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Investigation on the Nonconstant Behavior of a Vortex Flow Meter with Narrow Gauge Pipe via Conducting Measurements and Numerical Simulations

机译:窄管涡街流量计的非恒定特性的传导测量和数值模拟研究

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Vortex shedding flowmeters can be used for a wide range of flow measurement applications with various kinds of fluids. The critical point in applying this method comes from the assumption that the Strouhal number is constant for the given Reynolds number range. In some cases – typically regarding flowmeters with narrow gauge pipes –, this assumption is only partially met, thus limiting the widespread use of these instruments in certain industrial appliances. The paper presents a diagnostic investigation on the effects of this nonconstant behavior. The method elaborated in this report can be applied to vortex flowmeters with narrow gauge pipes. In these instruments – usually due to the narrow cross-sections of the gauge pipe – measurement possibilities are limited, thus it is not possible for the user to determine the effects of the nonconstant behavior. To conduct these investigations, a calibration rig was designed and assembled. The presented diagnostic method combines measurements and numerical simulations. The results of the investigations can be used in the data processing phase, in order to reduce the uncertainty of the volume flow rate measured by vortex flowmeters.
机译:涡旋脱落流量计可用于各种流体的各种流量测量应用中。应用此方法的关键点是假设Strouhal数在给定的雷诺数范围内是恒定的。在某些情况下(通常是针对具有窄口径管道的流量计),只能部分满足此假设,因此限制了这些仪器在某些工业设备中的广泛使用。本文提出了对这种非恒定行为的影响的诊断研究。本报告中阐述的方法可用于具有窄口径管道的涡街流量计。在这些仪器中(通常是由于量规管的横截面较窄),测量的可能性有限,因此用户无法确定非恒定行为的影响。为了进行这些调查,设计并组装了校准台。提出的诊断方法结合了测量和数值模拟。研究结果可用于数据处理阶段,以减少涡街流量计测量的体积流量的不确定性。

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