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Quantifying the operational flexibility of building energy systems with thermal energy storages

机译:量化具有热能存储的建筑能源系统的运营灵活性

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The increasing share of fluctuating renewable energy generation in the energy system increases the need for flexibility options. Building energy systems (BES) with their corresponding thermal energy storages (TES) can be one option for supplying flexibility. To use this option efficiently, a framework to quantify the flexibility of the BES is necessary. It is found that the flexibility of a BES can hardly be described with one single flexibility indicator. Therefore, this paper develops a method to analyze the flexibility of BES in terms of time, power and energy. Different influencing factors are considered, like the heat generator and the thermal storage size. Additionally, the option to aggregate the different flexibility measures on a city district level is addressed. This is necessary as single buildings have a minor impact on higher level energy systems. Finally, a comparison to other flexibility options like battery storage is discussed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:能源系统中可再生能源发电量波动的份额越来越大,因此需要更多的灵活性。带有相应的热能存储(TES)的建筑能源系统(BES)可以提供灵活性。为了有效地使用此选项,需要一个框架来量化BES的灵活性。已经发现,仅用一个灵活性指标就很难描述BES的灵活性。因此,本文提出了一种从时间,功率和能量方面分析BES灵活性的方法。考虑了不同的影响因素,例如热发生器和储热器的大小。此外,还提出了在城市地区汇总不同灵活性措施的选项。这是必要的,因为单个建筑物对较高级别的能源系统影响很小。最后,讨论了与其他灵活性选项(如电池存储)的比较。 (C)2016 Elsevier Ltd.保留所有权利。

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