首页> 外文期刊>International Journal of Heat and Mass Transfer >Effects of wavy surface characteristics on natural convection heat transfer in a cosine corrugated square cavity filled with nanofluid
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Effects of wavy surface characteristics on natural convection heat transfer in a cosine corrugated square cavity filled with nanofluid

机译:波浪表面特征对填充纳米流体的余弦波纹方腔自然对流换热的影响

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摘要

Main aim of present research is to investigate the influence of wavy surface characteristics on natural convection heat transfer in a cosine corrugated square cavity filled with Cu-water nanofluid. Discretization of two dimensional governing equations is first carried out utilizing a finite volume method and then solved by simple algorithm. For achieving the maximum heat transfer in wavy cavity, optimization procedure is carried out by means of Response Surface Methodology for different wavy amplitudes, wavy wavelengths and volume fraction of nanoparticles. Impact of sundry parameters on flow quantities are discussed and displayed via graphs and tables. Results indicated that the mean Nusselt number declines by augmenting the wavy amplitudes and wavy wavelengths up to level (0) but afterward quite opposite behavior is noted that is that the mean Nusselt number increases as the wavy amplitudes and wavy wavelengths augment up to level (+1) with fixed Rayleigh number 104. It is also noted that the mean Nusselt number improves with the escalation of volume fraction of nanoparticles. The sensitivity analysis is also taken into account. The increment in sensitivity of the mean Nusselt number is seen at low level (-1) for the wavy amplitude and wavy wavelength whereas the sensitivity remains independent for volume fraction of nanoparticles at all levels.
机译:本研究的主要目的是研究波纹表面特征对填充有铜水纳米流体的余弦波纹方腔中自然对流换热的影响。首先利用有限体积法对二维控制方程进行离散化,然后通过简单算法求解。为了实现波状腔中的最大传热,通过响应表面方法对纳米粒子的不同波幅,波波长和体积分数进行优化。讨论并通过图形和表格显示各种参数对流量的影响。结果表明,平均努塞尔特数通过将波浪幅度和波浪波长增加到水平(0)来降低,但是随后发现相反的行为是,平均努塞尔特数随着波浪幅度和波浪波长增加到水平而增加(+ 1)具有固定的瑞利数104。还应注意,平均纳塞尔数随纳米粒子体积分数的增加而提高。还考虑了敏感性分析。对于波幅和波波长,在低水平(-1)处可以看到平均努塞尔数灵敏度的增加,而在所有水平下,灵敏度仍与纳米粒子的体积分数无关。

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