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Heat transfer enhancement and pumping power in confined radial flows using nanoparticle suspensions (nanofluids)

机译:使用纳米颗粒悬浮液(纳米流体)在有限的径向流中增强传热和泵送功率

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摘要

This paper presents a numerical investigation of heat transfer enhancement capabilities of coolants with suspended nanoparticles (Al_2O_3 dispersed in water) inside a confined impinging jet cooling device. Steady, laminar radial flow of a nanofluid in a axis-symmetric configuration with axial coolant injection has been considered. A single phase fluid approach was adopted to numerically investigate the behavior of nanofluids in the present application. Good agreement was found between numerical results and available experimental data. Results indicate that heat transfer enhancement is possible in this application using nanofluids. In general, it was noticed that the mean Nusselt number increases with particle volume fraction and Reynolds number and decreases with an increase in disk spacing. On the other hand, the important increase in associated pumping power may impose some limitations on the efficient use of this type of nanofluid in a radial flow configuration.
机译:本文对有限撞击喷射冷却装置内具有悬浮纳米颗粒(分散在水中的Al_2O_3)的冷却剂的传热增强能力进行了数值研究。已经考虑了具有轴向冷却剂注入的轴对称构造的纳米流体的稳定的层流径向流动。在本申请中,采用单相流体方法来数值研究纳米流体的行为。在数值结果和可用的实验数据之间发现了很好的一致性。结果表明,在使用纳米流体的这种应用中,传热增强是可能的。通常,已经注意到平均努塞尔数随颗粒体积分数和雷诺数而增加,而随盘间距的增加而减少。另一方面,相关泵浦功率的显着增加可能会限制在径向流动配置中有效使用这种类型的纳米流体。

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