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首页> 外文期刊>Journal of Energy Storage >Cost-effective Electro-Thermal Energy Storage to balance small scale renewable energy systems
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Cost-effective Electro-Thermal Energy Storage to balance small scale renewable energy systems

机译:经济高效的电热能量存储,平衡小规模可再生能源系统

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To decarbonise the energy production system, the share of renewable energy must increase. Particularly for small-scale stand-alone renewable energy systems, energy storage has become essential in providing electricity when the demand is high, for example, during the night. Although there are many different storage technologies, only a few are suitable for small-scale stand-alone renewable systems. Those systems must be modular and scalable to be deployed according to the capacity needed. Currently, batteries are among the leading grid storage technologies, but the demand, particularly for Lithium-ion batteries, is also high because of the electrification needs of the transportation sector. Therefore, the question of material availability might become an issue in the future, as Lithium is a scarce and critical element. As an alternative, we introduce a new modular electro-thermal energy storage (ETES) technology that is suitable for various storage needs. This storage unit can utilise various thermal storage materials (thermal oil, molten salt, and sand) at high capacities and improved efficiencies. Our design consists of the embedment of Stirling engines and an electric heater into a thermally insulated storage tank. The source electricity is first converted to heat stored in the storage tank and then converted back to electricity when needed. Among the thermal energy storage materials studied here, sand enabled the storage system's efficiency to reach 85% thanks to its wide range of operating temperatures. The cost is projected to be up to six times lower than that of current Lithium-ion batteries. This new electro-thermal energy storage provides a promising cost-efficient, high capacity alternative for stand-alone energy systems.
机译:脱碳能源生产系统,可再生能源的份额必须增加。特别是对于小型独立可再生能源系统,当需求高时,能量存储在提供电力时,例如在夜间。虽然有许多不同的存储技术,但只有少数人适合小型独立可再生系统。这些系统必须是模块化的并且可扩展,可根据所需的容量部署。目前,电池是领先网格存储技术之一,但由于运输部门的电气化需求,所需的需求,特别是对于锂离子电池也很高。因此,材料可用性问题可能成为未来的问题,因为锂是一种稀缺和临界的元素。作为替代方案,我们介绍了一种新的模块化电热储能(ETES)技术,适用于各种存储需求。该存储单元可以高容量和提高效率利用各种热储存材料(热油,熔盐和砂)。我们的设计包括将斯特林发动机和电加热器的嵌入到热绝缘储罐中。首先将源电力转换成存储在储罐中的热量,然后在需要时转换回电。在这里研究的热能储能材料中,由于其广泛的操作温度,砂使得储存系统的效率能够达到85%。预计成本高于当前锂离子电池的六倍。这种新的电热储能为独立能量系统提供了一种有价值的成本效益,高容量的替代品。

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