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Calculation of Flow Rate for Flow of the Second-Order Fluid Having Variable Coefficients in Annulus with the Inner Cylinder Executing a Planetary Motion

机译:内圆柱体执行行星运动时环面二阶变系数流体的流量计算

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The governing equations of the flow of the secondorder fluid having variable coefficients in annulus with the inner cylinder executing a planetary motion are established, and the flow rate calculation formula is given in this paper. The governing equations are calculated numerically by the finite difference method, on the base of above results, the laminar flow rate is numerically calculated using simpson integration formula. Influences of the revolution and the rotation velocity of the inner cylinder, the eccentricity and the pressure gradient in annulus on the flow rate are analyzed. The results show that the eccentricity and pressure gradient are main influence factors. The experiments for the flow of Hydrolyzed Polyacrylamide (HPAM) aqueous solution which can be regarded as the second-order fluid having variable coefficients in annulus with the inner cylinder executing a planetary motion are carried out, the theoretical flow rate calculated numerically is compared with those measured practically, the even relative percent error between them is smaller than 5%, it verifies that the governing equations, flow rate calculated formula and the relevant numerical calculation method given in this paper for the flow of the second-order fluid having variable coefficients in annulus with the inner cylinder executing a planetary motion are correct.
机译:建立了内缸进行行星运动的环面变系数二阶流体流动的控制方程,给出了流量计算公式。通过有限差分法对控制方程进行数值计算,在上述结果的基础上,利用辛普森积分公式对层流速率进行数值计算。分析了内缸的公转和旋转速度,偏心率和环空压力梯度对流量的影响。结果表明,偏心距和压力梯度是主要影响因素。进行了水解聚丙烯酰胺(HPAM)水溶液的流动实验,该溶液可被视为具有可变系数的二阶流体,其内圆柱体执行行星运动是环空的,并将数值计算的理论流量与那些进行了比较在实际测量中,两者之间的相对百分比误差均小于5%,验证了本文给出的变系数二阶流体流动的控制方程,流量计算公式和相关的数值计算方法。内圆柱执行行星运动的环是正确的。

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