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Effect of tilt angle on the multi-pipe channel with sinusoidal/curved walls - numerical modelling based on finite volume method

机译:倾斜角对正弦/弯曲壁多管通道的影响-基于有限体积法的数值模拟

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Purpose This paper aims to investigate the two-dimensional numerical modeling of fluid flow and heat transfer in a fluid channel.Design/methodology/approach The channel is filled with the CuO-water nanofluid. The KKL model is used to estimate the dynamic viscosity and considering Brownian motion. On the other hand, the influence of CuO nanoparticles' shapes on the heat transfer rate is taken account in the simulations. The channel is included with several active pipes with hot and cold temperatures. Furthermore, the external curved and sinusoidal walls have cold and hot temperatures, respectively.Findings Three different tilt angles are considered with similar boundary and operating conditions. The Rayleigh numbers, solid volume fraction of CuO nanoparticles in the pure water and the tilt angles are the governing parameters. Different cases studies, such as streamlines, heat transfer rate, local and total entropy generation and heatlines, are analysed under influences of these governing parameters.Originality/value The originality of this work is investigation of fluid flow, heat transfer and entropy generation within a nanofluid filled channel using FVM.
机译:目的本文旨在研究流体通道中流体流动和传热的二维数值模型。设计/方法/方法该通道充满了CuO-水纳米流体。 KKL模型用于估计动态粘度并考虑布朗运动。另一方面,在模拟中考虑了CuO纳米颗粒的形状对传热速率的影响。该通道包含在多个具有高温和低温温度的活动管道中。此外,弯曲的和正弦形的外壁分别具有低温和高温。发现考虑到三种不同的倾斜角,且边界条件和工作条件相似。瑞利数,纯水中CuO纳米粒子的固体体积分数和倾斜角是控制参数。在这些控制参数的影响下,分析了不同的案例研究,例如流线,传热速率,局部和总熵产生以及热线。使用FVM的纳米流体填充通道。

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