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How do changes in climate and consumption loads affect residential PV coupled battery energy systems?

机译:气候和消费负荷的变化如何影响住宅光伏耦合电池能源系统?

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摘要

Weather conditions and domestic consumption belong to the essential boundary conditions in the optimal dimensioning of residential battery storage systems. In future, both factors will undergo transitions due to climate change and efficiency enhancement of domestic appliances. This study seeks to assess potential developments in climate and consumption loads on the battery flows and residual loads for the near-time future. For this purpose, a land surface processes model with an integrated domestic energy system component is applied. Three scenarios project changes in consumption loads and meteorological conditions for the year 2040. The study area includes 4906 buildings located in the south of Germany. The results show a general rise of grid feed-in rates between 21% and 27% due to increased photovoltaic production. Climate change is expected to raise battery utilization during the winter months, whereas decreasing effects from efficiency enhancement dominate in the summer. The self-consumption rate declines between 4% and 12%, whereas self-sufficiency rises up to 6%. Consequently, in the assessment of battery dimensioning approaches maximizing self-consumption or profitability, we recommend including the shifts in battery utilization and residual loads arising from future changes in climate and consumption loads.
机译:天气条件和家庭消费属于住宅电池存储系统最佳尺寸的基本边界条件。未来,由于气候变化和家用电器效率的提高,这两个因素都将发生转变。这项研究旨在评估在不久的将来气候和电池负荷以及剩余负荷上的消耗负荷的潜在发展。为此,应用了具有集成的家庭能源系统组件的地表过程模型。三种方案预测了2040年的消费量和气象条件的变化。研究区域包括位于德国南部的4906栋建筑物。结果表明,由于光伏发电量的增加,电网的馈电率普遍提高了21%至27%。预计气候变化将在冬季提高电池利用率,而夏季提高效率的影响将逐渐减弱。自给率下降4%至12%,而自给自足率上升6%。因此,在评估电池选型方法以最大程度地提高自用电量或获利能力时,我们建议考虑电池使用量的变化以及由于未来气候和消耗负荷的变化而产生的剩余负荷。

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