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Custom-designed 3D-printed metallic fluid guiding elements for enhanced heat transfer at low pressure drop

机译:定制设计的3D印刷金属流体引导元件,用于增强低压下降的热传递

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摘要

3D-printed inserts allowing for the tailored guiding of a fluid flow for enhanced heat transfer at low pressure drop are presented. The fluid guiding elements (FGE) introduced in this contribution are based on B-spline surfaces allowing for a dedicated subdivision of the flow in several partial flows which are alternatingly contacted with the heat transferring wall, thereby maintaining a high local heat transfer all along the wall which leads to an enhanced overall heat transfer capacity. By changing the design parameters, the number of partial flows and the individual residence time at the wall can be adjusted to the needs of the considered application. Besides the discussion of the basic design strategy, the concept proposed is validated via simulation and experimental studies. Using the technique of selective laser melting, the produced metallic FGE exhibit walls of only 150 mu m thickness thereby imposing only a marginal obstruction of the flow. It is shown that by the use of the FGE the length of a pipe-in-pipe heat exchanger can be drastically reduced.
机译:呈现3D印刷插入件,允许在低压下降下施加用于增强的热传递的流体流动的定制引导。在该贡献中引入的流体引导元件(FGE)基于B样条表面,允许在几个部分流中的流动的专用细分,该部分流动与传热壁交替地接触,从而保持沿着局部的高局部热传递墙壁导致增强的整体传热能力。通过改变设计参数,可以调整墙壁的部分流量和各个停留时间来调整到所考虑的应用的需要。除了对基本设计策略的讨论之外,提出的概念通过模拟和实验研究验证。使用选择性激光熔化技术,所产生的金属熔接展示仅150μm厚度的壁,从而仅施加流动的边际障碍物。结果表明,通过使用坯料,管式热交换器的长度可以大大降低。

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