首页> 外文期刊>International Journal of Thermal Sciences >Mixed convection of MWCNT-heat transfer oil nanofluid inside inclined plain and microfin tubes under laminar assisted flow
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Mixed convection of MWCNT-heat transfer oil nanofluid inside inclined plain and microfin tubes under laminar assisted flow

机译:层流辅助流动下斜面内MWCNT-传热油纳米流体与微翅片管的混合对流

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摘要

This study describes an experimental investigation on the heat transfer characteristics of MWCNT (Multi walled Carbon Nano-tube) heat transfer oil based nanofluid during mixed convection inside inclined plain and microfin copper tubes under uniform heat flux condition. Data were acquired for the laminar flow in the thermal entrance region and for tube inclination angles of 0, 45 degrees and 90 degrees. Pure heat transfer oil and nanofluids with nanoparticles weight concentrations of 0.05%, 0.1% and 0.2% were used as the working fluids. Effects of nanoparticles concentration, heat flux, tube inclination and free convection on the development of the thermal field are studied under buoyancy assisted flow condition for Grashof number, Reynolds number and Richardson number between 500 and 10(4), 10-100, and 0.1-10, respectively. Results show that Nusselt number increases slightly with an increase of nanoparticles weight concentration from 0 to 0.2% under a given Grashof number. Moreover, increasing Grashof number can raise the heat transfer coefficient in horizontal tube more than the inclined tubes under assisted flow condition. The effect of nanoparticles on heat transfer enhancement decreases by increasing of inclination and Richardson number, also, this effect is more pronounced in the plain tube rather than the microfin one. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:这项研究描述了在均匀的热通量条件下,在倾斜的平管和微翅铜管内混合对流过程中,MWCNT(多壁碳纳米管)传热油基纳米流体的传热特性的实验研究。获取热入口区域中的层流以及0、45度和90度管倾斜角的数据。使用纳米颗粒重量浓度为0.05%,0.1%和0.2%的纯传热油和纳米流体作为工作流体。研究了浮力辅助流动条件下纳米颗粒浓度,热通量,管子倾斜度和自由对流对热场发展的影响,其Grashof数,雷诺数和Richardson数在500和10(4),10-100和0.1之间-10分别结果表明,在给定的Grashof数下,随着纳米粒子重量浓度从0%增加到0.2%,Nusselt数略有增加。此外,在辅助流动条件下,增加Grashof数可以比倾斜管更多地提高水平管的传热系数。纳米粒子对传热增强的影响会随着倾斜度和Richardson数的增加而降低,而且这种影响在普通管中比微翅片中更为明显。 (C)2015 Elsevier Masson SAS。版权所有。

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