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Virtual solar field - An opportunity to optimize transient processes in line-focus CSP power plants

机译:虚拟太阳能领域 - 有机会优化线路对焦CSP发电厂中的瞬态过程

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摘要

Optimizing solar field operation and control is a key factor to improve the competitiveness of line-focus solar thermal power plants. However, the risks of assessing new and innovative control strategies on operational power plants hinder such optimizations and result in applying more conservative control schemes. In this paper, we describe some applications for a whole solar field transient in-house simulation tool developed at the German Aerospace Centre (DLR), the Virtual Solar Field (VSF).udThe tool offers a virtual platform to simulate real solar fields while coupling the thermal and hydraulic conditions of the field with high computational efficiency. Using the tool, developers and operator can probe their control strategies and assess the potential benefits while avoiding the high risks and costs. In this paper, we study the benefits gained from controlling the loop valves andudof using direct normal irradiance maps and forecasts for the field control. Loop valve control is interesting for many solar field operators since it provides a high degree of flexibility to the control of the solar field through regulating the flow rate in each loop. This improves the reaction to transient condition, such as passing clouds and field start-up in the morning. Nevertheless, due to the large number of loops and the sensitivity of the field control to the valve settings, this process needs to be automated and theudeffect of changing the setting of each valve on the whole field control needs to be taken into account. We used VSF to implement simple control algorithms to control the loop valves and to study the benefits that could be gained from using active loop valve control during transient conditions. Secondly, we study how using short-term highly spatially-resolved DNI forecasts provided by cloud cameras could improve the plant energy yield. Both cases show an improvement in the plant efficiency and outlet temperatureudstability. This paves the road for further investigations of new control strategies or for optimizations of the currently implemented ones.
机译:优化太阳能场操作和控制是提高线焦点太阳能热电厂竞争力的关键因素。但是,评估了对运营发电厂的新和创新控制策略的风险妨碍了这种优化,并导致施加更保守的控制方案。在本文中,我们描述了在德国航空航天中心(DLR),虚拟太阳能领域(VSF)开发的整个太阳能场瞬态内部仿真工具的一些应用。 udthe工具提供了一个虚拟平台来模拟真正的太阳能领域耦合具有高计算效率的现场的热和水力条件。使用该工具,开发人员和操作员可以探讨他们的控制策略并评估潜在的好处,同时避免了高风险和成本。在本文中,我们研究了使用直接正常辐照度映射和预测现场控制的环路阀和UDOF来控制的益处。对于许多太阳能场运营商来说,环阀控制很有趣,因为它通过调节每个环中的流速来控制太阳能场的高度灵活性。这改善了对瞬态条件的反应,例如早上通过云和野战爆发。尽管如此,由于循环数量和对阀门设置的现场控制的灵敏度,因此需要自动化,并且需要将每个阀门的设置改变在整个现场控制上的 Udeffect。我们使用VSF来实现简单的控制算法来控制环路阀,并研究在瞬态条件下使用主动环路阀控制可以获得的好处。其次,我们研究如何使用云相机提供的短期高度空间解决的DNI预测可以提高植物能源产量。这两种情况都显示出植物效率和出口温度的改善 udstability。这铺设了对目前实施的新控制策略或优化的进一步调查道路。

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