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| 1 | Validation of EMMS-based drag model using lattice Boltzmann simulations on GPUs显示文摘Interphase momentum transport in heterogeneous gas-solid systems with multi-scale structure is of great importance in process engineering. In this article, lattice Boltzmann simulations are performed on graphics processing units (GPUs), the computational power of which exceeds that of CPUs by more than one order of magnitude, to investigate incompressible Newtonian flow in idealized multi-scale particle-fluid systems. The structure consists of a periodic array of clusters, each constructed by a bundle of cylinders. Fixed pressure boundary condition is implemented by applying a constant body force to the flow through the medium. The bounce-back scheme is adopted on the fluid-solid interfaces, which ensures the no-slip boundary condition. The structure is studied under a wide range of particle diameters and packing fractions, and the drag coefflcient of the structure is found to be a function of voidages and fractions of the clusters, besides the traditional Reynolds number and the solid volume fractions. Parame- ters reflecting multi-scale characters are, therefore, demonstrated to be necessary in quantifying the drag force of heterogeneous gas-solid system. The numerical results in the range 0.1 ≤ Re ≤ 10 and 0 < < 0.25 are compared with Wen and Yu's correlation, Gibilaro equation, EMMS-based drag model, the Beetstra correlation and the Benyahia correlation, and good agreement is found between the simulations and the EMMS-based drag model for heterogeneous systems. | Yun Zhang Wei Ge Xiaowei Wang Chaohe Yang | 2011 | Particuology2011,9,4: | 2 |
| 2 | 基于LBM水力裂缝中支撑剂颗粒团簇升阻力系数研究显示文摘水力压裂中,裂缝壁面对支撑剂团在狭窄裂缝中输送沉降时的受力有重要影响。该文基于LBM建立颗粒流动数值模型,构建星型、三棱柱型、长方体型颗粒团簇模型,研究颗粒团簇在不同雷诺数Re、颗粒团簇与壁面相对距离H/d下的升阻力变化规律。结果表明:壁面影响下,随Re的增大,颗粒团簇的曳力系数、升力系数均减小,且壁面方向升力系数总小于无壁面方向的结果;单颗粒曳力系数与团簇平均曳力系数的比值随Re的增加而减小,随壁面边界效应的影响而增大;不同位置的颗粒曳力系数比值表现为前排颗粒减小、中间颗粒先增大后减小、近壁面颗粒逐渐增大。随H/d的增大,颗粒团簇远离壁面,边界影响减弱,曳力系数减小程度逐渐减弱;前排及近壁面颗粒曳力系数比值与升力系数随之减小;远壁面颗粒逐渐靠近壁面,曳力系数比值增大。壁面边界效应会加剧近壁面颗粒受力,且外侧颗粒对内部颗粒受力有屏蔽作用。 | 张涛 吴春燕 孙堃 卢聪 李聪 | 2024 | 工程力学2024,41,3: | 0 |
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