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首页> 外文期刊>International Journal of Heat and Mass Transfer >Type design for bilayer textile materials under low temperature: Modeling, numerical algorithm and simulation
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Type design for bilayer textile materials under low temperature: Modeling, numerical algorithm and simulation

机译:双层纺织材料在低温下的型式设计:建模,数值算法和仿真

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摘要

Based on the model of steady-state heat and moisture transfer through textiles, an inverse problem of type design (IPTD) for bilayer textile materials under low temperature is put forward. According to the idea of regularization method, the IPTD for bilayer textile materials can be formulated into a function minimization problem. By means of the finite difference algorithm for nonlinear ordinary differential equation and the direct search method of one-dimensional minimization problems, an iterative algorithm for the regularized solution of the IPTD is constructed. By analyzing the results of numerical simulation in different environmental conditions, some conclusions are obtained: Hooke-Jevees's direct search method can effectively solve the IPTD for bilayer textile materials, at the same time, numerical simulation shows the effectiveness of the algorithm and the validity of the proposed inverse problem.
机译:基于纺织品的稳态传热和水分传递模型,提出了双层纺织品在低温下的型式设计(IPTD)反问题。根据正则化方法的思想,可以将双层纺织材料的IPTD公式化为功能最小化问题。借助于非线性常微分方程的有限差分算法和一维最小化问题的直接搜索方法,构造了IPTD正则化解的迭代算法。通过分析不同环境条件下的数值模拟结果,可以得出以下结论:Hooke-Jevees的直接搜索方法可以有效地解决双层纺织材料的IPTD问题,同时数值模拟表明了该算法的有效性和有效性。提出的反问题。

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