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Absorber Tube with Internal Hinged Blades for Solar Parabolic Trough Collector

机译:具有内部铰接式叶片的吸收器管,用于太阳抛抛抛抛光槽收集器

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Solar parabolic collectors exploit solar energy for both thermal and power generation applications. But, they demand long arrays of reflective concentrating surfaces with receiver tube throughout the length of axis of the concentrators. For one and half meter long parabolic trough with aluminium sheet as reflective surface, experimental analysis was done attempting to increase the energy transfer rate and reduce the length of arrays. Two absorber tubes were fabricated and distilled water was used as the working fluid in the tubes. The modified absorber tube with hinged blades delivered an average efficiency of 69.33% compared to 60.82% obtained for simple conventional absorber tube. Plots for performance results of the tubes with varying direct normal irradiance and mass flow rates were obtained. Slope and intercept values of 70.887 and-0.419 respectively were obtained for the collector equation of absorber tubes hinged blades compared to slope and intercept values of 61.571 and-0.401 respectively. The present work delivers better performance compared to earlier works Thus, the proposal present its scope for both domestic and industrial applications.
机译:太阳能抛物线收集器利用热量和发电应用来利用太阳能。但是,它们要求在聚光器的轴线的整个长度的整个长度的情况下使用接收管的反射浓缩表面的长阵列。对于具有铝板作为反射表面的一个半仪表长抛物面槽,试图提高能量传递速率并减少阵列的长度进行实验分析。制造两个吸收剂管,并将蒸馏水用作管中的工作流体。与铰接式叶片的改性吸收管相比,具有69.33%的平均效率,而是对于简单的传统吸收管获得的60.82%。获得具有不同直接正常辐照度和质量流量的管的性能结果的图。对于分别的坡度和截止值分别为61.571和-0.401的斜坡和截止值,分别获得70.887和-0.419的斜坡和截止值。目前的工作与早期的工作相比,提出了更好的性能,因此该提案呈现了国内和工业应用的范围。

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