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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Modeling Free-Furface Flow in Part-Filled Rotating Vessels:Vertical and Horizontal Orientations
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Modeling Free-Furface Flow in Part-Filled Rotating Vessels:Vertical and Horizontal Orientations

机译:模拟部分填充旋转容器中的自由表面流动:垂直和水平方向

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This paper reports on the numerical simulation o rotating flows with free surfaces,typically that arise in dough-kneading situations found within the food processing industry.Free-surface flow in a rotating cylinder is investigated when a fluid is stirred in a cylindrical-shaped vessel with a stirrer attached to its lid.the problem is posed in a three-dimensional cylindrical polar frame of reference.Numerical predictions are based on a Taylor-Galerkin/pressure-correction finite elmeent formulation,with particle tracking to accommodate free-surface movement.Peeling an wetting conditions are incorporated to predict fluid-surface movement in contact with solid boundaries.Free-surface profils are presented for differnet speeds of rotation and predictions compare closely to equivalent experimental results.The algorithmic implementation is validated against Newtonian analytical solutions.Typical results are presented to demonstrate the difference between Newtonian and inelastic model fluids.
机译:本文报道了带有自由表面的旋转流动的数值模拟,通常发生在食品加工行业中的面团揉捏情况下。研究了在圆柱容器中搅拌流体时旋转圆柱中的自由表面流动问题是在三维圆柱极坐标系中提出的。数值预测基于泰勒-加勒金/压力校正有限元公式,其粒子跟踪可适应自由表面运动。结合了去皮的润湿条件来预测与固体边界接触的流体表面运动;提出了针对不同净旋转速度的自由表面轮廓,并将预测与等效实验结果进行了比较;针对牛顿解析解验证了算法实现。提出来证明牛顿模型和非弹性模型流体之间的差异。

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