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首页> 外文期刊>Journal of Computational and Applied Mathematics >Thermodynamically consistent algorithms for models of incompressible multiphase polymer solutions with a variable mobility
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Thermodynamically consistent algorithms for models of incompressible multiphase polymer solutions with a variable mobility

机译:具有可变迁移率的不可压缩多相聚合物溶液模型的热力学一致算法

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We present a general strategy for developing structure and property preserving numerical algorithms for thermodynamically consistent models of incompressible multiphase polymer solutions with a variable mobility. We first present a formalism to derive thermodynamically consistent, incompressible, multiphase polymer models. Then, we develop the general strategy, known as the supplementary variable method, to devise thermodynamically consistent numerical approximations to the models. We illustrate the numerical strategy using newly developed models of incompressible diblock copolymer solutions coupled with an electric and a magnetic field, respectively. Mesh refinement is conducted to verify convergence rates of the developed schemes. Some numerical examples are given to exhibit underlying dynamics absent from and driven by the external fields, respectively, highlighting differences between models with the variable and constant mobilities. (C) 2021 Elsevier B.V. All rights reserved.
机译:我们提出了一个通用策略,用于开发具有可变迁移率的不可压缩多相聚合物溶液热力学一致性模型的结构和性质保持数值算法。我们首先提出了一种形式主义来推导热力学上一致的、不可压缩的多相聚合物模型。然后,我们发展了一般策略,即补充变量法,来设计模型的热力学一致性数值近似。我们分别用电场和磁场耦合的不可压缩二嵌段共聚物溶液的新模型来说明这种数值策略。对网格进行了细化,以验证所提出方案的收敛速度。给出了一些数值例子,分别展示了外场不存在和由外场驱动的基本动力学,突出了具有可变和恒定迁移率的模型之间的差异。(c)2021爱思唯尔B.V.保留所有权利。

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