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Grid interaction analysis of solar water heating photovoltaic-thermal (PV-T) systems with thermal storage tanks and electrical auxiliary heaters

机译:具有热储罐和电辅助加热器的太阳能加热光伏 - 热(PV-T)系统的栅极相互作用分析

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Photovoltaic-thermal (PV-T) solar water heating systems are commonly envisioned as a combination of regular solar water heaters and grid-connected photovoltaic (PV) systems. Nevertheless, the PV circuit can be left in open-circuit mode to increase the effective thermal absorption or the PV electricity generated can be used to heat the storage fluid through a secondary electrical heating element. Annual dynamic simulations using representative solar water heating system sizes and representative PV-T technology were conducted for these three configurations. The purpose was to indirectly determine how they would perform on a temporary basis if used on demand by grid-operators as part of the renewable energy resources at their disposal. The results show that the use of local PV electricity to heat the storage fluid caused the shortest pump running time and lowest auxiliary energy consumption of all cases considered. In light of these results, it is reasonable to state that this solution is more efficient than disabling the PV array to increase the heat available at the collector. The practical implications of a potential application of these methods were also discussed.
机译:光伏 - 热(PV-T)太阳能水加热系统通常设想为普通太阳能热水器和电网连接光伏(PV)系统的组合。然而,PV电路可以留在开路模式中,以增加有效的热吸收或所产生的PV电力可用于通过二次电加热元件加热储存流体。使用代表性太阳能热系统尺寸和代表PV-T技术的年度动态模拟进行了这三种配置。该目的是间接地确定他们如何在网格运营商按需按照随名的可再生能源资源的一部分时暂时执行。结果表明,使用局部光伏电热量储存流体引起最短的泵运行时间和最低辅助能耗的所有情况。根据这些结果,可以说明该解决方案比禁用PV阵列更有效,以增加收集器上可用的热量。还讨论了这些方法潜在应用的实际意义。

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