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Optimized Configuration of Cooling Source in Districted CCHP System: A Case Study in Guangxi

机译:区域CCHP系统中冷源的优化配置-以广西为例

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This study has the objective to study the optimized configuration of cooling source of a districted natural gas Combined Cooling Heating and Power (CCHP) system, and as a result, models of cooling source, distribution and system energy efficiency were established. Through a C# program, hourly simulation of operation quantity, power consumption, and equivalent thermal coefficient (ETC) of the cooling system during May to October was conducted under three configuration strategy schemes. The results revealed that when the waste heat of CCHP system was properly utilized, increasing the number of electric chiller could increase primary energy utilization rate. Scheme One with the most electric chiller units (15 units) consumed the most power, but had the highest ETC of 1.031 (mean),which was, respectively, 0.268 and 0.346 higher than that of Scheme Two with 11 electric chiller units and Scheme Three with most steam BrLi absorption chiller units (nine units). Scheme Three needed the most steam which led to the least electricity generated. Although in this scheme, the electric chillers consumed the least power, the average remaining electricity of the CCHP system was the lowest (64,992.4 kWh), which was 21,441.9 and 6,233.8 kWh less than that of Scheme One and Scheme Two. ETC of the three schemes (1.031, 0.763, and 0.685, respectively) were much less than that of electric chiller (2.630), which meant that the main reason for the decrease of primary energy utilization rate of the cooling system was due to low primary energy utilization rate of the distribution system.
机译:这项研究的目的是研究区域天然气联合冷却供热(CCHP)系统的冷却源的优化配置,从而建立了冷却源,分布和系统能效的模型。通过C#程序,在三种配置策略方案下,每小时对冷却系统在5月至10月期间的运行量,功耗和等效热系数(ETC)进行了每小时模拟。结果表明,如果适当利用CCHP系统的余热,增加电制冷机的数量可以提高一次能源的利用率。具有最多电制冷机单元(15台)的方案一消耗的功率最多,但ETC最高,为1.031(均值),分别比具有11个电制冷机的方案二和方案三的ETC分别高0.268和0.346。大多数BrBr吸收式冷水机组(九台)。方案三需要的蒸汽最多,从而产生的电能最少。尽管在该方案中,电制冷机消耗的功率最少,但CCHP系统的平均剩余电量最低(64,992.4 kWh),比方案一和方案二分别少21,441.9和6,233.8 kWh。这三种方案的ETC(分别为1.031、0.763和0.685)远小于电制冷机(2.630)的ETC,这意味着冷却系统一次能源利用率下降的主要原因是一次能源利用率低配电系统的能源利用率。

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