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首页> 外文期刊>International Journal of Heat and Mass Transfer >Performance characteristics of flat-plate oscillating heat pipe with porous metal-foam wicks
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Performance characteristics of flat-plate oscillating heat pipe with porous metal-foam wicks

机译:具有多孔金属 - 泡沫芯的平板振荡热管的性能特征

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In this study, a flat-plate oscillating heat pipe (FPOHP) with its channel bottom covered by sintered copper-foam wicks was fabricated. The overall size of FPOHP is 150 mm x 100 mm x 7.5 mm, having rectangular cross-section channels with a hydraulic diameter of about 1.64 mm. The start-up and heat transfer performance of the porous-based FPOHP were experimentally investigated and compared with a conventional smooth-channel FPOHP at the vertical orientation. Ethanol was used as the working fluid at a volumetric filling ratio of about 50%. Experimental results showed that the copper-foam wicks enabled a profound improvement in the FPOHP performance and reduced the start-up temperature and time duration significantly. Compared with the conventional FPOHP, temperature fluctuations with smaller amplitudes and better temperature uniformity were observed for the porous-based FPOHP. However, local dry-out appeared earlier in the porous-based FPOHP when the power input was greater than about 207 W because the robust nucleation boiling induced vapor layer covered the wicks, preventing the backflow of liquid to the evaporator and causing the heat transport limitation. To extend the applicable possibility of porous-based FPOHPs in thermal management of high energy utilization systems, the re-design and re-fabrication of copper-foam wicking structures are required. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在本研究中,制造平板振荡的热管(FPOHP),其具有其烧结铜 - 泡沫芯覆盖的通道底部。 FPOHP的整体尺寸为150mm×100mm×7.5mm,具有矩形横截面通道,液压直径为约1.64mm。实验研究了基于多孔的FPOHP的启动和传热性能,并与垂直取向的传统光滑通道FPOHP进行了比较。用乙醇以体积填充率为约50%的工作流体用作工作流体。实验结果表明,铜 - 泡沫灯芯使FPOHP性能深刻改善,并显着降低了启动温度和持续时间。与常规FPOHP相比,对于多孔的FPOHP,观察到具有较小振幅和更好温度均匀性的温度波动。然而,当功率输入大于约207W的基于多孔的FPOHP时,局部干出出现在基于多孔的FPOHP中,因为稳健的成核沸腾诱导的蒸气层覆盖芯片,防止液体回流到蒸发器并导致传热限制。为了延长高能量利用系统的热管理中多孔的FPOHPS的适用可能性,需要重新设计和重新制造铜泡沫芯吸芯结构。 (c)2019 Elsevier Ltd.保留所有权利。

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