首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Experimental and numerical analysis on using CuO-Al_2O_3/water hybrid nanofluid in a U-type tubular heat exchanger
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Experimental and numerical analysis on using CuO-Al_2O_3/water hybrid nanofluid in a U-type tubular heat exchanger

机译:用CuO-Al_2O_3 /水杂交纳米流体在U型管状换热器中使用的实验性和数值分析

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Purpose - Heat exchangers (HEXs) are extensively used in many applications such as heating and cooling systems. To increase the thermal performance of HEXs, nano-sized particles could be added to the base working fluid which can improve the thermophysical properties of the fluid. In addition, further improvement in the thermal performance of nanofluids can be obtained by using two or more different nanoparticles which are known as hybrid nanofluids. This paper aims to improve the thermal efficiency of U-type tubular HEX (THEX) by using CuO-Al_2O_3/water hybrid nanofluid. Design/methodology/approach - Numerical simulation has been used to model THEX with various configurations. Also, CuO-Al_2O_3/water hybrid nanofluid has been experimented in THEX in two various modes including parallel (PTHEX) and counter flow (CTHEX) regarding to the numerical findings. Hybrid nanofluids have been prepared in two particle concentrations and compared with CuO/water nanofluid at the same concentrations and also with water. Findings - The numerical simulation results showed that adding fins and also using hybrid nanofluid can increase heat transfer rate in HEX. However, adding fins cannot be a good option in U-type THEX with lower diameter because it increases pressure drop notably. Experimental results of this work illustrated that using Al_2O_3-CuO/water hybrid nanofluid in the THEX improved thermal performance significantly. Maximum enhancement in overall heat transfer coefficient of THEX by using CuO-A_2O_3/water nanofluid in 0.5% and 1 % concentrations achieved as 9.5% and 12%, respectively. Originality/value - The obtained findings of the study showed the positive effects of using hybrid type nanofluid in comparison with single type nanofluid. In this study, numerical and experimental analysis have been conducted to investigate the effect of using hybrid type nanofluid in U-type HEX. The obtained results exhibited successful utilization of CuO-Al_2O_3/water hybrid type nanofluid in HEX. Moreover, it was observed that thermal performance analysis of the nanofluids without any experiment can be done by using numerical method.
机译:目的 - 热交换器(六角端)广泛用于许多应用,例如加热和冷却系统。为了提高六六角的热性能,可以将纳米尺寸的颗粒添加到基础工作流体中,这可以改善流体的热理性质。此外,通过使用称为杂种纳米流体的两种或更多种不同的纳米颗粒,可以获得纳米流体的热性能的进一步改善。本文旨在通过使用CuO-Al_2O_3 /水杂交纳米流体来提高U型管状六角(THEx)的热效率。设计/方法/方法 - 数值模拟已用于模拟各种配置的X。此外,CuO-Al_2O_3 /水杂化纳米流体已经用两种各种模式进行了实验,包括平行(Pthex)和关于数值发现的反流(CTHEx)。已经以两个颗粒浓度制备杂种纳米流体,并与同一浓度的CuO /水纳米流体相比,也与水相比。结果 - 数值模拟结果表明,添加翅片和使用杂种纳米流体可以提高六角体的传热速率。但是,添加鳍片不能是u型Thex的良好选择,因为它显着增加压降。该工作的实验结果表明,使用Al_2O_3-CUO /水杂化纳米流体在XX中显着提高了热性能。通过使用CuO-A_2O_3 /水纳米流体分别使用CuO-A_2O_3 /水分别以0.5%和1%浓度的0.5%和1%浓度的总热传递系数的最大增强分别为9.5%和12%。原创性/值 - 该研究的发现结果显示使用杂合型纳米流体与单型纳米流体相比的积极作用。在该研究中,已经进行了数值和实验分析以研究使用杂合型纳米流体在U型六角体中的作用。所得结果表明CuO-Al_2O_3 /水杂化型纳米流体中的成功利用率在Hex中。此外,观察到纳米流体的热性能分析无需任何实验,可以通过使用数值方法来完成。

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