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Effects of Upstream Turbulence on Measurement Uncertainty of Flow Rate by Venturi

机译:上游湍流对Venturi测量流速测量不确定性的影响

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Venturi has been widely used for measuring flow rate in a variety of engineering applications since pressure loss is relatively small compared with other measuring method. The current study focuses on making detailed estimation of measured uncertainties as the upstream turbulence affects uncertainty levels of the water flows in the closed-loop testing. Upstream turbulences can be controlled by selecting 9 different swirl generators. Measurement uncertainty of flow rate has been estimated by a quantitative uncenainty analysis which is based on the ANSI/ASME PTC 19.1-2005 standard. The best way to reduce error in measuring flow rate was investigated for evaluating its measurement uncertainty. The results of flow rate uncertainty analysis show that the case with systematic error has higher than that without systematic error. Especially the result with systematic error exhibits that the uncertainty of flow rate was gradually increased by upstream turbulence. Uncertainty of flow rate measurement can be mainly affected by differential pressure and discharge coefficient. Flow disturbance can be also reduced by increasing of the upstream straight length of Venturi.
机译:文丘里广泛用于测量各种工程应用中的流速,因为与其他测量方法相比,压力损失相对较小。目前的研究侧重于详细估计测量的不确定性,因为上游湍流影响闭环试验中水流的不确定性水平。通过选择9个不同的旋流发生器,可以控制上游湍流。通过基于ANSI / ASME PTC 19.1-2005标准的定量未能更美容分析估算了流速的测量不确定度。研究了降低测量流量误差的最佳方法,以评估其测量不确定性。流速不确定性分析结果表明,系统误差的情况高于无系统误差的情况。特别是具有系统误差的结果表现出流速的不确定度逐渐通过上游湍流增加。流速测量的不确定度可以主要受差压和放电系数的影响。通过增加Venturi的上游直线长度,还可以减少流动扰动。

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