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Thermal Performance Analysis of a Closed Loop Pulsating Heat Pipe without Insert and with Insert

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dc.contributor.author Rahman, Md. Lutfor
dc.contributor.author Sifat, Najmus Saquib
dc.contributor.author Rahman, Md. Zakaria
dc.contributor.author Ali, M.
dc.date.accessioned 2023-09-24T05:11:33Z
dc.date.available 2023-09-24T05:11:33Z
dc.date.issued 2016
dc.identifier.uri http://220.247.167.101:8080/xmlui/handle/123456789/38
dc.description.abstract In this paper, thermal performance of a Closed Loop Pulsating Heat Pipe (CLPHP) without insert and with insert inside the tube has been investigated. The effect of different parameters like working fluid, the filling ratio, inclination angle and the input heat load on the thermal performance has been analyzed thoroughly. In this study, CLPHP is made from long capillary copper tubes with inner diameter of 2.0 mm and outer diameter of 3.0 mm. The heat pipe is bent into eight U-turns and divided into three sections: evaporator section (50 mm), adiabatic section (120 mm) and condenser section (80 mm). Adiabatic section is maintained by using aluminum foil surrounded by appropriate insulation. An insert made of copper wire with diameter 0.5mm is used throughout the tube of all three sections. Methanol and Ethanol are used as working fluids with different filling ratio varied from 40% to 60% in steps of 10%. The thermal resistance has been investigated with different inclination angles (viz. 0°, 30°, 45° and 60° from vertical) at various heat input from 10 to 100W in the steps of 10W. The result shows that, the thermal resistance decreases as heat input increases. CLPHP with insert structure shows better performance than the CHPHP without insert structure particularly at 45°inclination angle. CLPHP without insert structure shows better performance than the CHPHP with insert structure at 00 inclinations. Methanol with 40% filling ratio and Ethanol with 60% filling ratio shows the best performance at 0° inclination angle for CLPHP without insert structure. CLPHP with insert structure shows better performance than the CLPHP without insert structure at high heat input particularly at 45°inclination angle. en_US
dc.language.iso en_US en_US
dc.publisher International Journal of Engineering and Advanced Technology (IJEAT) en_US
dc.subject CLPHP en_US
dc.subject filling ratio en_US
dc.subject angle en_US
dc.subject working fluid en_US
dc.subject insert structure en_US
dc.subject without insert structure en_US
dc.subject PHP en_US
dc.subject thermal resistance I en_US
dc.title Thermal Performance Analysis of a Closed Loop Pulsating Heat Pipe without Insert and with Insert en_US
dc.type Article en_US


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