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Influence of different operation strategies on transient solar thermal power plant simulation models with molten salt as heat transfer fluid

机译:不同操作策略对以熔盐为传热流体的暂态太阳能热电厂模拟模型的影响

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摘要

One of the advantages of solar thermal power plants (STPPs) with molten salt as heat transfer fluid is the direct storage system. This means that the thermal energy collected by the solar field and the electric power generation can be fully decoupled. The plant operator must therefore make the daily decision when to start-up or to shut-down the power block (PB). Normally, the solar field of these STPPs is overdesigned which leads to dumping of solar energy during days with high solar radiation, due to the inability of the hot tank and the PB to consume all the collected thermal energy. The PB must therefore start as soon as possible to prevent excessive dumping of solar energy. Contrarily, on days with low solar radiation, the PB should not start too early to prevent a second start-up on this day, because of a low hot tank level. In order to operate within these counter bounds, a fixed and a dynamic operation strategy are proposed. The so-called solar-driven strategy serves as a reference. Using this strategy, the PB operates whenever the solar field is online. The two proposed operation strategies are compared to the reference strategy by means of a transient STPP simulation model. Using the dynamic operation strategy, the annual unnecessary PB start-ups and the auxiliary heater thermal energy for anti-freeze protection are decreased, whereas the annual net electricity is increased.
机译:使用熔融盐作为传热流体的太阳能热电厂(STPP)的优势之一是直接存储系统。这意味着可以将太阳能场收集的热能与发电完全分离。因此,工厂操作员必须每天决定何时启动或关闭电源块(PB)。通常,由于热罐和PB无法消耗所有收集的热能,因此这些STPP的太阳能场设计过度,导致在太阳辐射高的日子里会倾倒太阳能。因此,PB必须尽快启动,以防止过度倾倒太阳能。相反,在太阳辐射较低的日子里,PB不应过早启动,以防止在这一天再次启动,因为热罐水平较低。为了在这些界限内操作,提出了一种固定的和动态的操作策略。所谓的太阳能驱动战略可以作为参考。使用此策略,只要太阳能场在线,PB便会运行。通过瞬态STPP仿真模型,将两种建议的操作策略与参考策略进行了比较。使用动态运行策略,减少了每年不必要的PB启动和用于防冻保护的辅助加热器热能,而增加了每年的净电力。

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