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Design explorations of heat conductive pathways

机译:导热路径的设计探索

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Constructal theory, now called constructal law, has influenced and driven a significant amount of research and attention over the past 2 decades due to its significance in understanding designs found in nature. It is worth to remember that the origins of constructal law can be traced back to the design of heat conduction paths, alternatively called access problem, in Bejan's 1996 paper. However, it is evident that although branching designs are generated, geometric and 'constructal' constraints are always present and often not relaxed in their designs. In this paper, additional design explorations to solutions for the access problem are sought and discussed. Density based topology optimization under 6 different, tunable material interpolation models are chosen since design explorations can be considered to be straightforward for finding solutions and the design process is relaxed. The variation in the material property model highlights the importance of search spaces in any design process. To give fair comparisons, the final designs obtained from the optimization process are projected as 0-1 designs. The results reveal other topologies that perform better as compared to two constructal design cases. The significant difference starting from the fundamentals of constructal designs is also discussed.
机译:构造理论(现在称为构造法)在过去的20年中影响和推动了大量研究和关注,因为它对理解自然界中的设计具有重要意义。值得记住的是,构造定律的起源可以追溯到Bejan在1996年的论文中设计的热传导路径,也称为访问问题。但是,很明显,尽管生成了分支设计,但几何和“构造”约束始终存在,并且在设计中常常不放松。在本文中,寻求并讨论了对访问问题解决方案的其他设计探索。选择了基于6种不同的可调材料插值模型的基于密度的拓扑优化,因为可以将设计探索视为寻找解决方案的直接方法,并且简化了设计过程。材料属性模型的变化突出了在任何设计过程中搜索空间的重要性。为了进行公平的比较,将从优化过程中获得的最终设计投影为0-1个设计。结果揭示了与两个结构设计案例相比性能更好的其他拓扑。还讨论了从结构设计的基本原理开始的重大差异。

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