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Dynamic modeling and behavior of parabolic trough concentrated solar power system under cloudy conditions

机译:抛物线槽集中太阳能系统在多云条件下的动态建模与行为

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As a promising application of solar energy, parabolic trough concentrating solar power with indirect thermal energy storage has been widely used in concentrating solar power plants constructed in China. The dynamic modeling and behavior of the power plants were important for achieving fast start-up and shut down and to overcome weather disturbances. This study investigated the dynamic characteristics of a 50 MW parabolic trough concentrating solar power plant with indirect thermal energy storage. Simplified cloud disturbances were simulated to obtain the dynamic characteristics of a power block coupled with solar field and thermal energy storage. Simulation results indicated that the thermal inertia of solar field is an order of magnitude larger than that of power block and thermal energy storage subsystems, and the heat transfer fluid temperature at the solar field outlet fluctuates within a narrow range at rated value under the control scheme of solar field. The disturbances caused by heat transfer fluid temperature fluctuation were reduced by thermal energy storage operation. To minimize the generation load fluctuation under thick-cloud condition, the thermal energy stored in solar field could be used to moderate the fluctuation caused by the start-up of thermal energy storage discharging exchanger. (C) 2019 Published by Elsevier Ltd.
机译:作为太阳能的有希望的应用,抛物面低谷集中的间接热能储存的太阳能已经广泛用于集中在中国建造的太阳能发电厂。发电厂的动态建模和行为对于实现快速启动和关闭并克服天气干扰很重要。本研究调查了具有间接热能储存的50 MW抛物面槽集中太阳能发电厂的动态特性。模拟简化的云扰动以获得与太阳能磁场和热能存储器耦合的动力块的动态特性。仿真结果表明,太阳能场的热惯性是大于功率块和热能存储子系统的大小,太阳能场出口处的传热流体温度在控制方案下的额定值下的窄范围内波动。太阳能领域。通过热能储存操作减少了由传热流体温度波动引起的扰动。为了使厚云条件下的产生负荷波动最小化,存储在太阳能场中的热能可用于中等由热能储存放电交换器的启动引起的波动。 (c)2019年由elestvier有限公司发布

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