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Performance and Benefits of Distributed Energy Systems in Cooling Dominated Regions: A Case Study

机译:分布式能源系统在冷却主导地区的性能和益处:一个案例研究

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The distributed energy system (DES) is an innovative energy system with high energy efficiency and economic benefits. However, the application of this energy system in cooling dominated regions is still not well studied yet. This paper aims to investigate the performance and benefits of the DES in Hong Kong. Based on the characteristic of energy demands, a DES, which integrates distributed generations and district cooling systems, is designed. The chilled water distribution networks and the pumps systems are determined by the cooling demand. An optimal design approach is adopted in equipment sizing of the DES. Based on the modeling results, the hourly energy consumptions of the DES and the CES (centralized energy system) are compared. In the DES, the grid load is reduced significantly, and the cooling system operates with a higher efficiency during the most period of the year. The primary energy saving and the cost saving of the DES are analyzed and discussed. Results denote that the DES can achieve a primary energy saving of 9.58%. Even the capital cost becomes higher, the DES is also economically beneficial due to the low operation cost.
机译:分布式能量系统(DES)是一种具有高能源效率和经济效益的创新能源系统。然而,这种能量系统在冷却主导地区的应用尚未得到很好的研究。本文旨在调查香港德斯的绩效和益处。基于能源需求的特征,设计了集成分布式代和区冷却系统的DES。冷却的水分配网络和泵系统由冷却需求决定。 DES的设备尺寸采用了最佳设计方法。基于建模结果,比较DES和CES(集中能量系统)的每小时能量消耗。在DES中,电网载荷显着降低,冷却系统在今年大部分时间内具有更高的效率。分析并讨论了初级节能和节省的节能。结果表示DES可以达到9.58%的主要节能。即使是资本成本变得更高,由于操作费用低,DES也是经济上有益的。

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