Application of the Poiseuilleequation to the treatment of laminar flowmeter calibration data

Frank E. Jones
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Abstract

An equation relating volume flow rate through a laminar flowmeter to differential pressure and other parameters is developed. The development begins with the Poiseuille equation, to which a correction for inertial pressure loss is made. Calibration data are fitted to a corrected equation relating volume flow rate, differential pressure, density, viscosity, mass flow rate and a parameter K with dimension of inverse length. The estimate of the value of K and of the two coefficients is determined by an iterative procedure. The calibration equation used in inferring the volume flow rate through the flowmeter is the solution of an equation that is quadratic in the volume flow rate. A set of laminar flowmeter calibration data for air, nitrogen, helium and argon illustrates the method. The relative residual standard deviation at mid-range for the calibration equation for the set of data is 0.055%.

泊泽伊方程在层流流量计标定数据处理中的应用
建立了层流流量计容积流量与压差及其他参数的关系式。发展从泊泽伊方程开始,对惯性压力损失作了修正。校正数据拟合到有关体积流量、压差、密度、粘度、质量流量和尺寸为逆长度的参数K的修正方程中。K值和两个系数的估计值由一个迭代过程确定。用于推断通过流量计的体积流量的校准方程是体积流量的二次方程的解。一组空气、氮气、氦气和氩气的层流流量计标定数据说明了该方法。该数据集的校准方程在中程的相对残差标准差为0.055%。
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