An Algorithm to Accelerate Simulations of Simultaneous Heat and Gas Transfer in Gas-Filled Foams

Jinkai Wang, C. Hagentoft
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引用次数: 2

Abstract

This paper proposes an algorithm to accelerate simulations of si multaneous heat and gas transfer in gas-filled insulating foams, based on an analy sis of the different transfer processes. This algorithm combines explicit finite dif ference and over-relaxation schemes: the time step of a simulation is determined by diffusion of gases, which is calculated by the explicit difference scheme; and the over-relaxation scheme is used to handle heat conduction. Calculation ex amples using a model presented separately [1] show that the results calculated by the fast algorithm agree well with those calculated by the single explicit finite dif ference scheme. In general, the simulations using the proposed algorithm are much faster than those using a single explicit finite difference scheme. The time step is increased more than 300 and 270 times for the two examples studied.
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一种加速模拟充气泡沫中热气同步传递的算法
本文在分析不同传热过程的基础上,提出了一种加速模拟充气隔热泡沫内硅多元传热和气体传递的算法。该算法结合了显式有限差分格式和过松弛格式:模拟的时间步长由气体扩散决定,由显式差分格式计算;并采用过松弛方案来处理热传导。单独给出的模型算例[1]表明,快速算法计算结果与单一显式有限差分格式计算结果吻合较好。一般来说,使用该算法的模拟比使用单一显式有限差分格式的模拟要快得多。这两个例子的时间步长分别增加了300倍和270倍以上。
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