首页> 外文期刊>Journal of The institution of engineers (India), Series C >Investigation of Thermal Performance of Cylindrical Heat Pipe Using Silver Nanofluid. Part I: Experimental Evaluation
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Investigation of Thermal Performance of Cylindrical Heat Pipe Using Silver Nanofluid. Part I: Experimental Evaluation

机译:银纳米流体圆柱热管热性能研究。 第一部分:实验评估

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摘要

Cylindrical heat pipes are widely used in various applications to transfer the heat effectively and efficiently. Besides parameters of heat pipe, its thermal performance mainly depends on the characteristics of working fluid also. Recently, various nanofluids have been considered as the most promising working fluid in different heat transfer applications. In the present paper thermal performance of cylindrical heat pipe using silver nanofluid as working fluid has been experimentally evaluated. Extensive experiments have been performed on cylindrical copper heat pipe having two-layer screen mesh filled with silver nanofluid in filling ratio of 40% with a vacuum of 10~(-3) torr. The thermal performance of heat pipe has been evaluated in terms of thermal resistance, thermal conductivity and overall heat transfer coefficient by varying parameters such as size of nanoparticle, concentration of nanoparticle, angle of inclination of heat pipe, heat load on heat pipe, average evaporator temperature and average condenser temperature to propose the best combination of parameters. The results indicate that the cylindrical heat pipe kept at 45° inclination angle and filled with silver nanofluid of 35 nm size of silver nanoparticle in 0.3% volume concentration yields higher thermal performance when it is operated at 120-140 W heat input. Thus, the cylindrical heat pipe under study is suitable for applications which require operation of heat pipe at some angles, such as cooling of high-wattage LED street lights.
机译:圆柱形热管广泛用于各种应用中,以有效且有效地传递热量。除了热管的参数外,其热性能主要取决于工作流体的特性。最近,各种纳米流体被认为是不同传热应用中最有前途的工作流体。在本纸张中,使用银纳米流体作为工作流体的圆柱热管的热性能已经通过实验评估。已经在具有双层筛网网上进行了广泛的实验,其双层筛网网填充有银纳米流体的填充比为40%,真空为10〜(3)托。通过改变纳米颗粒的尺寸,纳米粒子浓度,热管浓度,热管倾斜角,热管的热负荷,热管,平均蒸发器的热负荷温度和平均冷凝器温度提出最佳参数组合。结果表明,在0.3%体积浓度下以0.3%体积浓度保持在45°倾斜角度并填充35nm型银纳米粒子的银纳米流体的圆柱形热管在120-140W W加热输入下操作时,热性能较高。因此,正在研究的圆柱形热管适用于需要在某种角度下进行热管的应用,例如高瓦格LED路灯的冷却。

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