首页> 外文期刊>Chemical and Petroleum Engineering >INFLUENCE OF OPERATING PARAMETERS OF A CYLINDRICAL HYDROCYCLONE ON SEPARATION FACTOR OF NONLINEARLY VISCOPLASTIC SUSPENSIONS
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INFLUENCE OF OPERATING PARAMETERS OF A CYLINDRICAL HYDROCYCLONE ON SEPARATION FACTOR OF NONLINEARLY VISCOPLASTIC SUSPENSIONS

机译:圆柱水力旋流器操作参数对非线性粘塑悬浮液分离因子的影响

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摘要

A mathematical model of the process of separation of suspensions with a nonlinearly viscoplastic medium, describable by Herschel-Bulkley law, in a cylindrical hydrocyclone, which takes account of the action of Coriolis force on solid-phase particles, has been developed. A system of differential equations in partial derivatives, which describes the separation process, is reduced to a system of ordinary differential equations and solved by numerical method. The influence of the separation factor on the hydrocyclone operating parameters for various plastic properties of the medium under separation is analyzed. It is established that the solid-phase particle concentration in the thickened fraction of the suspension increases with increase of Froude number. The degree of suspension thickening increases also with improvement of plastic properties of the dispersing medium.
机译:已经开发出圆柱形水杂志中的非线性粘塑介质与非线性粘塑介质分离过程的数学模型,其考虑了科里奥里斯力对固相颗粒的作用。描述分离过程的部分衍生物中的微分方程系统被降低到常微分方程的系统,并通过数值方法解决。分析分离因子对分离下培养基各种塑性性能的水力旋流器操作参数的影响。建立了悬浮液的增稠部分中的固相颗粒浓度随着弗劳德数的增加而增加。随着分散介质的塑性性质的改善,悬浮增厚程度也增加。

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