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首页> 外文期刊>Chemical Engineering Science >APPLICATION OF KINETIC THEORY MODELS IN SPATIOTEMPORAL FLOWS FOR POLYMER SOLUTIONS, LIQUID CRYSTALS AND POLYMER MELTS USING THE CONNFFESSIT APPROACH
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APPLICATION OF KINETIC THEORY MODELS IN SPATIOTEMPORAL FLOWS FOR POLYMER SOLUTIONS, LIQUID CRYSTALS AND POLYMER MELTS USING THE CONNFFESSIT APPROACH

机译:动力学理论模型在康普方法中在聚合物溶液,液晶和聚合物熔体时空流动中的应用

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摘要

Three kinetic theory models are used to predict the spatiotemporal stress and velocity fields that arise in the startup of Couette flow. The models considered do not have analytic closed-form expressions for the stress tenser. Nevertheless, using a combined finite-element and Brownian dynamics technique (CONNFFESSIT), numerical solutions can be found. To describe the dynamics for dilute polymer solutions, a dumbbell model with finite extensibility, internal viscosity and hydrodynamic interaction is considered. Polymer melts are described by a reptation model that does not assume independent alignment or consistent averaging, and liquid crystals are considered using Doi and Edwards' model without consistent averaging. The three examples show how simple kinetic theory ideas on the microscopic scale can predict very different, but qualitatively reasonable, macroscopic flow fields in non-homogeneous flows, hence cannot be solved by strictly continuum-mechanical methods. [References: 41]
机译:三种动力学理论模型用于预测Couette流启动时出现的时空应力和速度场。所考虑的模型没有针对应力张量的解析闭合形式表达式。但是,使用有限元和布朗动力学组合技术(CONNFFESSIT),可以找到数值解。为了描述稀聚合物溶液的动力学,考虑了具有有限可扩展性,内部粘度和流体动力相互作用的哑铃模型。聚合物熔体由不会假定独立排列或一致平均的表示模型描述,并且使用Doi和Edwards模型考虑液晶而没有一致的平均值。这三个例子表明,在微观尺度上简单的动力学理论思想如何能够预测非均匀流动中截然不同但定性合理的宏观流场,因此不能通过严格的连续力学方法来解决。 [参考:41]

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