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首页> 外文期刊>Journal of Mechanical Science and Technology >Flow around a freely falling square shape particle in a channel using direct-forcing fictitious domain method
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Flow around a freely falling square shape particle in a channel using direct-forcing fictitious domain method

机译:使用直接强制虚拟域方法在通道中自由下落的方形粒子周围流动

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摘要

This paper presents a numerical investigation of the flow characteristics around a freely falling square shape particle in a two-dimensional channel. The FSI (fluid-solid interaction) has been realized by using the direct-forcing/fictitious domain (DF/FD) method. In order to identify the effect of fluid property on the flow characteristics and solid motion by FSI, a wide range of the fluid viscosity has been considered, which introduces various Reynolds numbers to this study. In addition, the off-centered distance of the square particle has been imposed to research the effect of the initial position. The centered particle is freely falling without rotation and transverse motion. However, the motion of the off-centered particle is significantly depended on the Reynolds number, so it is classified into the four regimes by the flow and moving characteristics of the particle. Quantitative information about the drag coefficient on the square particle is highlighted.
机译:本文对二维通道中自由下落的方形颗粒周围的流动特性进行了数值研究。 FSI(流固耦合)已通过使用直接强制/虚拟域(DF / FD)方法实现。为了通过FSI识别流体特性对流动特性和固体运动的影响,已经考虑了广泛的流体粘度,这为该研究引入了各种雷诺数。此外,已施加方形粒子的偏心距离来研究初始位置的影响。居中的粒子自由下落,没有旋转和横向运动。但是,偏心粒子的运动很大程度上取决于雷诺数,因此根据粒子的流动和运动特性将其分为四种状态。有关方粒上阻力系数的定量信息突出显示。

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