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Heat transfer behaviour of nanofluids in a uniformly heated circular tube fitted with helical inserts in laminar flow

机译:纳米流体在均匀加热的装有层流螺旋插入件的圆管中的传热行为

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The CFD simulation of heat transfer characteristics of a nanofluid in a circular tube fitted with helical twist inserts under constant heat flux has been explained using Fluent version 6.3.26 in laminar flow. Al_2O_3 nanoparticles in water of 0.5%, 1.0% and 1.5% concentrations and helical twist inserts of twist ratios 2.93, 3.91 and 4.89 has been used for the simulation. All thermophysical properties of nanofluids are temperature dependent. The heat transfer enhancement increases with Reynolds number and decreases with twist ratio with maximum for the twist ratio 2.93. By comparing the heat transfer rates of water and nanofluids, the increase in Nusselt number is 5%-31% for different helical inserts and different volume concentrations. The maximum heat transfer enhancement is 31.29% for helical insert of twist ratio 2.93 and for the volume concentration of 1.5% corresponding to the Reynolds number of 2039. The data obtained by simulation match with the literature value of water with the discrepancy of less than ± 10% for plain tube and tube fitted with helical tape inserts for Nusselt number.
机译:在层流中使用Fluent版本6.3.26解释了在恒定热通量下装有螺旋形扭曲插入物的圆形管中纳米流体传热特性的CFD模拟。在水中使用浓度为0.5%,1.0%和1.5%的Al_2O_3纳米粒子以及扭曲比为2.93、3.91和4.89的螺旋形扭曲嵌件进行了仿真。纳米流体的所有热物理性质均取决于温度。传热增强随着雷诺数的增加而增加,并且随着扭曲比的降低而减小,最大扭曲比为2.93。通过比较水和纳米流体的传热速率,对于不同的螺旋形插入物和不同的体积浓度,Nusselt值的增加为5%-31%。对于螺旋比为2.93的螺旋插入件和对于1.5%的体积浓度(对应于2039的雷诺数),最大传热增强为31.29%。通过仿真获得的数据与水的文献值相符,差异小于±普通管和装有螺旋胶带插入件的管的Nusselt编号为10%。

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