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NUMERICAL INVESTIGATION OF SOLAR PARABOLIC TROUGH RECEIVER UNDER NON UNIFORM SOLAR FLUX DISTRIBUTION

机译:非均匀太阳通量分布下的抛物线槽型接收器的数值研究

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Three dimensional numerical modeling of parabolic trough receiver is performed to study the non uniform flux distribution on the outer surface of the receiver by coupling Monte Carlo Ray-Tracing Method (MCRT) with the Finite Volume Method (FVM) and calculated non uniform flux distribution is considered as a thermal boundary condition. The numerical model is solved by considering RNG k-e turbulent model. In this paper, different Heat Transfer Fluids (HTF) with respect to the various operating parameters such as mass flow rate, Direct Normal Irradiation (DNI), inlet temperature and ambient conditions are considered. The temperature profile of both absorber and glass envelope follows the non-uniform solar heat flux distribution curve. Three dimensional temperature distribution of the absorber tube is calculated numerically for different inlet temperature and velocity of HTF. The maximum solar heat flux attained by the PTC receiver is 9753.3 W/m~2, 19506 W/m~2, 29260 W/m~2, and 39013 W/m~2 when the DNI are 200 W/m~2, 400 W/m~2, 600 W/m~2, and 800 W/m~2 respectively.
机译:通过将蒙特卡洛射线追踪法(MCRT)与有限体积法(FVM)耦合,对抛物线槽接收器进行了三维数值建模,研究了接收器外表面的非均匀通量分布,计算出的非均匀通量分布为被认为是热边界条件。通过考虑RNG k-e湍流模型来求解数值模型。在本文中,考虑了各种传热流体(HTF)的各种运行参数,例如质量流量,直接正常辐射(DNI),入口温度和环境条件。吸收器和玻璃外壳的温度曲线都遵循不均匀的太阳热通量分布曲线。对于不同的入口温度和HTF速度,通过数值计算吸收器管的三维温度分布。当DNI为200 W / m〜2时,PTC接收器获得的最大太阳热通量为9753.3 W / m〜2、19506 W / m〜2、29260 W / m〜2和39013 W / m〜2, 400 W / m〜2、600 W / m〜2和800 W / m〜2。

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