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Heat transfer element for modeling the thermal response of non-uniformly heated plates

机译:用于模拟非均匀加热板热响应的传热元件

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摘要

This paper presents a novel heat transfer element for modeling the 3D thermal response in plates and shells exposed to non-uniform heating. The formulation uses a combination of finite element and control volume techniques to discretize the governing equations into a series of 2D layers that are linked by a finite difference calculation. While a combination of techniques are used in the element formulation, the governing element equations are in a form that can readily be implemented into a commercial finite element code. The nine-node quadratic element considered here is implemented in ABAQUS as a user-defined element. Two- and three-dimensional verification cases are presented to demonstrate the capabilities of the element. Comparisons between the proposed shell heat transfer element and traditional continuum elements demonstrate that the proposed model exhibits a high level of accuracy and requires minimal computational power. The layered formulation offers the additional advantage of simplifying the transfer of temperature data from a thermal analysis to a structural analysis because both models can have the same mesh.
机译:本文提出了一种新颖的传热元件,用于对暴露于非均匀加热的板和壳中的3D热响应进行建模。该公式结合了有限元技术和控制体积技术,将控制方程离散为一系列二维层,这些二维层通过有限差分计算链接在一起。虽然在元素公式化中使用了多种技术组合,但是控制元素方程式的形式很容易实现为商业有限元代码。这里考虑的九节点二次元在ABAQUS中作为用户定义的元素实现。提出了二维和三维验证案例,以演示该元素的功能。拟议中的壳体传热元件与传统连续体元件之间的比较表明,拟议中的模型显示出很高的准确性,并且需要的计算能力最低。分层配方还具有简化温度数据从热分析到结构分析的传递的附加优势,因为两个模型可以具有相同的网格。

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