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Boundary Layer Flow and Heat Transfer on a Moving Plate in a Copper-Water Nanofluid using Buongiorno Model

机译:用Buongiorno模型在铜水纳米流体中移动板上的边界层流动和传热

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The study of the steady two dimensional boundary layer flow of a copper (Cu)-water nanofluid on a moving plate is investigated. The assumption is the plate moves in the same or opposite direction to the free stream. The nonlinear partial differential equations are transformed into nonlinear ordinary differential equations using a similarity variables, then a shooting technique is used to solved it numerically. The numerical results for skin friction coefficient, the local Nusselt number, the local Sherwood number as well as the velocity, temperature and concentration profiles are obtained. The effect of nanoparticle volume fraction, Brownian motion and thermophoresis parameters on heat transfer are examined. The results show that the local Nusselt number and the local Sherwood number increase with increasing in the Brownian motion parameter Nb and thermophoresis parameter Nt.
机译:研究了对移动板上的铜(Cu)-WaT纳米流体的稳定二维边界层流动的研究。假设是板以与自由流相同或相反的方向移动。使用相似变量将非线性偏微分方程转换为非线性常微分方程,然后使用拍摄技术在数值上进行解决。获得了皮肤摩擦系数,局部露珠,本地舍伍德数以及速度,温度和浓度谱的数值结果。研究了纳米颗粒体积分数,褐色运动和热孔参数对热传递的影响。结果表明,邦运动参数Nb和致热孔参数NT的增加随着众议议的数量和本地舍伍德数量增加。

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