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首页> 外文期刊>Archives of mining sciences >Methodology of Calculation the Terminal Settling Velocity Distribution of Irregular Particles for High Values of The Reynold’s Number
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Methodology of Calculation the Terminal Settling Velocity Distribution of Irregular Particles for High Values of The Reynold’s Number

机译:高雷诺数数值的不规则粒子末端沉降速度分布的计算方法

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Settling velocity of particles, which is the main parameter of jig separation, is affected by physical (density) and the geometrical properties (size and shape) of particles. The authors worked out a calculation algorithm of particles settling velocity distribution for irregular particles assuming that the density of particles, their size and shape constitute independent random variables of fixed distributions. Applying theorems of probability, concerning distributions function of random variables, the authors present general formula of probability density function of settling velocity irregular particles for the turbulent motion. The distributions of settling velocity of irregular particles were calculated utilizing industrial sample. The measurements were executed and the histograms of distributions of volume and dynamic shape coefficient, were drawn. The separation accuracy was measured by the change of process imperfection of irregular particles in relation to spherical ones, resulting from the distribution of particles settling velocity.
机译:颗粒的沉降速度是夹具分离的主要参数,它受颗粒的物理(密度)和几何性质(尺寸和形状)的影响。作者假设粒子的密度,粒子的大小和形状构成了固定分布的独立随机变量,从而计算出了不规则粒子的沉降速度分布的计算算法。应用概率定理,关于随机变量的分布函数,作者提出了湍流运动速度不规则粒子沉降概率密度函数的一般公式。利用工业样品计算不规则颗粒的沉降速度分布。执行测量并绘制体积和动态形状系数分布的直方图。分离精度通过不规则颗粒相对于球形颗粒的工艺缺陷的变化来测量,这是由于颗粒沉降速度的分布引起的。

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