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常温闭环脉动热管性能影响因素研究综述
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作者 张宇航 吴思远 +2 位作者 孙瑜 赵日晶 黄东 《制冷学报》 CAS CSCD 北大核心 2024年第5期47-62,共16页
常温闭环脉动热管依靠工质在管内脉动和相变传热,具有传热效率高、结构简单、成本低等优点,广泛应用于电子元件散热。将影响脉动热管启动和传热性能的因素分为3类展开综述:结构参数、操作参数和工质物性参数。首先对结构参数中管径、截... 常温闭环脉动热管依靠工质在管内脉动和相变传热,具有传热效率高、结构简单、成本低等优点,广泛应用于电子元件散热。将影响脉动热管启动和传热性能的因素分为3类展开综述:结构参数、操作参数和工质物性参数。首先对结构参数中管径、截面形状、弯头数以及各段长度比等因素的研究进行总结,其次分析操作参数中加热功率、倾斜角度和充液率的影响,最后将工质物性参数分为影响流动和传热两方面进行归纳。为提升脉动热管启动和传热性能,未来需对临界弯头数开展深入研究;为适应小倾角和负角度工况,需要提升热管抗重力性能;为描述工质物性对热管性能的影响,需构建物性参数综合评价指标。 展开更多
关键词 闭环脉动热管 结构参数 操作参数 工质物性参数
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带汽液分离腔的树状微通道热管运行性能研究 被引量:1
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作者 胡伟强 宋本哲 +2 位作者 王志强 李伟 张莹 《流体机械》 CSCD 北大核心 2018年第11期68-73,59,共7页
设计了一种超薄的新型闭环热管(BLHP),该热管蒸发器部分采用树状仿生微通道代替吸液芯,并在冷端嵌入汽液分离腔。着重研究了30%~70%充液率下BLHP的运行特性和启动特性。试验结果表明:BLHP运行方向为逆时针单向循环;BLHP存在启动温度阀... 设计了一种超薄的新型闭环热管(BLHP),该热管蒸发器部分采用树状仿生微通道代替吸液芯,并在冷端嵌入汽液分离腔。着重研究了30%~70%充液率下BLHP的运行特性和启动特性。试验结果表明:BLHP运行方向为逆时针单向循环;BLHP存在启动温度阀值,不存在启动功率阈值,最低启动温度为36.5℃;充液率70%时热阻最低(低至0.12 K/W),启动时间最短(43 s);汽液分离腔的"液池效应"具有稳定工质方向和加速启动的作用;热管中树状仿生微通道比并行通道具有更好的抗振荡特性。 展开更多
关键词 仿生 微通道 可视化 闭环热管 两相流
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新型振荡热管的设计及止回阀的研究 被引量:1
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作者 左洪桃 张涛 +1 位作者 王立鹏 王欣彦 《山东化工》 CAS 2020年第19期132-133,共2页
该系统即CLOHP/CV的传热特性取决于止回阀比Rv,长径比Le/di和传热无因次参数。CLOHP/CV使用的是内径为1.77 mm和2.03 mm的铜管。蒸发器、绝热器和冷凝器的长度分别为50、100、150 mm选择的工作液为水(H2O)、乙醇(CH,OH)和R123(CHCl,CF3)... 该系统即CLOHP/CV的传热特性取决于止回阀比Rv,长径比Le/di和传热无因次参数。CLOHP/CV使用的是内径为1.77 mm和2.03 mm的铜管。蒸发器、绝热器和冷凝器的长度分别为50、100、150 mm选择的工作液为水(H2O)、乙醇(CH,OH)和R123(CHCl,CF3),填充比为总体积的50%。回合数是40次。Rcv分别为20、8、5、4。蒸发器由热水加热,冷凝器部分由蒸馏水冷却。实验中使用的CLOHP/CV的倾斜度为水平90°,工作温度控制在50℃。当系统达到稳态时,通过测量冷却水的温度和流量来计算CLOHP/CV的换热率。实验结果表明,热流随Rv的增大而增大,随长径比的增大而减小。建立了热管在垂直位置的传热速率预测关系式。 展开更多
关键词 闭环振荡热管 止回阀 热传输特性
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Parametric Influence on Thermal Performance of Flat Plate Closed Loop Pulsating Heat Pipes 被引量:2
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作者 杨洪海 KHANDEKAR Sameer GROLL Manfred 《Journal of Donghua University(English Edition)》 EI CAS 2006年第3期8-13,共6页
This paper presents an experimental study on a flat plate closed loop pulsating heat pipes. It consisted of total 40 channels with square cross section (2 × 2 mm^2, 165 mm long) machined directly on an aluminum... This paper presents an experimental study on a flat plate closed loop pulsating heat pipes. It consisted of total 40 channels with square cross section (2 × 2 mm^2, 165 mm long) machined directly on an aluminum plate(180×120×3 nm^2), which was covered by a transparent plate. The working fluid employed was ethanol. As the results, the influence parameters of thermal performance were investigated, such as filling ratio, heat load and operational orientations etc. Filling ratio was found to be a critical parameter, and its effect was rather complicated. According to its values the PHP plate could have four distinct working zones with different operational characteristics and heat transfer performance. The effect of heat load on thermal performance was found to be positive, and in general, iucrcasing the heat load would improve heat transfer performance. In order to analyze the effect of gravity on thermal performance, three different heat modes and total seven tilt angles were tested and compared. Successful operation at all orientations with respect to gravity was also achieved. 展开更多
关键词 flat plate closed loop pulsating heat pipes parametric influences heat transfer characteristics.
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Two-Phase Flow Modeling in a Single Closed Loop Pulsating Heat Pipes
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作者 杨洪海 Sameer Khandekar +1 位作者 Sanka V. V.S. N.S. Manyam Manfred Groll 《Journal of Donghua University(English Edition)》 EI CAS 2007年第4期439-444,共6页
Mathematical modeling of pulsating heat pipes through ‘first’ principles is a contemporary problem which remains quite elusive. Simplifications and assumptions made in all the modeling approaches developed so far re... Mathematical modeling of pulsating heat pipes through ‘first’ principles is a contemporary problem which remains quite elusive. Simplifications and assumptions made in all the modeling approaches developed so far render them unsuitable for engineering design. In this paper, a more realistic modeling scheme is presented which provides considerable try for thought toward the next progressive step. At high enough heat flux level, closed loop pulsating heat pipes experience a bulk internal unidirectional fluid circulation. Under such a condition, conventional two-phase flow modeling in capillary tubes may be applied. This has been attempted for single-loop PHPs. A homogeneous model and a separated two-fluid flow model based on simultaneous conservation of mass, momentum and energy, have been developed for an equivalent ‘open flow’ system. The model allows prediction of two-phase flow parameters in each sub-section of the device thereby providing important insights into its operation. The concept of ‘void fraction constraint’ in pulsating heat pipe operation is introduced and its relevance to future modeling attempts is outlined. 展开更多
关键词 Closed loop pulsating heat pipe flow modeling parametric influences
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