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Gas-to-gas heat exchanger design for high performance thermal energy storage

机译:气-气热交换器设计,可实现高性能的热能存储

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摘要

The mathematical modelling and optimization of a gas-to-gas heat exchanger with a non-constant cross sectional area is presented. The design of the cross sectional area of the heat exchanger analyzed is based on an hexagonal mesh, which would be highly impractical to fabricate in a conventional way but could be built relatively easily through modern manufacturing techniques. The geometric configuration proposed allows attaining a high exergy efficiency and a significant cost reduction, measured in terms of volume per unit of exergy transfer. The relationship that exists between the overall exergy efficiency of the heat exchanger and its cost is thoroughly explained throughout the study. The results obtained from the modelling demonstrate the premise that it is possible to realize designs for heat exchangers that are highly exergy-efficient and very cheap, owing to the small volume of material required, if the constrains imposed by the limitations of traditional manufacturing methods are set aside. Furthermore, the study reveals a very important fact: the volume of material in a heat exchanger increases in quadratic proportion to its characteristic dimension, which implies that scaling up the geometry has a strong impact on its cost-effectiveness.
机译:提出了具有非恒定横截面面积的燃气-燃气热交换器的数学模型和优化方法。所分析的热交换器的横截面积的设计是基于六角形网眼的,该六角形网眼很难以常规方式制造,但是可以通过现代制造技术相对容易地构建。所提出的几何构型允许获得高的火用效率和显着的成本降低,以每单位火用转移的体积来衡量。在整个研究过程中,对热交换器的总火用效率与其成本之间存在的关系进行了详尽的解释。从建模获得的结果表明,前提是可以实现热交换器的设计,这种设计具有很高的火用效率,并且由于所需的材料量很小,因此如果传统制造方法的局限性所带来的限制是非常便宜的搁置。此外,该研究还揭示了一个非常重要的事实:换热器中的材料量与其特征尺寸成二次比例增加,这意味着按比例放大几何形状对其成本效益有很大影响。

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