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Theory and computation of electromagnetic fields and thermomechanical structure interaction for systems undergoing large deformations

机译:大变形系统的电磁场理论与计算和热机械结构相互作用

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摘要

For an accurate description of electromagneto-thermomechanical systems, electromagnetic fields need to be described in a EULERian frame, whereby the thermomechanics is solved in a LAGRANGEan frame. It is possible to map the EULERian frame to the current placement of the matter and the LAGRANGEan frame to a reference placement. We present a rigorous and thermodynamically consistent derivation of governing equations for fully coupled electromagneto-thermomechanical systems properly handling finite deformations. A clear separation of the different frames is necessary. There are various attempts to formulate electromagnetism in the LAGRANGEan frame, or even to compute all fields in the current placement. Both formulations are challenging and heavily discussed in the literature. In this work, we propose another solution scheme that exploits the capabilities of advanced computational tools. Instead of amending the formulation, we can solve thermomechanics in the LAGRANGEan frame and electromagnetism in the EULERian frame and manage the interaction between the fields. The approach is similar to its analog in fluid structure interaction, but more challenging because the field equations in electromagnetism must also be solved within the solid body while following their own different set of transformation rules. We additionally present a mesh-morphing algorithm necessary to accommodate finite deformations to solve the electromagnetic fields outside of the material body. We illustrate the use of the new formulation by developing an opensource implementation using the FEniCS package and applying this implementation to several engineering problems in electromagnetic structure interaction undergoing large deformations. (C) 2019 Elsevier Inc. All rights reserved.
机译:对于电磁铁 - 热机械系统的准确描述,需要在欧拉框架中描述电磁场,由此在拉格朗造框架中解决了热机械。可以将Eulerian帧映射到当前放置物件和拉长帧的当前放置到参考放置。我们介绍了针对完全耦合电磁铁 - 热机械系统的控制方程的严格和热力学始终如一的衍生,适当处理有限变形。需要清楚地分离不同的框架。各种尝试在拉格朗造框架中配制电磁,甚至是计算当前放置中的所有字段。两种配方都在文献中挑战和大量讨论。在这项工作中,我们提出了另一种解决方案方案,该解决方案利用高级计算工具的功能。我们不能修改制定,我们可以解决欧拉架中拉格朗造架和电磁体的热机械,并管理场之间的相互作用。该方法类似于其流体结构相互作用的模拟,但更具挑战性,因为在其自身不同的转化规则之后,电磁中的场方程也必须在固体内求解。我们还提供了一种网格形态的算法,以适应有限变形以解决材料体外的电磁场。我们通过使用芬太科封装开发OpenSource实现并将这种实施应用于经历大变形的电磁结构交互中的几个工程问题来说明新配方的使用。 (c)2019 Elsevier Inc.保留所有权利。

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