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Impact of viscosity variation on oblique flow of Cu-H2O nanofluid

机译:粘度变化对Cu-H2O纳米流体斜流动的影响

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摘要

The dynamic properties of nanofluids have made them an area of intense research during the past few decades. In this article, flow of nonaligned stagnation point nanofluid is investigated. Copper-water based nanofluid in the presence of temperature-dependent viscosity is taken into account. The governing nonlinear coupled ordinary differential equations transformed by partial differential equations are solved numerically by using fourth-order Runge-Kutta-Fehlberg integration technique. Effects of variable viscosity parameter on velocity and temperature profiles of pure fluid and copper-water nanofluid are analyzed, discussed, and presented graphically. Streamlines, skin friction coefficients, and local heat flux of nanofluid under the impact of variable viscosity parameter, stretching ratio, and solid volume fraction of nanoparticles are also displayed and discussed. It is observed that an increase in solid volume fraction of nanoparticles enhances the magnitude of normal skin friction coefficient, tangential skin friction coefficient, and local heat flux. Viscosity parameter is found to have decreasing effect on normal and tangential skin friction coefficients whereas it has a positive influence on local heat flux.
机译:纳米流体的动态性质使它们在过去几十年中使它们成为一个激烈的研究领域。在本文中,研究了非基营停滞点纳米流体的流动。考虑在存在温度依赖性粘度下的铜水纳米流体。通过使用四阶跑为Kutta-Fehlberg集成技术,通过部分微分方程改变由部分微分方程转换的控制非线性耦合常微分方程。分析,讨论,探讨了可变粘度参数对纯净流体和铜水纳米流体的速度和温度曲线的影响。还展示并讨论了在可变粘度参数,拉伸比和固体体积分数下的纳米流体的纳米流体的简化,皮肤摩擦系数和局部热通量。观察到,纳米颗粒的固体体积分数的增加增强了正常的皮肤摩擦系数,切向肌肤摩擦系数和局部热通量的大小。发现粘度参数对正常和切向皮肤摩擦系数的影响降低,而它对局部热通量具有积极影响。

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