作为热交换器表面的三维编织网状结构的热/流体特性

R. Wirtz, J. Xu, Ji-Wook Park, D. Ruch
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引用次数: 33

摘要

本研究演示了一种三维铝线细丝的制造方法,结合网格作为热交换表面。建立了网格的有效导热系数模型。介绍了测量冷却剂压降和传热系数的装置。测量报告了不同厚度的制造测试样品。报道了普朗特数等于9.5(冷冻水)的冷却剂的网格斯坦顿数和摩擦系数的相关性。描述了一种热交换器性能评价,将三维编织网技术与另一种换热器表面技术进行了比较。我们发现编织/金属丝粘合过程必须仔细控制,以确保达到目标孔隙率、比表面积和有效导热系数。发现有效导热系数至少比其他可比多孔介质配置大两倍。网状摩擦系数和斯坦顿数可与其他交换器表面技术相媲美。交换器性能比较表明,可以配置性能优越的交换器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal/fluid characteristics of 3-D woven mesh structures as heat exchanger surfaces
The present work demonstrates the fabrication methodology of a 3-D, aluminum wire filament, bonded mesh deployed as a heat exchange surface. A model of the effective thermal conductivity of the mesh is developed. Apparatus to measure the coolant pressure-drop and heat transfer coefficient are described. Measurements are reported for fabricated test samples of varying thickness. Mesh Stanton number and friction factor correlations for a coolant with Prandtl number equal to 9.5 (chilled water) are reported. A heat exchanger performance evaluation, comparing the 3D woven mesh technology to another exchanger surface technology, is described. We have found that the weaving/wire bonding process must be carefully controlled to insure that target porosity, specific surface area and effective thermal conductivity are achieved. Effective thermal conductivities are found to be at least two-times larger than achieved in other comparable porous media configurations. Mesh friction factor and Stanton number are comparable to those achieved with other exchanger surface technologies. The exchanger performance comparison shows that exchangers having superior performance can be configured.
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