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Nusselt number and friction factor correlation of solar air heater having winglet type vortex generator over absorber plate

机译:在吸收板上的幼锭型涡流发生器的篮板数和摩擦因子相关性

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摘要

The experimentation has been done using the winglet type vortex generator as a roughness element above the absorber surface of a solar air heater (SAH) system. Different geometry-based roughness parameters have been considered such as relative roughness pitch (P-i/e) value of 5-12, relative roughness width (W-w/w) value of 3-7, angle of attack (alpha) value of 30 degrees-75 degrees and the flowing fluid Reynolds number diversified between 3000 and 22,000 respectively and its effect on Nusselt number (Nu(u)) and friction factor (fr(1)) were studied. In order to achieve its optimum condition, the Nusselt number (Nu(u)) and friction factor (fr(1)) are analyzed for the roughness parameters to obtain the best overall performance and the required values are compared with the smooth type duct under similar flowing condition. Using regression analysis, correlations have been expanded for Nusselt number (Nu(u)) and friction component (fr(1)) in terms of Reynolds number (Re) and with different parametric condition which is considered to be satisfactory when compared with the experimental results.
机译:已经使用小翼式涡流发生器作为太阳能空气加热器(SAH)系统的吸收器表面上方的粗糙元件来完成实验。已被认为是不同的基于几何的粗糙度参数,例如相对粗糙度俯仰(PI / e)值为5-12,相对粗糙度宽度(ww / w)值为3-7,攻角(alpha)值为30度 - 75度和流动的流体雷诺数分别在3000和22,000之间分别多样化及其对豆浆数(NU(U))和摩擦系数(FR(1))的影响。为了实现其最佳条件,对粗糙度参数分析NUSERET号(NU(U))和摩擦系数(FR(1)),以获得最佳总体性能,并且将所需的值与平滑式管道进行比较类似的流动条件。使用回归分析,在雷诺数(RE)和不同的参数条件下,对Nusselt数(NU(U))和摩擦分量(FR(1))扩展了相关性,并且在与实验相比时被认为是令人满意的结果。

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