A review on the heat transfer performance of pulsating heat pipes

被引:13
作者
Rajale, Manoj J. [1 ]
Prasad, P. Issac [1 ]
Rao, B. Nageswara [1 ]
机构
[1] Koneru Lakshmaiah Educ Fdn Deemed Univ, Dept Mech Engn, Guntur 522502, Andhra Pradesh, India
关键词
Pulsating heat pipe; oscillating; check valves; tesla valves; heat transfer; ARTIFICIAL NEURAL-NETWORK; CLOSED-LOOP; THERMAL PERFORMANCE; TRANSFER ENHANCEMENT; WORKING FLUID; OPERATIONAL CHARACTERISTICS; BUBBLE GENERATION; FILLING RATIO; FLOW PATTERNS; START-UP;
D O I
10.1080/14484846.2021.2024340
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The miniaturisation of systems has widely attracted researchers to contribute to the thermal performance enhancement utilising efficient heat transfer devices. Pulsating heat pipe (PHP) is an inimitable passive two-phase energy conversion/transport device capable of transferring extensive heat energy by oscillating liquid slugs and vapour plugs from hot to cold areas suitable for the management of generation of heat in electronics. Several theoretical, experimental and visualisation studies are made on PHP to understand operational mechanisms and to arrive at optimal conditions. Although PHP has potential application in the field of heat management, its effective utilisation is limited due to complex operational mechanisms.It is observed that PHPs are effective and reliable devices for utilisation in numerous energy systems. It is observed that PHPs are effective and reliable devices for utilisation in numerous energy systems. Advanced research is directed towards numerical simulations on the evaluation of PHP performance with non-conventional working fluids. It is found that the use of ternary hybrid nanofluid in PHP has scope for research work. The objective of this paper is to review the existing methodologies for enhancing the PHP overall performance and its applications.
引用
收藏
页码:1658 / 1702
页数:45
相关论文
共 268 条
[121]   Experimental study on effective range of miniature oscillating heat pipes [J].
Lin, Zirong ;
Wang, Shuangfeng ;
Chen, Jinjian ;
Huo, Jiepeng ;
Hu, Yanxin ;
Zhang, Winston .
APPLIED THERMAL ENGINEERING, 2011, 31 (05) :880-886
[122]   Study of flow characteristics of an oscillating heat pipe [J].
Ling, Yun-Zhi ;
Zhang, Xiao-Song ;
Wang, Xiaolin .
APPLIED THERMAL ENGINEERING, 2019, 160
[123]   Thermal fluid characteristics of pulsating heat pipe in radially rotating thin pad [J].
Liou, Tong-Miin ;
Chang, Shyy Woei ;
Cai, Wei Ling ;
Lan, I-An .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2019, 131 :273-290
[124]   Application of an anti-gravity oscillating heat pipe on enhancement of waste heat recovery [J].
Liu, Xiangdong ;
Han, Xiaotian ;
Wang, Zhaoyu ;
Hao, Guanqiu ;
Zhang, Ziwen ;
Chen, Yongping .
ENERGY CONVERSION AND MANAGEMENT, 2020, 205
[125]   Experimental study on thermo-hydrodynamic characteristics in a micro oscillating heat pipe [J].
Liu, Xiangdong ;
Xu, Luyao ;
Wang, Chao ;
Han, Xiaotian .
EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2019, 109
[126]   Fluid flow and heat transfer in flat-plate oscillating heat pipe [J].
Liu, Xiangdong ;
Chen, Yongping .
ENERGY AND BUILDINGS, 2014, 75 :29-42
[127]   Design of a hydrogen pulsating heat pipe [J].
Liu, Yumeng ;
Deng, Haoren ;
Pfotenhauer, John ;
Gan, Zhihua .
PROCEEDINGS OF THE 25TH INTERNATIONAL CRYOGENIC ENGINEERING CONFERENCE AND INTERNATIONAL CRYOGENIC MATERIALS CONFERENCE 2014, 2015, 67 :551-556
[128]   A robust pulsating heat pipe cooler for integrated high power LED chips [J].
Lv, Lucang ;
Li, Ji ;
Zhou, Guohui .
HEAT AND MASS TRANSFER, 2017, 53 (11) :3305-3313
[129]  
Ma H., 2011, ASME 2011 INT MECH E, V10, P627, DOI [10.1115/IMECE2011-64821, DOI 10.1115/IMECE2011-64821]
[130]   Heat transport capability in an oscillating heat pipe [J].
Ma, H. B. ;
Borgmeyer, B. ;
Cheng, P. ;
Zhang, Y. .
JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 2008, 130 (08)