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An empirical study on fluid properties and pressure drop of nanofluid flow inside inclined smooth and microfin tubes

机译:倾斜的光滑和微翅片管内的纳米流体流动的流体特性和压降的实验研究

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Fluid properties, pressure drop and friction factor of MWCNT (multi-walled carbon nanotube)-oil nanofluid for laminar assisting mixed convection was investigated experimentally. Smooth and microfin tubes were used as the test tubes under constant heat flux boundary conditions. Pure heat transfer oil and nanofluids with particle weight concentrations of 0.05%, 0.1% and 0.2% were utilized as the working fluids. Experiments were performed at 8 = 0,45 and 90° for the upward flow and Richardson number ranging from 0.1 to 10. Results showed that pressure drop increased as inclination was increased from 0 to 90°, 58, 2014,176-183, but it decreased by increasing Grashof number, 58,2014,176-183. Moreover, experimental results indicate that effect of addition of nanoparticles to the base fluid doesn't have a notable effect on both pressure drop and friction factor. Also, pressure drop is more pronounced in microfin tube than the smooth one, thus, considering the penalty of pressure drop, utilizing the nanofluid in smooth tube at higher Richardson numbers is an efficient way in thermal applications. Finally, a new correlation was developed to calculate the skin friction coefficient in different inclinations and nanoparticle weight fractions.
机译:实验研究了用于层流辅助混合对流的MWCNT(多壁碳纳米管)-油纳米流体的流动特性,压降和摩擦系数。在恒定的热通量边界条件下,将光滑管和微翅片管用作测试管。颗粒浓度分别为0.05%,0.1%和0.2%的纯导热油和纳米流体被用作工作流体。实验是在8 = 0,45和90°进行的,向上流动和Richardson数在0.1到10之间。结果显示,压降随倾角从0增大到90°而增加,58,2014,176-183,但它通过增加Grashof数量而减少,2014年58,176-183。此外,实验结果表明,将纳米颗粒添加到基础流体中的作用对压降和摩擦系数均没有显着影响。而且,微翅片管中的压降比平滑管更明显,因此,考虑到压降的损失,在较高理查森数下在平滑管中利用纳米流体是热应用的有效方法。最后,开发了一种新的相关性来计算不同倾角和纳米颗粒重量分数下的皮肤摩擦系数。

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