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Modelling of a CHP system with electrical and thermal storage

机译:带有蓄热和蓄热的热电联产系统的建模

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Decentralised energy generation is increasing in popularity because it provides for higher efficiencies and is consequently more environment friendly than the current centralised solutions. Most of the inefficiencies of centralised power stations lie in the large amount of waste heat. This is largely overcome when using Combined Heat and Power systems where the heat as well as the electrical output is used, but these outputs are generally constant, while any demand would be continuously fluctuating. The only way to deal with this imbalance between supply and demand is through the use of energy storage, and therefore this paper investigates the benefits of combining energy storage systems with a CHP system to determine the potential efficiency improvements from such a combination. A full model of this system, which consisted of several sub-models to deal with the various elements of energy generation and storage was developed in Matlab/Simulink and used for simulation using some real-life demand data. The results show that through the addition of correctly sized thermal and electrical storage to a CHP system, the CHP system is able to run continuously at optimal efficiency.
机译:分散式能源发电越来越受欢迎,因为它提供了更高的效率,因此比当前的集中式解决方案更加环保。集中式电站的大多数低效之处在于大量的废热。当使用热电联产系统时,这在很大程度上得到了克服,在这种系统中,使用了热量以及电力输出,但是这些输出通常是恒定的,而任何需求都会不断波动。解决供需之间这种不平衡的唯一方法是通过使用储能,因此,本文研究了将储能系统与CHP系统结合起来的好处,以确定这种结合可能带来的效率提升。在Matlab / Simulink中开发了该系统的完整模型,该模型包含几个子模型来处理能量产生和存储的各种元素,并使用一些实际需求数据进行了仿真。结果表明,通过向CHP系统中添加大小正确的热量和电存储,CHP系统能够以最佳效率连续运行。

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