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Thermoeeonomic Optimization of Solar Thermal Power Plants with Storage in High-Penetration Renewable Electricity Markets

机译:高渗透可再生电力市场储存太阳能热电厂的热注册优化

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Unlike most of renewable energy technologies, solar thermal power plants with integrated thermal energy storage are able to store heat from the sun and thereby supply electricity whenever it is needed to meet the demand. This attribute makes concentrating solar power ideally suited to compensate for fluctuations in other renewable energy sources. In order to analyze this market role, three scenarios were modeled, with low, medium and high penetrations of non-dispatchable renewables (i.e. wind and solar photovoltaics). The demand that cannot be met by these variable sources is met by a solar thermal power plant with heat provided either by a solar field and storage system or a back-up gas burner. For each scenario, the size of the solar field and storage were varied in order to show the trade-off between the levelized generation costs of the system, the annual specific CO2 emissions and the share of renewable electricity generation. The results show that, regardless of the scenario, there exist optimum plant configurations with viable costs whilst simultaneously ensuring a considerable reduction in CO2 emissions. Furthermore, it is shown that the limited flexibility of the power block prevents the system from reaching higher levels of sustainability. Lastly, the results were compared with an equivalent combined cycle power plant, showing that solutions involving solar thermal power can be justified in environmental terms only if large storage units are integrated into the plants.
机译:与大多数可再生能源技术不同,具有集成热能储存的太阳能发电厂能够将热量从太阳中储存热量,从而随时提供电量来满足需求。该属性使集中的太阳能非常适合补偿其他可再生能源的波动。为了分析这一市场作用,建模了三种情况,具有低,中,不可调度的可再生能源的高,中高穿透(即风和太阳能光伏)。太阳能热电厂由太阳能热电厂满足了这些可变源不能满足的需求,通过太阳能场和储存系统或备用燃气燃烧器提供。对于每个场景,太阳能场和存储的大小变化,以便在系统的尺寸变化成本之间展示权衡,年度特定的二氧化碳排放和可再生发电的份额。结果表明,无论方案如何,都存在具有可行性成本的最佳工厂配置,同时确保CO2排放量相当大降低。此外,示出电源块的有限柔韧性阻止系统达到更高水平的可持续性。最后,将结果与相同的组合循环发电厂进行了比较,显示涉及太阳能热功率的解决方案只有在植物中只有大存储单元时才可以在环境方面的合理性。

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