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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Unsteady stagnation point flow of Oldroyd-B nanofluid with heat generation/absorption and nonlinear thermal radiation
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Unsteady stagnation point flow of Oldroyd-B nanofluid with heat generation/absorption and nonlinear thermal radiation

机译:具有发热/吸收和非线性热辐射的Oldroyd-B纳米流体的非定常停滞点流

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This article addresses unsteady stagnation point flow of Oldroyd-B nanofluid past an impermeable stretching sheet. Characteristics of heat transfer are described within the frame of heat generation/absorption and nonlinear radiative process. Intention in present analysis is to develop a model for nanomaterial containing Brownian motion and thermophoresis phenomena. The resulting nonlinear differential systems have been solved for the convergent homotopic solutions. Behavior of sundry variable for the velocity, temperature and concentration are addressed. Numerical values examined the local Nusselt number. It is revealed that velocity field enhances for dimensionless retardation time while reverse situation is observed regarding dimensionless relaxation time. Temperature and heat transfer rate are enhanced via larger nonlinear thermal radiation and temperature parameters. Moreover, behavior of Brownian motion and thermophoresis on the concentration field is quite reverse.
机译:本文讨论了 Oldroyd-B 纳米流体通过不透水拉伸片的非稳态停滞点流动。传热的特征在发热/吸收和非线性辐射过程的框架内描述。本分析的目的是开发一种包含布朗运动和热泳现象的纳米材料模型。对于收敛同位素解,已经求解了由此产生的非线性微分系统。解决了各种变量对速度、温度和浓度的行为。数值检查了当地的 Nusselt 数。结果表明,速度场在无量纲延迟时间下增强,而在无量纲弛豫时间上观察到相反的情况。通过更大的非线性热辐射和温度参数来增强温度和传热速率。此外,布朗运动和热泳在浓度场上的行为是完全相反的。

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