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首页> 外文期刊>Journal of structural engineering >Triangular Shell Heat Transfer Element for the Thermal Analysis of Nonuniformly Heated Structures
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Triangular Shell Heat Transfer Element for the Thermal Analysis of Nonuniformly Heated Structures

机译:三角壳传热元件用于非均匀受热结构的热分析

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摘要

This paper presents a triangular shell heat transfer element that is used to simulate the thermal response of nonuniformly heated structures. The formulation uses a combination of finite-element and control volume techniques to arrive at a layered shell element that is used to solve the 3D conduction heat transfer problem in a highly efficient manner. This paper considers a 3-node linear element and a 6-node quadratic element. The element formulation is verified against a converged continuum heat transfer model for a thick steel plate exposed to a concentrated heat flux, a thick steel pipe exposed to a concentrated heat flux, and a concrete slab exposed to a localized fire. The verification studies demonstrate that the linear and quadratic elements consistently converge to the continuum model and require a fraction of the computational cost. The verification study involving the concrete slab exposed to a localized fire demonstrates that the formulation can readily handle steep temperature gradients as well as temperature-dependent material properties. (C) 2015 American Society of Civil Engineers.
机译:本文提出了一种三角形壳体传热元件,该传热元件用于模拟非均匀加热结构的热响应。该公式使用有限元技术和控制体积技术的组合来获得分层的壳单元,该壳单元用于以高效方式解决3D导热问题。本文考虑了一个3节点的线性元素和一个6节点的二次元素。针对暴露于集中热通量的厚钢板,暴露于集中热通量的厚钢管和暴露于局部火的混凝土板,根据聚合连续介质传热模型验证了元素配方。验证研究表明,线性和二次元始终收敛于连续模型,并且只需要很小一部分计算成本。涉及局部火灾的混凝土板的验证研究表明,该配方可以轻松应对陡峭的温度梯度以及与温度相关的材料特性。 (C)2015年美国土木工程师学会。

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