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Heat Transfer Enhancement in Circular Tube Flow Using Graphene Oxide Nanofluid and Its Application to Multi-Heat Pipe

机译:石墨烯含氧化物纳米流体圆管流动的热传递增强及其在多热管中的应用

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The experimental study is performed to study convective heat transfer behavior of nanoparticles,i.e.,graphene oxide(GO)flowing through a horizontal tube heated under constant heat flux condition.Its application to a multi-heat pipe cooling device in the condition of different filling ratio(40%,60%,80% and 100%)under constant heat flux conditions is experimentally investigated.It was found that(i)heat transfer enhancement is caused by suspending nanoparticles,so that maximum value of the Nusselt number is over twice than that of the pure working fluid,(ii)the thermal performance of heat pipe increases with increasing the concentration of GO nanoparticles in the base fluid,while the maximum heat transfer enhancement yields at 0.2% volume concentration,(iii)GO/water nanofluid shows lower thermal resistance compared to pure water,(iv)the optimal thermal resistance is obtained at 100% filling charge ratio with 0.2% volume concentration,and(v)heat transfer coefficient of the heat pipe significantly increases with an increase in heat flux and GO nanoparticles concentration.
机译:进行实验研究以研究纳米颗粒的对流传热行为,即流过在恒定热通量条件下加热的水平管的石墨烯(GO)。在不同灌装率的条件下施加到多热管冷却装置实验研究了(40%,60%,80%和100%)在实验上研究。发现(i)传热增强是由悬浮纳米颗粒引起的,因此NUSERET数的最大值超过两倍纯工作流体的热管热性能随着基础流体中的纳米颗粒的浓度而增加,而最大热传递增强产量为0.2%体积浓度,(iii)去/水纳米流体显示与纯水相比,较低的热阻,(IV)在100%填充电荷比下以0.2%体积浓度获得最佳的热阻,(V)热管符号的热传递系数随着热通量的增加和去纳米粒子浓度而易于增加。

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