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Multi-aiming Strategy Design for Quadruple Prism Shaped Central Receiver in Solar Power Tower System

机译:太阳能塔式系统四棱镜中央接收器多目标策略设计

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For solar power tower technology, the improvement of interception efficiency of heliostat field and the extension of central receiver’s life time are two technical difficulties. To the receiver, higher interception efficiency means more thermal shocks and stronger stresses of high temperatures mainly contribute to the reduction of receiver’s life time. To address these problems,a semi-random distribution strategy is proposed to select the best aiming point of the heliostat, and the distribution of onedimensional array arranged on the centerline of the receiver is carried out for further optimization. It is shown by simulation that through our optimization the temperature distribution on the receiver surface becomes much more uniform while maintaining acceptable interception efficiency.
机译:对于太阳能塔技术而言,提高定日镜场的拦截效率和延长中央接收器的使用寿命是两个技术难题。对于接收器而言,更高的拦截效率意味着更多的热冲击和更强的高温应力,这主要有助于缩短接收器的使用寿命。为了解决这些问题,提出了一种半随机分布策略来选择定日镜的最佳瞄准点,并进行了布置在接收器中心线上的一维阵列的分布以进一步优化。通过仿真显示,通过我们的优化,接收器表面的温度分布变得更加均匀,同时保持了可接受的拦截效率。

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