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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Modeling drag force acting on the individual particles in low Reynolds number flow
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Modeling drag force acting on the individual particles in low Reynolds number flow

机译:模拟低雷诺数流中作用于单个颗粒的阻力

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摘要

We present a simple model for the hydrodynamic drag force acting on the individual N particles of aggregates in uniform flow with low Reynolds number. The present model predicts the shielding effect due to hydrodynamic interactions by considering the individual location and flow direction. The shielding effect of two particles was obtained from curve fitting with the exact solution. Furthermore, the shielding effect of N-particles was extended using scaling laws and curve fitting equations. The present model is advantageous in that it can predict the drag force without considering the fractal dimension. In addition, the hydrodynamic interaction between particles can be calculated without matrix operations. The presented model was verified by calculating the drag acting on aggregates with the Filippov method. Verification conditions were that the number of particles was less than 200, and the fractal dimension was in the range of 1.3 to 2.6. Validation results showed good agreement with Filippov's exact solution. The maximum error for the total drag force is within 5%. Finally, we not only applied the drag force model to the discrete element method, but also performed a numerical study of gravitational sedimentation problems at fixed depth.
机译:我们提出了一个简单的模型,该模型以低雷诺数在均匀流动中作用于聚集体的各个N颗粒的流体动力阻力。本模型通过考虑各个位置和流动方向来预测由于水动力相互作用而产生的屏蔽效果。通过精确解决方案的曲线拟合获得了两个粒子的屏蔽效果。此外,使用比例定律和曲线拟合方程式扩展了N粒子的屏蔽效果。本模型的优点在于,可以在不考虑分形维数的情况下预测阻力。此外,无需矩阵操作即可计算颗粒之间的流体动力相互作用。通过使用Filippov方法计算作用在骨料上的阻力来验证所提出的模型。验证条件是颗粒数小于200,并且分形维数在1.3到2.6之间。验证结果表明与Filippov的精确解决方案吻合良好。总拖曳力的最大误差在5%以内。最后,我们不仅将阻力模型应用于离散元法,而且还对固定深度的重力沉降问题进行了数值研究。

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