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Numerical Simulation of Mixed Convection Flows in a Square Double Lid-Driven Cavity Partially Heated Using Nanofluid

机译:纳米流体部分加热的方形双盖驱动腔内混合对流流动的数值模拟

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A numerical study has been done through an Al2O3–water in a double lid-driven square cavity with various inclination angles and discrete heat sources. The top and right moving walls are at low temperature. Half of the left and bottom walls are insulated and the temperatures of the other half are kept at high. A large number of simulations for a wide range of Richardson number of 0.1 to 10, Reynolds number from 1 to 100, inclination angle of cavity from -90o to 90o and solid volume fraction between 0 and 0.06 are performed. The results are presented in the form of streamline, isotherm and Nusselt number plots. The influence of solid volume fraction of nanofluids and angle of inclination on hydrodynamic and thermal characteristics have been analyzed and discussed. As a result, it was found that the heat transfer increases with increase in solid volume fraction for a constant Reynolds number, heat transfer also increases with increase in Richardson and Reynolds for a particular volume fraction.
机译:通过在具有不同倾角和离散热源的双盖驱动方腔中通过Al2O3-水进行了数值研究。顶部和右侧移动壁处于低温状态。左壁和底壁的一半是隔热的,另一半则保持高温。对于0.1到10的理查森数,1到100的雷诺数,-90o到90o的腔体倾角以及0到0.06的固体体积分数,进行了大量的模拟。结果以流线图,等温线和努塞尔数图的形式呈现。分析和讨论了纳米流体的固体体积分数和倾角对流体力学和热学特性的影响。结果,发现对于恒定的雷诺数,传热随着固体体积分数的增加而增加,对于特定的体积分数,传热也随着理查森和雷诺数的增加而增加。

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