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Efficient energy use and storage practices within residential facilities for compliance with the nZEB criteria

机译:符合nZEB标准的住宅设施内的高效能源使用和存储实践

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Solar energy, today, is the leader in renewable energy and the world's increasing new energy source. In 2016, for the first time, newly installed photovoltaic capacity has increased by more than 50%, exceeding the new coal-fired power stations capacity established worldwide. At the beginning of the year, the European Parliament agreed the target that 35% renewable sources by 2030. Studies show that by 2050 approximately 45% of all the households in the EU could produce their own renewable energy and more than a third of them could be part of a renewable energy cooperative, despite the worries of the distribution companies. Furthermore, the EPBD directive (EU) - Energy Performance of Buildings pushes towards new and more performing buildings - nearly zero energy buildings (nZEB) - where energy efficiency and energy flexibility are essential to achieve the required performance targets. Nearly zero-energy buildings (NZEBs) have very high energy performance and could be achieved through the integration of renewable and decentralized energy sources, continuous grid optimization and the inclusion of increasing numbers of consumers becoming producers, so called prosumers. So far, the photovoltaic system is the single technology that can combine data from utility networks with household consumption and therefore should be considered a starting point for streamlining the electricity consumption and production which will be imposed by strict regulations.
机译:今天,太阳能已成为可再生能源和全球不断增长的新能源的领导者。 2016年,新安装的光伏发电容量首次增加了50%以上,超过了全球新建的燃煤电站容量。年初,欧洲议会同意了到2030年可再生能源占35%的目标。研究表明,到2050年,欧盟约有45%的家庭可以生产自己的可再生能源,其中三分之一以上可以尽管分销公司感到担忧,但还是成为可再生能源合作社的一部分。此外,EPBD指令(EU)–建筑的能源性能推动了性能更高的新建筑-几乎为零的能源建筑(nZEB)–在其中,能源效率和能源灵活性对于实现所需的性能目标至关重要。接近零能耗的建筑物(NZEB)具有很高的能源性能,可以通过整合可再生能源和分散能源,不断优化电网以及吸引越来越多的消费者成为生产者来实现。到目前为止,光伏系统是一种可以将公用事业网络的数据与家庭消费相结合的单一技术,因此应被视为简化电力消耗和生产的起点,这将受到严格的法规的约束。

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