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Entropy Generation and Heat Transfer Analysis in MHD Unsteady Rotating Flow for Aqueous Suspensions of Carbon Nanotubes with Nonlinear Thermal Radiation and Viscous Dissipation Effect

机译:非线性热辐射碳纳米管水悬浮液中MHD不稳定旋转流动熵生成和传热分析及粘性损耗效应

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摘要

The impact of nonlinear thermal radiations rotating with the augmentation of heat transfer flow of time-dependent single-walled carbon nanotubes is investigated. Nanofluid flow is induced by a shrinking sheet within the rotating system. The impact of viscous dissipation is taken into account. Nanofluid flow is assumed to be electrically conducting. Similarity transformations are applied to transform PDEs (partial differential equations) into ODEs (ordinary differential equations). Transformed equations are solved by the homotopy analysis method (HAM). The radiative source term is involved in the energy equation. For entropy generation, the second law of thermodynamics is applied. The Bejan number represents the current investigation of non-dimensional entropy generation due to heat transfer and fluid friction. The results obtained indicate that the thickness of the boundary layer decreases for greater values of the rotation parameter. Moreover, the unsteadiness parameter decreases the temperature profile and increases the velocity field. Skin friction and the Nusselt number are also physically and numerically analyzed.
机译:研究了非线性热辐射旋转的影响随着时间依赖的单壁碳纳米管的传热流动的增强。通过旋转系统内的收缩片诱导纳米流体流动。考虑了粘性耗散的影响。假设纳米流体流动是导电的。相似变换被应用于将PDE(偏微分方程)转换为ODES(常微分方程)。通过同型分析方法(火腿)解决了转化的方程。辐射源期限涉及能量方程。对于熵产生,应用了第二热力学定律。 Bejan号代表了由于传热和流体摩擦引起的当前对非维熵产生的研究。获得的结果表明边界层的厚度减小了旋转参数的更大值。此外,不稳定参数降低了温度曲线并增加了速度场。皮肤摩擦和营养数也在物理上和数值分析。

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