首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental investigation on heat transfer characteristics and pressure drop of BPHE (brazed plate heat exchanger) using TiO2-water nanofluid
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Experimental investigation on heat transfer characteristics and pressure drop of BPHE (brazed plate heat exchanger) using TiO2-water nanofluid

机译:TiO2-水纳米流体对BPHE(钎焊板式换热器)传热特性和压降的实验研究

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In this research, the effect of using TiO2-water nanofluid on heat transfer enhancement and pressure drop in a Brazed Plate Heat Exchanger used in domestic hot water system is investigated experimentally. TiO2 nanoparticles with 20 nm diameter and 99+% purity are used for making the nanofluid at 0.3%, 0.8% and 1.5% weight concentration of suspended nanoparticles, in such experiments. This study is done on the brazed plate heat exchanger under turbulent flow condition. The effects of Reynolds number and weight concentration of nanoparticles on the heat transfer characteristics are investigated experimentally. This results in a significant increase in convective heat transfer coefficient through adding nanoparticles to distilled water. The results show that, the convective heat transfer coefficient and the overall heat transfer coefficient of TiO2-water nanofluid is increased with enhancement of Reynolds number and at a specified Reynolds number, heat transfer characteristics is enhanced by increasing weight concentration of nanoparticles in brazed plate heat exchanger. The maximum enhancement of the nanofluid convective heat transfer coefficient at 0.3%, 0.8% and 1.5% weight fraction of nanoparticles are about 6.6%, 13.5% and 23.7% respectively. Also the maximum enhancement of the nanofluid overall heat transfer coefficient at mentioned weight concentrations of nanoparticles are about 2.2%, 4.6% and 8.5% respectively. Finally, the nanofluid pressure drop at various levels of nanoparticles is measured experimentally. According to these results, increment in system pressure drop is negligible compared to the heat transfer improvement. (C) 2015 Elsevier Inc. All rights reserved.
机译:在这项研究中,实验研究了在家用热水系统中使用的TiO2-水纳米流体对钎焊板式换热器中传热增强和压降的影响。在此类实验中,使用直径为20 nm且纯度为99 +%的TiO2纳米颗粒制备浓度为0.3%,0.8%和1.5%的悬浮纳米颗粒的纳米流体。这项研究是在湍流条件下在钎焊板式换热器上完成的。实验研究了雷诺数和纳米粒子的重量浓度对传热特性的影响。通过将纳米颗粒添加到蒸馏水中,这导致对流传热系数显着增加。结果表明,随着雷诺数的增加,TiO2-水纳米流体的对流传热系数和总传热系数增加;在规定的雷诺数下,通过增加钎焊板中纳米颗粒的重量浓度,传热特性得到增强。交换器。纳米流体对流传热系数在纳米粒子的重量百分比为0.3%,0.8%和1.5%时的最大增强分别为约6.6%,13.5%和23.7%。同样,在提到的纳米颗粒的重量浓度下,纳米流体总传热系数的最大增强分别为约2.2%,4.6%和8.5%。最后,通过实验测量了纳米颗粒在各种水平上的纳米流体压降。根据这些结果,与传热改善相比,系统压降的增加可以忽略不计。 (C)2015 Elsevier Inc.保留所有权利。

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