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Energy and Cost Analysis of a New Packed Bed Pumped Thermal Electricity Storage Unit

机译:新型填充床抽水蓄电装置的能源和成本分析

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Renewable energy sources (RES) are quite capable to actively contribute to meet the today's energy demand. However, many of them have a time-dependent nature that constitutes their major disadvantage. To overcome this drawback, energy storage systems (ESS) need to be set up. In this way, the stored energy can be used in the absence of RES or under peak demand hours. High-temperature pumped thermal electricity storage (PTES) using packed bed constitutes an attractive solution but is characterized by high losses and irreversibilities. For this reason, in this paper, a new plant scheme is presented and its mathematical model built up. To predict the packed bed behavior, a one-dimensional two phase model of the hot and cold storages has been included, while the plant feasibility is evaluated using an energy and a cost analysis. Results show that the highest quantity of energy and round-trip efficiency are reached with a packed bed made of magnetite and titanium oxide.
机译:可再生能源(RES)很有能力积极满足当今的能源需求。但是,它们中的许多具有时间依赖性,这构成了它们的主要缺点。为克服此缺点,需要建立能量存储系统(ESS)。这样,可以在没有RES的情况下或在高峰需求小时内使用存储的能量。使用填充床的高温抽水蓄热(PTES)构成了一种有吸引力的解决方案,但其特点是损耗高且不可逆。因此,本文提出了一种新的工厂方案并建立了其数学模型。为了预测填充床的行为,已经包括了冷热库的一维两相模型,同时使用能源和成本分析来评估工厂的可行性。结果表明,由磁铁矿和氧化钛制成的填充床可达到最高的能量和往返效率。

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