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GEOMETRIC ANALYSIS OF ADAPTIVE ORIGAMI CHANNELS FOR HEAT TRANSFER APPLICATIONS

机译:传热应用中自适应折纸通道的几何分析

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摘要

Thermal management is a ubiquitous and critical engineering challenge for a broad range of applications, including combustion engines, high power electronics and chemical processing. However, conventional heat exchanger solutions are often static with limited ability to adoptively modulate heat transfer. Folding concepts from the ancient art form of origami could potentially address these challenges by providing large conducting surfaces that can also spatially reconfigure to regulate the flow and temperature field interactions with the heat transferring medium. In this study, trigonometric and nonlinear mechanical analysis techniques are applied to origami channel designs based on the "waterbomb" and Miura-ori unit cell to characterize the geometric properties of the structures as a function of folding. Both channels demonstrate a large range of flow control, with potentially enhanced mixing in the "waterbomb " channel, due to an axially varying cross-section. The results show promise for the use of origami-based heat exchanger designs for both improved passive and active control of heat transfer.
机译:对于包括内燃机,大功率电子设备和化学处理在内的广泛应用,热管理是一个普遍存在且至关重要的工程挑战。然而,常规的热交换器解决方案通常是静态的,其过继地调节热传递的能力有限。折纸的古代艺术形式的折叠概念可以通过提供较大的传导表面来潜在地解决这些挑战,这些传导表面还可以在空间上重新配置以调节与传热介质的流场和温度场相互作用。在这项研究中,将三角学和非线性力学分析技术应用于基于“水炸弹”和Miura-ori晶胞的折纸通道设计,以表征结构的几何特性与折叠的关系。两个通道都显示出大范围的流量控制,由于轴向变化的横截面,“水炸弹”通道中的混合可能得到增强。结果表明,使用基于折纸的换热器设计可改善传热的被动和主动控制。

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