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首页> 外文期刊>International Journal of Computational Methods and Experimental Measurements >COMBINED EXPERIMENTAL AND NUMERICAL APPROACH TO MODEL, DESIGN AND OPTIMIZE THERMAL PROCESSES
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COMBINED EXPERIMENTAL AND NUMERICAL APPROACH TO MODEL, DESIGN AND OPTIMIZE THERMAL PROCESSES

机译:模型,设计和优化热过程的组合实验和数值方法

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摘要

This paper focuses on combined experimental and numerical approaches to model thermal processes and obtain accurate results on system behaviour and performance. Interest lies in obtaining repeatable and dependable inputs for choosing appropriate conditions and parameters for enhancing the efficiency and the desired output. These results can also form the basis for system design and optimization. Several fundamental and practical problems are considered and typical results presented to discuss the implications and applications of this methodology. Circumstances where experimental data are used to validate the model, provide greater physical insight and define the boundary conditions, thus allowing the numerical simulation to be carried out, are also presented. Results from a concurrent, or parallel, simulation and experimentation approach are also presented to indicate the usefulness of such a strategy. It is stressed that experimental data are indispensable in obtaining accurate and realistic results for complex practical problems involving thermal transport processes.
机译:本文重点介绍了模拟热处理的组合实验和数值方法,并获得了系统行为和性能的准确结果。兴趣在于获得可重复和可靠的输入,用于选择适当的条件和参数,以提高效率和所需输出。这些结果还可以构成系统设计和优化的基础。考虑了几个基本和实际问题,并提出了典型的结果,讨论了这种方法的影响和应用。使用实验数据来验证模型的情况,提供更大的物理洞察并定义边界条件,从而允许进行的数值模拟。还提出了一种并行,模拟和实验方法的结果,以表明这种策略的有用性。强调,在获得涉及热传输过程的复杂实际问题的准确和现实结果中,实验数据是必不可少的。

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