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@article{146860,
author = {Gajanan A. Jadhao and Pramod R. Pachghare},
title = {The development of Closed loop pulsating heat pipe for various geometry, shape, size and heat dissipation -A Review},
journal = {International Journal of Innovative Research in Technology},
year = {},
volume = {5},
number = {2},
pages = {149-154},
issn = {2349-6002},
url = {https://ijirt.org/article?manuscript=146860},
abstract = {Increasing need of electronics or micro-electronics device is one of the major reasons of heats. Thus the thermal management system with small and high efficiency heat transfer device are needed to ensure reliable operation condition. Thus the heat dissipation is one of the best approaches to increase the reliable performance and life of electronics or micro-electronics devices. And the high efficiency heat transfer device is needed. As the pulsating heat pipe (PHP) also called as oscillating heat pipe (OHP) has been considered have a high advantages. Pulsating heat pipe (PHP) consists of a single meandering capillary tube without wick structure between evaporation section and condenser section. No external mechanical power is required. So the pulsating heat pipe (PHP) has different heat transport mechanism from conventional heat pipe. Simple structure, low cost, easy manufacturer, excellent heat transfer heat capacity. The pulsating heat pipe (PHP) is a passive heat transfer device that enhance large amount of heat which works on the principle of evaporation and condensation of the working fluid. A various experiment and theoretical research have been conducted on the pulsating heat pipe (PHP) in the last decades since it was proposed by akachi in 1990. The good applications for the future, this paper attempts to review the development of the pulsating heat pipe (PHP) on the basics of summary of the latest result experimental and theoretical. This review paper is providing basic reference for future researcher},
keywords = {Pulsating heat pipe (PHP), oscillating heat pipe (OHP), Heat transfer, Review},
month = {},
}
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