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Lagrangian-Lagrangian modeling for a solid-liquid flow in a cylindrical tank

机译:拉格朗日-拉格朗日模型在圆柱罐中的固液流动

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Solid-liquid flows involving a free surface are widely encountered in chemical engineering, such as wet ball milling, slurry transport and mixing. Numerical simulation is useful both for the design and investigation of operational conditions in the industrial processes. However, numerical approaches for modeling solid-liquid flows were not yet established. This is because the modeling of the free surface and solid phase has been difficult and because the calculation cost may become huge. To solve the difficulties, we have developed a new method for numerical modeling of solid-liquid flows involving a free surface. In this study, we present the DEM-MPS method, in which solid-liquid flows are computed by combining the discrete element method (DEM) with the moving particle semi-implicit (MPS) method. Besides, new wall boundary modeling was proposed to perform the simulations of the solid-liquid flows in practical systems by the DEM-MPS method. The DEM-MPS method was validated against a solid-liquid flow in a rotating tank.
机译:涉及自由表面的固液流动在化学工程中广泛遇到,例如湿式球磨,浆液运输和混合。数值模拟对于设计和研究工业过程中的操作条件都是有用的。但是,尚未建立用于模拟固液流动的数值方法。这是因为难以对自由表面和固相进行建模,并且因为计算成本可能变得巨大。为了解决这些困难,我们开发了一种对涉及自由表面的固液流动进行数值模拟的新方法。在这项研究中,我们提出了DEM-MPS方法,其中通过将离散元素方法(DEM)与运动粒子半隐式(MPS)方法相结合来计算固液流量。此外,提出了新的壁边界模型,以通过DEM-MPS方法对实际系统中的固液流动进行模拟。针对旋转罐中的固液流动对DEM-MPS方法进行了验证。

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