确定三周期最小表面热交换器传热系数的新方法

IF 6.4 2区 工程技术 Q1 MECHANICS
M. Kruzel, K. Dutkowski, T. Bohdal, A. Litwin, J. Sawicki, E. Kępa
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引用次数: 0

摘要

增材制造技术的发展为热传递领域提供了越来越多的机会。在基于三周期极小表面的热交换器的 3D 打印过程中,使用了更广泛的材料。由于这些结构的复杂性,很难精确确定描述这些设备传热过程的数值。热传导系数是描述热交换器传热过程的参数之一。本研究介绍了一种基于陀螺晶格确定热交换器传热系数的新方法。所提出的新方法可以在不影响紧凑型热交换器内部空间的情况下确定传热系数值。在工作介质沸腾或凝结的两相流中,所开发的公式可用于间接确定传热系数值的方法。热试验的工作流速范围为 4-24 公斤/小时;介质温度为 20 和 50 °C,热通量为 0.1 至 0.4 千瓦。在 20 < < 200 的范围内进行了层流试验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new approach for heat transfer coefficient determination in triply periodic minimal surface-based heat exchangers

The development of additive manufacturing offers increasing opportunities in heat transfer. A wider range of materials is used in the 3D printing process of heat exchangers based on the Triply Periodic Minimal Surface. Due to the complexity of these structures, it is difficult to precisely determine the values describing the heat transfer process in these devices. One of the parameters describing the heat transfer process in heat exchangers is the heat transfer coefficient. This study describes a new method for determining the heat transfer coefficient in a heat exchanger based on a gyroidal lattice. The proposed new method allows for determining the heat transfer coefficient values without interfering with the internal space of the compact heat exchanger. The developed formula can be used in the indirect method of determining the value of the heat transfer coefficient in two-phase flow with boiling or condensation of the working medium. The thermal tests were carried out in the range of working flow rates 4–24 kg/h; the media temperature was 20 and 50 °C, the heat flux was from 0.1 to 0.4 kW. Tests were conducted for laminar flow in the 20 < Re < 200 range.

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来源期刊
CiteScore
11.00
自引率
10.00%
发文量
648
审稿时长
32 days
期刊介绍: International Communications in Heat and Mass Transfer serves as a world forum for the rapid dissemination of new ideas, new measurement techniques, preliminary findings of ongoing investigations, discussions, and criticisms in the field of heat and mass transfer. Two types of manuscript will be considered for publication: communications (short reports of new work or discussions of work which has already been published) and summaries (abstracts of reports, theses or manuscripts which are too long for publication in full). Together with its companion publication, International Journal of Heat and Mass Transfer, with which it shares the same Board of Editors, this journal is read by research workers and engineers throughout the world.
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