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A mathematical model of the self-averaging Pitot tube A mathematical model of a flow sensor

机译:自平均皮托管的数学模型流量传感器的数学模型

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Flowmeters with self-averaging Pitot tubes are more and more often applied in practice. Their advantages are practically no additional flow losses, usability in the case of high temperature of fluids and simplicity of fitting. A mathematical model of a self-averaging Pitot tube including the influence of the probe shape, selected constructional features and flow conditions on the quantity of differential pressure gained has been given in this paper. The values and ranges of variations of the coefficients established for the model have been assessed on the basis of the numerically computed velocity and pressure fields around and inside the probe. Velocity and pressure fields were calculated by means of solving conservation equation and turbulence models. The characteristics linking values of the flow coefficient with values of the Reynolds number have been presented. The conclusions have been formulated taking flow metrology needs into account.
机译:带有自平均皮托管的流量计在实践中越来越普遍。它们的优点是几乎没有额外的流量损失,在高温流体中的可用性以及安装简单。本文给出了一个自平均皮托管的数学模型,该模型包括探头形状,所选结构特征和流动条件对获得的压差量的影响。已经基于在探针周围和内部进行数值计算的速度和压力场,评估了为模型建立的系数的变化值和范围。通过求解守恒方程和湍流模型来计算速度和压力场。已经提出了将流量系数的值与雷诺数的值联系起来的特性。结论是在考虑流量计量需求的前提下制定的。

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