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首页> 外文期刊>Chemical and Petroleum Engineering >SELECTION OF STRUCTURAL PARAMETERS FOR A CYLINDRICAL HYDROCYCLONE FOR DEGASSING OF HETEROGENOUS LIQUID MEDIA BASED ON RESULTS OF NUMERICAL MODELING
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SELECTION OF STRUCTURAL PARAMETERS FOR A CYLINDRICAL HYDROCYCLONE FOR DEGASSING OF HETEROGENOUS LIQUID MEDIA BASED ON RESULTS OF NUMERICAL MODELING

机译:基于数值模拟结果的圆柱液力旋流器异质液体脱气结构参数的选择

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摘要

Recommendations for optimization of structural parameters of a cylindrical hydrocyclone used to degas heterogeneous liquid media possessing non-Newtonian properties are set forth on the basis of results of numerical modeling. The mathematical degassing model takes into account the effect of inertial and Coriolis forces, and the associated liquid mass during the movement of a gas bubble. A system of differential equations in partial derivatives, which describes, the degassing of heterogeneous media in a hydrocyclone, is reduced to ordinary differential equations, and is solved by the numerical method. The influence exerted on the degassing process by structural parameters of a cylindrical hydrocyclone and rheologic properties of the liquid is analyzed.
机译:基于数值模拟的结果,提出了用于对具有非牛顿特性的非均质液体介质进行脱气的圆柱形水力旋流器的结构参数的优化建议。数学脱气模型考虑了惯性力和科里奥利力的影响以及气泡运动过程中的相关液体质量。用偏微分方程组描述水力旋流器中非均质介质的脱气,将其简化为常微分方程,并通过数值方法求解。分析了圆柱形水力旋流器的结构参数对脱气过程的影响以及液体的流变性。

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