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Approximation-Assisted Optimization for Novel Compact Heat Exchanger Designs

机译:新型紧凑型热交换器设计的近似辅助优化

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This paper describes a systematic approach for the use of an approximation-assisted optimization technique in the design of a novel heat exchanger (HX) with a high degree of model fidelity and a low computational cost. Design optimization is performed using multiobjective optimization, and high model fidelity is achieved by using a multiscale HX simulation tool. An approximation technique was used to provide computational savings in order to ensure computational feasibility. This technique was applied to different HX design problems. It was observed that for a 1 kW (3412 Btu/h) heating coil with pressure drop constraints of 100 Pa (0.4 in. water) on the air side and 1000 Pa (0.15 psi) on the water side there is a potential for a more than 61% reduction in the HX volume and an 84% reduction in the HX material when the proposed geometry is compared with the current state-of-the-art technology. The proposed approximation approach produced significant computational savings. The approximation-assisted optimization platform shows great potential for examining new and existing designs and providing a greater understanding of design limitations.
机译:本文介绍了一种系统的方法,该方法可在设计逼真度高且计算成本低的新型热交换器(HX)的设计中使用近似辅助优化技术。使用多目标优化执行设计优化,并使用多尺度HX仿真工具实现高模型逼真度。为了确保计算的可行性,使用了一种近似技术来节省计算量。该技术已应用于不同的HX设计问题。已观察到,对于一个1 kW(3412 Btu / h)的加热盘管,在空气侧的压降限制为100 Pa(0.4英寸水),在水侧的压降限制为1000 Pa(0.15 psi),可能会产生将拟议的几何形状与当前最新技术进行比较时,HX体积减少了61%以上,HX材料减少了84%。所提出的近似方法可节省大量计算量。近似辅助优化平台显示了检查新的和现有设计并提供对设计局限性的更好理解的巨大潜力。

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