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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Multiphase modeling approach for ionic liquids (ILs) based nanofluids: Improving the performance of heat transfer fluids (HTFs)
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Multiphase modeling approach for ionic liquids (ILs) based nanofluids: Improving the performance of heat transfer fluids (HTFs)

机译:离子液体(ILS)纳米流体的多相建模方法:提高传热液性能(HTFS)

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摘要

Ionic liquids (ILs) based nanofluids was recently being considered as a heat transfer augmentation method via improving the thermal properties of heat transfer fluids (HTFs). In this study, the thermal performance of ionic liquids (ILs) based nanofluids in a circular tube was numerically analyzed using (i) a continuum based model and an (ii) eulerian based two phase model. For the continuum model, we considered ILs based nanofluids as a mixture averaged single fluid. The eulerian based model connected with two fluids multiphase model which emphasizes the dynamics of interaction between the nanoparticles and the base fluid. The study was carried out for ILs based nanofluids: a mixture of 1-butyl-3-methylimidazolium bis{(trifluoromethyl)sulfonyl} imide ([C(4)mim] [NTf2) ILs and Al2O3 nanoparticles. The numerical model was validated against the experimental data for ILs based nanofluids and the Shah's equation for base ILs. The results showed that the overall heat transfer coefficient increases significantly for Its based nanofluids for a range of Reynolds numbers. The results also suggested that the two phase eulerian model was more reliable than continuum based model for predicting the heat transfer performance under such a configuration. A parametric analysis of nanofluids volume fraction and heat flux were also analyzed. Finally, an empirical model was proposed in this study to analyze the heat transfer performance of Its based nanofluids under laminar flow conditions.
机译:基于离子液体(ILS)的纳米流体是通过改善传热流体(HTF)的热性质的传热增强方法。在该研究中,使用(i)基于连续的模型和基于欧拉的两相模型来用(i)基于圆形管中的离子液体(ILS)纳米流体的热性能。对于连续体型,我们认为基于ILS的纳米流体作为混合物平均单液。基于欧拉的模型与两个流体多相模型连接,其强调纳米颗粒与基础流体之间的相互作用的动态。该研究是对基于IL的纳米流体进行:1-丁基-3-甲基咪唑鎓双(三氟甲基)磺酰基}酰亚胺([C(4)MIM] ILS和Al2O3纳米颗粒的混合物。根据基于ILS的纳米流体和Shah的基础ILs方程的实验数据验证了数值模型。结果表明,整体传热系数对于其基于雷诺数的纳米流体来说显着增加。结果还表明,两相欧拉模型比基于连续的模型更可靠,用于预测这种配置下的传热性能。还分析了纳米流体体积分数和热通量的参数分析。最后,在本研究中提出了一种经验模型,分析层流条件下其基纳米流体的传热性能。

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