会议论文详细信息
International Conference on Recent Advances in Materials & Manufacturing Technologies
Comparative Investigation and Operational Performance Characteristics of a Wick Assisted and Axially Square Grooved Heat Pipe
Naik, Rudra^1 ; Rama Narasihma, K.^2 ; Anikivi, Atmanand^3
Department of Mechanical Engineering, BMS College of Engineering, Bengaluru, Karnataka, India^1
Department of Mechanical Engineering, K.S. Institute of Technology, Bengaluru, Karnataka, India^2
Department of Mechanical Engineering, Sri Venkateshwara College of Engineering, Bengaluru, Karnataka, India^3
关键词: Experimental investigations;    Gravity-assisted;    Inner diameters;    Maximum heat transfer;    Operational performance;    Outer diameters;    Overall heat transfer coefficient;    Performance evaluations;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/346/1/012082/pdf
DOI  :  10.1088/1757-899X/346/1/012082
来源: IOP
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【 摘 要 】

The present work reported here involves the experimental investigation and performance evaluation of wick assisted and axially square grooved heat pipes of outer diameter 8mm, inner diameter 4mm with a length of 150mm.The objective of this work is to design, fabricate and test the heat pipes with and without an axial square groove for horizontal and gravity assisted conditions. The performance of the heat pipes was measured in terms of thermal resistance and heat transfer coefficients. In the present investigation four different working fluids were chosen namely acetone, ethanol, methanol and distilled water. Experiments were conducted by varying the heat load from 2 W to 10 W for different fill charge ratios in the range of 25% to 75% of evaporator volume for wick assisted heat pipe and 8 W to 18 W for axially square grooved heat pipe. From the experiments, it was found that there is a steady increase in temperature with the increase in heat input. The overall heat transfer coefficient was found to increase with the increase heat load for wick assisted heat pipe. In case of axially square grooved heat pipe, an attempt was made to experiment the heat pipe in different orientations. The maximum heat transfer coefficient of 7000 W/m2°C is found for Acetone at 180° orientation.

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