of pressure induced mass flow oscillations that results from the sudden changes in flow rate which are also known as "water hammer" or pressure surge.
机译:本文报道了一种质量流量测量技术,该技术原则上适用于任何时间周期的层流管道。所谓的质量流量计量技术基于针对完全发展的层流脉动管道流量的精确分析解决方案。本文总结了测量技术的理论背景。为了进行实验验证,采用了质量流率控制单元,该单元允许产生与该单元的电子输入信号的电压成比例的任何预定的,随时间变化的质量流率。本文还总结了该单元的基本概念及其性能。该单元在验证已开发的质量流量测量技术性能方面的应用构成了本文的主要部分。对质量流量脉动的各种时间变化进行了性能测试。结果表明,所提出的方法可以分离平均流量和脉动流量的质量流率,并且可以精确地测量两者。比较测量结果表明,即使在由流量突然变化引起的压力引起的质量流量振荡的情况下,该技术也能很好地工作,并且可以准确地重现质量流量控制单元施加的质量流量随时间的变化。也称为“水锤”或压力波动。

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