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Storage of excess electrical energy generated by photovoltaics in form of compressed air in a production chain considering energy efficiency

机译:考虑能量效率,在生产链中的压缩空气中的光伏产生的过量电能存储

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As part of the energy turnaround, the intermediate storage of electrical energy generated from volatile sources is becoming increasingly important. One innovative approach is the use of compressed air energy storage in underground caverns. Since industry has many decentralized compressed air systems, this study analyses whether industrial compressed air systems are suitable for the intermediate storage of electrical energy. The investigations are carried out using an exemplary simulation model of a process chain combined with a photovoltaic system and a compressed air system in MATLAB. The energy converted by a photovoltaic system is used to supply the production line. If there is a surplus of electrical energy, it is converted into compressed air. Re-electrification is not considered in the analysis. If the photovoltaic system only supplies the production line, it has no influence on the efficiency of the production line. Regarding the efficiency of the production chain, if there is a surplus of energy it has a small effect on the efficiency of the production line. In principle, it can be demonstrated that industrial compressed air systems and especially their storage systems, are suitable for the intermediate storage of electrical energy, provided they are appropriately dimensioned.
机译:作为能源周转的一部分,从挥发性源产生的电能的中间存储变得越来越重要。一种创新方法是在地下洞穴中使用压缩空气储存。由于工业具有许多分散的压缩空气系统,这项研究分析了工业压缩空气系统是否适合中间储存电能。使用加工链的示例性模拟模型与Matlab中的光伏系统和压缩空气系统结合使用的示例性模拟模型进行。由光伏系统转换的能量用于提供生产线。如果有过剩的电能,它将转化为压缩空气。在分析中不考虑重新电气化。如果光伏系统仅供生产线,则对生产线的效率没有影响。关于生产链的效率,如果有剩余的能量,它对生产线的效率有很小的影响。原则上,可以证明工业压缩空气系统和尤其是它们的存储系统,适用于电能的中间存储,只要它们被适当地尺寸。

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