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Natural convection heat transfer in corrugated annuli with H

机译:瓦楞云的自然对流热传递h

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摘要

The present work includes a numerical study of natural convection heat transfer in symmetrical and unsymmetrical corrugated annuli filled with H2O-Al2O3 nanofluid. In this study, higher and lower temperatures were kept constant at inner and outer cylinders of the annulus; respectively. Eight mathematical models with an aspect ratio of 1.5 were developed to find the best model giving the highest heat transfer rates. The stream-vorticity formulation in curvilinear coordinates was used to solve the governing equations of heat transfer and fluid motion. The influences of Rayleigh number. ((103≤ Ra ≤106) and volume fraction of nanoparticles. (0≤ϕ≤0.25) on isotherms, streamlines, local and average Nusselt numbers on the inner and outer cylinder were investigated. The results show that the heat transfer rate is significantly increased with an increase in nanoparticles volume fraction and Rayleigh number. The activity of the heated surface is increased with an increase in the undulation number, but the flow motion tends to be most difficult in the spaces between active undulation walls. Moreover, the heat transfer rates in unsymmetrical annuli are relatively higher than the rates in the symmetrical annuli. There are no evident changes in isotherms with an increase in the nanofluid volume fraction. Correlations for the mean Nusselt number on the inner and outer walls of annulus were deduced as a function of Rayleigh number and nanoparticles volume fraction for eight models with an accuracy range of 8–15 %.
机译:本作本作包括用H 2 O-Al2O3纳米流体填充的对称和非对称波纹阳性的自然对流传热的数值研究。在该研究中,在环的内和外圆柱体处保持较高和更低的温度;分别。开发了八种宽高比为1.5的数学模型,以找到具有最高传热速率的最佳模型。使用曲线坐标的流涡度配方用于解决传热和流体运动的控制方程。瑞利数的影响。 ((103≤Ra≤106)和纳米颗粒的体积分数。(0≤φ≤0.25),上内部和外筒上的流线,局部和平均露珠数,结果表明,传热速率显着随着纳米颗粒体积分数和瑞利数而增加。随着下降数的增加,加热表面的活性增加,但是在主动波动壁之间的空间中,流动运动趋于最困难。此外,传热非对称载载的速率比对称载载的速率相对高。等温物中没有明显的变化,随着纳米流体体积分数的增加。作为函数推导出内壁和外壁上的平均篮板数的相关性瑞利数和纳米颗粒体积分数八种型号,精度范围为8-15%。

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