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Comparison and critical analysis of experimental results and correlations for thermal conductivity of nanofluids

机译:纳米流体热导率实验结果及相关性的比较和临界分析

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Suspensions of nanoparticles in liquids, known recently as nanofluids, have generated considerable interest for their potential to enhance the heat transfer in thermal systems, and reduce the possibility of erosion, sedimentation and clogging that plagued earlier solid-liquid mixtures with larger particles. Nanofluids have attracted enormous interest from research and industry due to high thermal conductivity and their potential for high rate of heat exchange incurring a little penalty in pressure drop. It has been found that the thermal conductivity of nanofluids is notably higgher than that of the base fluid. Many attempts in this field have been made to formulate appropriate effective thermal conductivity. The goal of this study is to evaluate and compare several experimental results for thermal conductivity obtained in the literature with correlations developed to predict this property in order to determine the best correlation that fit reasonably the experimental data.
机译:纳米粒子在液体中的悬浮液(最近称为纳米流体)因其具有增强热力系统中的传热能力,减少侵蚀,沉淀和堵塞的可能性而引起了人们的极大兴趣,这些问题困扰了较早的固液混合物和较大的颗粒。纳米流体因其高导热性及其潜在的高热交换率而对压降造成了很小的损失,因此引起了研究和工业界的极大兴趣。已经发现,纳米流体的导热率显着高于基础流体的导热率。在该领域中已经进行了许多尝试以配制适当的有效导热率。这项研究的目的是评估和比较文献中获得的几种导热系数的实验结果,并建立相关性以预测此特性,从而确定合理地拟合实验数据的最佳相关性。

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