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首页> 外文期刊>BioNanoscience >Time-Dependent Nonlinear Convective Flow and Radiative Heat Transfer of Cu-Al_2O_3-H_2O Hybrid Nanoliquid with Polar Particles Suspension: a Statistical and Exact Analysis
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Time-Dependent Nonlinear Convective Flow and Radiative Heat Transfer of Cu-Al_2O_3-H_2O Hybrid Nanoliquid with Polar Particles Suspension: a Statistical and Exact Analysis

机译:具有极性颗粒悬浮液的Cu-Al_2O_3-H_2O杂化纳米杂交碳基的时间依赖性非线性对流流动和辐射传热:统计和精确分析

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摘要

The statistical and exact analysis of heat transfer rate and skin friction coefficient of a nonlinear convective flow of Cu - Al_2O_3 - H_2O hybrid nanofluid with polar particle suspension is performed. The heat transport phenomenon includes radiative heat effect. A micropolar fluid model is accounted. Exact solutions to the governing problem are found via Laplace transform method (LTM). The heat transfer rate and skin friction are analysed critically via statistical methods like probable error and regression models. The slope of linear regression of data points for skin friction and Nusselt number is estimated to quantify the increase/decrease. The Nusselt number and thermophysical properties for twenty-four different hybrid nanofluids are presented. A novel idea of a nonlinear convective flow of Cu - Al_2O_3 - H_2O hybrid nanofluid with polar particle suspension is investigated for the first time. Opposite behaviour of velocity and microrotation profile are established when the physical parameters are varied.
机译:进行了Cu - Al_2O_3 - H_2O杂交纳米流体的非线性对流流量的传热速率和皮肤摩擦系数的统计和精确分析,具有极性颗粒悬浮液。热传输现象包括辐射热效果。考虑了微柱液模型。通过拉普拉斯变换方法(LTM)发现了对管理问题的精确解决方案。通过可能的误差和回归模型,通过统计方法批判性地分析传热速率和皮肤摩擦。估计皮肤摩擦数据点的线性回归的斜率估计量化增加/减少。提出了二十四种不同杂交纳米流体的营养数和热物理性质。第一次研究了Cu - Al_2O_3 - H_2O杂交纳米流体的非线性对流流程的新颖思想。当物理参数变化时,建立速度和微管状曲线的相反行为。

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