化工进展 ›› 2018, Vol. 37 ›› Issue (08): 2880-2891.DOI: 10.16085/j.issn.1000-6613.2017-2168
孙潇1, 韩东阳1, 焦波2, 甘智华1,3,4
收稿日期:
2017-10-24
修回日期:
2017-12-14
出版日期:
2018-08-05
发布日期:
2018-08-05
通讯作者:
甘智华,教授,博士生导师,研究方向为液氦温区回热制冷机理、液氦温区J-T节流机理等。
作者简介:
孙潇(1993-),女,博士研究生,研究方向为低温脉动热管。E-mail:sunxiaos@zju.edu.cn。
基金资助:
SUN Xiao1, HAN Dongyang1, JIAO Bo2, GAN Zhihua1,3,4
Received:
2017-10-24
Revised:
2017-12-14
Online:
2018-08-05
Published:
2018-08-05
摘要: 脉动热管是一种结构简单、可用于微小空间、高热流密度条件下的传热元件。其优良的传热特性源于内部工质的蒸发、冷凝相变以及两相流动等热-水动力学特性。可视化实验是研究工质流动特性的常用方法,对于理解脉动热管的传热机理非常重要。本文介绍了5种可视化技术手段,简述了近二十年来脉动热管可视化实验观察到的气液相变和多种流型,分析了流型的影响因素,并总结了流动特性和传热性能之间的对应关系。指出目前可视化实验观察到的结果可以定性地解释一些传热现象,却难以定量地揭示脉动热管的传热规律。未来可以将可视化实验中测得的气液塞运动速度、液膜厚度和相分布等信息利用起来,考虑管壁材质的影响,建立更准确的气液两相流模型,用来设计、评估和预测脉动热管的性能。
中图分类号:
孙潇, 韩东阳, 焦波, 甘智华. 脉动热管可视化实验研究进展[J]. 化工进展, 2018, 37(08): 2880-2891.
SUN Xiao, HAN Dongyang, JIAO Bo, GAN Zhihua. Research progress on visualization of pulsating heat pipes[J]. Chemical Industry and Engineering Progress, 2018, 37(08): 2880-2891.
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