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Design and adaptability of photovoltaic air conditioning system based on office buildings

机译:基于办公大楼的光伏空调系统的设计与适应性

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摘要

Photovoltaic (PV) air conditioning (AC) is an effective way to solve the problems of energy consumption of office buildings. In this study, a set of parameters were designed for PV AC, including PV capacity, AC parameter, and inverter parameter. Then, the parameters were applied to a 20-m(2) office building, and a PV AC system test platform was built. The test lasted for one year; the corresponding data including typical daily data and annual data were collected and analyzed. The results show that the PV AC system quickly decreases or increases the room temperature by similar to 9.5% and 17% in 1 h of cooling and heating periods, respectively, thus maintaining the room temperature within the set temperature range of +/- 0.9 degrees C. The data also show that by proper design of parameters, a PV AC system can satisfy the electricity demand of AC. In the cooling period, heating period, and annual operation conditions, the PV system provided 114%, 73%, and 188% of the energy for the AC system, respectively. Next, economic calculations show that PV AC is suitable for office buildings. The local payback period is only 7.5 years; both the energy saving and emission reduction are significant.
机译:光伏(PV)空调(AC)是解决办公楼能耗问题的有效方法。在本研究中,为PV AC设计了一组参数,包括PV容量,交流参数和逆变器参数。然后,将参数应用于20-M(2)个办公大楼,并建立了PV AC系统测试平台。测试持续了一年;收集和分析包括典型日常数据和年度数据的相应数据。结果表明,PV AC系统分别快速降低或将室温增加到9.5%和1小时的冷却和加热周期,从而将室温保持在+/- 0.9度的设定温度范围内C.数据还表明,通过适当的参数设计,PV AC系统可以满足AC的电力需求。在冷却期,加热期和年度操作条件下,PV系统分别为AC系统提供114%,73%和188%的能量。接下来,经济计算表明,光伏交流适用于办公楼。当地投资回收期仅为7岁;节能减少减少都很重要。

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