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Experimental Study of Filling Ratio Effect on the Thermal Performance in a Multi-Heat Pipe with Graphene Oxide/Water Nanofluids 被引量:2
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作者 Mohamed Salem tarek a. meakhail +1 位作者 Magdy a. Bassily Shuichi Torii 《World Journal of Nano Science and Engineering》 2016年第4期153-164,共12页
This experimental study is performed to investigate heat transfer performance of a multi-heat pipe cooling device in the condition of different filling ratios (40%, 60%, 80% and 100%) and different constant heat fluxe... This experimental study is performed to investigate heat transfer performance of a multi-heat pipe cooling device in the condition of different filling ratios (40%, 60%, 80% and 100%) and different constant heat fluxes (10 - 30 W). Here, pure water (distilled water) and graphene oxide (GO)/water nanofluids are employed respectively as working fluid. GO/water nanofluids were synthesized by the modified Hummers method with 0.05%, 0.10%, 0.15%, and 0.20% volume concentrations. Multi-heat pipe is fabricated from copper;the heating and cooling sections are the same size and both are connected by four circular parallel tubes. Temperature fields and thermal resistance are measured for different filling ratio, heat fluxes and volume concentrations. The results indicated that the thermal performance of heat pipe increased with increasing the concentration of GO nanoparticles in the base fluid, while the maximum heat transfer enhancement was observed at 0.20% volume concentration. GO/water nanofluids showed lower thermal resistance compared to pure water;the optimal thermal resistance was obtained at 100% filling charge ratio with 0.20% volume concentration. Studies were also demonstrated that heat transfer coefficient of the heat pipe significantly increases with increasing the input heat flux and GO nanoparticles concentration. 展开更多
关键词 Multi-Heat Pipe Graphene Oxide Filling Ratio Volume Fraction Thermal Resistance
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Heat Transfer Performance of a Multi-heat Pipe Using Graphene Oxide/Water Nanofluid
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作者 Mohamed Salem tarek a. meakhail +1 位作者 Magdy a. Bassily Shuichi Torii 《Journal of Energy and Power Engineering》 2017年第2期95-102,共8页
关键词 纳米流体 传热性能 氧化石墨 热管 颗粒体积分数 加热部分 纯净水 传热装置
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