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The interpretation of a long-standing rheological flow problem using computational rheology and a PIT constitutive model

机译:使用计算流变学和PIT本构模型解释长期存在的流变流问题

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摘要

Modern computational rheology techniques are used to interpret an experimental observation, which has remained unresolved for over four decades. The simple flow in question involved the rotation of a solid sphere in an infinite expanse of non-Newtonian elastic liquid. Under some conditions, Giesekus observed an interesting secondary flow. This added an 'inertial' secondary flow near the rotating sphere to the well understood 'slow-flow' features observed and predicted by others in the 1960s. By employing a Phan-Thien/Tanner (PTT) constitutive model and moving away from the restriction of 'slow-flow', we show that it is possible to predict numerically the inertial vortex observed by Giesekus. (C) 2015 Elsevier B.V. All rights reserved.
机译:现代计算流变技术用于解释实验观察结果,至今已有40多年未解决。所讨论的简单流动涉及无限大非牛顿弹性液体中的固体球体的旋转。在某些条件下,Giesekus观察到了有趣的二次流。这增加了旋转球体附近的“惯性”二次流,从而增加了其他人在1960年代观察和预测的“慢流”特征。通过采用Phan-Thien / Tanner(PTT)本构模型并摆脱“慢流量”的限制,我们证明了可以通过数值预测Giesekus观测到的惯性涡旋。 (C)2015 Elsevier B.V.保留所有权利。

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