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Flux-feedback as a fast alternative to control groups of aiming points in molten salt power towers

机译:Flux-Feedback作为控制熔盐动力塔中的瞄准点组的快速替代方案

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摘要

The receiver is one of the critical elements in central tower concentrating solar power plants, which use molten salt as heat transfer fluid. Gradients in the incident flux, a consequence of the natural variability of the solar resource on the earth's surface, and temperature limits must be considered in the operation of the system, due to corrosive phenomena caused by the interaction between the metal alloys used on the receivers tubes and the molten salt. Furthermore, considering thermal stresses in the receiver as operational constraints leads to the prevention of fractures and has the potential to improve the lifespan of the subsystem. In this work, a novel control strategy is tested in a simulated power plant with a nominal thermal power of 450 MW and a solar field with 6482 heliostats. A flux-feedback closed-loop control law is proposed , which manipulates the swarm behavior of groups of aiming points for heliostats in the solar field and also reduces each iteration the information from the incident flux on the receiver's surface into one variable per group. This work established that the proposed controller can reach a steady-state with a configuration of aiming points, which is close to the optimal solution obtained by a hybrid optimization approach, but much faster and with less computational resources. For the simulation and the optimization, a static coupled optical-thermal model is used.
机译:接收器是中央塔集中太阳能发电厂中的关键元素之一,其使用熔盐作为传热流体。由于接收器上使用的金属合金之间的相互作用引起的腐蚀性现象,在系统表面上的梯度,因此,必须考虑地球表面的自然变化,以及在系统的操作中,在系统的操作中,必须考虑温度限制的结果。管和熔盐。此外,考虑到接收器中的热应力作为操作约束导致防止裂缝并且具有改善子系统的寿命的可能性。在这项工作中,在模拟电厂测试了一种新颖的控制策略,该电厂在具有450兆瓦的标称火力和具有6482升光镜的太阳能电场的模拟动力装置中进行了测试。提出了一种磁通反馈闭环控制法,其操纵太阳能领域的Heliostats组的旨在的瞄准点的群体行为,并且还将每个迭代来自接收器表面上的入射通量的信息变为每组的一个变量。这项工作确立了所提出的控制器可以达到一个稳态,该稳态具有瞄准点的配置,其接近通过混合优化方法获得的最佳解决方案,但更快,计算资源较少。对于模拟和优化,使用静电耦合光学热模型。

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