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Assessment of the potential improvement due to multiple apertures in central receiver systems with secondary concentrators

机译:评估由于带有辅助集中器的中央接收器系统中有多个孔而导致的潜在改进

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When striving for maximum efficiencies in solar thermal central receiver systems (CRS) the use of gas turbines with bottoming cycles is inevitable. Pressurized volumetric receivers have proven their feasibility and good performance, and their integration into gas turbine cycles has been demonstrated. One disadvantage of this system is the necessity to use secondary concentrators. The sunlight has to be concentrated into the relatively small glass windows of the receiver, which leads to a limited view cone. This means that of all the possible heliostat positions around the tower, only those within the ellipse, resulting from the section boundary of the view cone with the ground plane, are usable. For small systems, for which tower costs are small, the resulting heliostat field layout is similar, with or without secondary concentrator. For large systems, which are more cost-effective, tower costs become significant, and the losses due to atmospheric attenuation and spillage dominate over the cosine losses. Thus, the purely North-oriented fields become increasingly sub-optimal. This article shall demonstrate at what power levels this problem can be alleviated by not using a single, North-oriented aperture, but up to six apertures—each of them associated with a separate heliostat field.
机译:在太阳能热中央接收器系统(CRS)中争取最大效率时,不可避免的是要使用具有最低循环的燃气轮机。加压容积式接收器已经证明了其可行性和良好的性能,并且已经证明了其与燃气轮机循环的集成。该系统的一个缺点是必须使用次级集中器。阳光必须集中到接收器的相对较小的玻璃窗中,从而导致视锥面受到限制。这意味着在塔周围所有可能的定日镜位置中,只有视锥与地面的截面边界产生的椭圆内的位置可用。对于塔式系统成本较低的小型系统,定日镜场的布局是相似的,带有或不带有二次集中器。对于更具成本效益的大型系统,塔架成本变得相当可观,而由于大气衰减和溢出而造成的损失占余弦损失的支配地位。因此,纯粹面向北方的领域变得越来越次优。本文将演示通过不使用单个朝北的光圈,而是使用多达六个的光圈(可以将每个光圈与独立的定日镜场相关联)来缓解此问题的功率级别。

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