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Numerical investigation of heat transfer enhancement using carbon nanotube-based non-Newtonian nanofluids

机译:基于碳纳米管的非牛顿纳米流体增强传热的数值研究

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摘要

In this study convective heat transfer of multi-wall carbon nanotube (MWCNT)-based nanofluids in a straight tube under constant wall heat flux condition is numerically investigated. To achieve this goal Navier-Stokes equations are solved using the finite volume technique with considering CNT-based nanofluids as non-Newtonian fluids of shear-thinning character using the non-Newtonian power law model. The objectives of this research are to provide detailed information of non-Newtonian behavior of CNT nanofluids, comparison of the numerical simulation predictions to the experimental measurements and investigation of non-Newtonian effects on the local heat transfer of the CNT nanofluid and compare the thermal performance of the CNT nanofluids and conventional fluids. As a result the heat transfer coefficient is dominated by the wall region due to non-Newtonian behavior of CNT nanofluid. The results reported in this paper illustrate that the numerical simulation can be one of the most powerful and beneficial tools for the CNT nanofluids optimization and performance analysis.
机译:在这项研究中,在恒定壁热通量条件下,对多壁碳纳米管(MWCNT)基纳米流体在直管中的对流传热进行了数值研究。为了实现该目标,使用有限体积技术求解了Navier-Stokes方程,并使用非牛顿幂定律模型将基于CNT的纳米流体视为具有稀疏特性的非牛顿流体。这项研究的目的是提供CNT纳米流体的非牛顿行为的详细信息,将数值模拟预测与实验测量值进行比较,以及研究非牛顿对CNT纳米流体的局部传热的影响,并比较热性能。 CNT纳米流体和常规流体。结果,由于CNT纳米流体的非牛顿行为,传热系数主要由壁区域决定。本文报道的结果表明,数值模拟可以成为CNT纳米流体优化和性能分析的最强大和有益的工具之一。

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