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首页> 外文期刊>Journal of Non-Newtonian Fluid Mechanics >Numerical simulations of cessation flows of a Bingham plastic with the augmented Lagrangian method
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Numerical simulations of cessation flows of a Bingham plastic with the augmented Lagrangian method

机译:用增强拉格朗日法数值模拟宾厄姆塑料的停止流动

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摘要

The augmented Lagrangian/Uzawa method has been used to study benchmark one-dimensional cessation flow problems of a Bingham fluid, such as the plane Couette flow, and the plane, round, and annular Poiseuille flows. The calculated stopping times agree well with available theoretical upper bounds for the whole range of Bingham numbers and with previous numerical results. The applied method allows for easy determination of the yielded and unyielded regions. The evolution of the rigid zones in these unsteady flows is presented. It is demonstrated that the appearance of an unyielded zone near the wall occurs for any non-zero Bingham number not only in the case of a round tube but also in the case of an annular tube of small radii ratio. The advantages of using the present method instead of regularizing the constitutive equation are also discussed.
机译:增强拉格朗日/乌泽瓦方法已用于研究宾厄姆流体的基准一维戒断流问题,例如平面库埃特流,平面,圆形和环形泊瓦流。计算的停止时间与整个Bingham数范围的可用理论上限以及先前的数值结果非常吻合。应用的方法可以轻松确定屈服和未屈服区域。给出了这些非定常流动中刚性区域的演变。已经证明,不仅对于圆管,而且对于半径比小的圆管,对于任何非零的宾汉数,都会在壁附近产生无屈服区域。还讨论了使用本方法代替规范化本构方程的优点。

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