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Entropy Generation Analysis of Laminar Flows of Water-Based Nanofluids in Horizontal Minitubes under Constant Heat Flux Conditions

机译:恒定热通量条件下水平矿棉水平纳米流体层流动的熵生成分析

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摘要

During the last decade, second law analysis via entropy generation has become important in terms of entropy generation minimization (EGM), thermal engineering system design, irreversibility, and energy saving. In this study, heat transfer and entropy generation characteristics of flows of multi-walled carbon nanotube-based nanofluids were investigated in horizontal minitubes with outer and inner diameters of ~1067 and ~889 µm, respectively. Carbon nanotubes (CNTs) with outer diameter of 10–20 nm and length of 1–2 µm were used for nanofluid preparation, and water was considered as the base fluid. The entropy generation based on the experimental data, a significant parameter in thermal design system, was examined for CNTs/water nanofluids. The change in the entropy generation was only seen at low mass fractions (0.25 wt.% and 0.5 wt.%). Moreover, to have more insight on the entropy generation of nanofluids based on the experimental data, a further analysis was performed on Al2O3 and TiO2 nanoparticles/water nanofluids from the experimental database of the previous study of the authors. The corresponding results disclosed a remarkable increase in the entropy generation rate when Al2O3 and TiO2 nanoparticles were added to the base fluid.
机译:在过去十年中,通过熵产生的第二法律分析在熵产生最小化(EGM),热工程系统设计,不可逆转性和节能方面变得重要。在该研究中,在水平的小管中研究了多壁碳纳米管的纳米流体流动的传热和熵产生特性,分别具有〜1067和〜889μm的外径和内径。外径为10-20nm和长度为1-2μm的碳纳米管(CNT)用于纳米流体制剂,并认为水作为基础流体。基于实验数据的熵生成是用于CNT /水纳米流体的热设计系统中的显着参数。熵产生的变化仅在低质量级分(0.25重量%和0.5重量%)。此外,基于实验数据对纳米流体的熵产生具有更多的洞察力,在Al 2 O 3和TiO2纳米粒子/水纳米流体中,从先前研究的实验数据库中进行进一步的分析。当将Al 2 O 3和TiO 2纳米颗粒加入到基础液中时,相应的结果公开了熵产生率的显着增加。

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