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Analysis and optimization of load matching in photovoltaic Systems for zero energy buildings in different climate zones of China

机译:中国不同气候区零能耗建筑光伏系统负荷匹配的分析与优化

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Load matching is an inevitable problem that restricts the development of photovoltaic (PV) system used in buildings. The objective of this paper is to solve this problem by conducting a load matching assessment and optimization of PV system in different climate zones of China. The influences of the tilt angle, orientation, PV plot ratio and building height on the achievement of zero energy buildings (ZEBs) were evaluated. The PV potentials of roofs and facades were analyzed and optimized based on self-sufficiency and self-consumption. Net load variance and the maximum electricity import were employed as indices to evaluate the performance of PV systems in different climate zones of China. The results of the load matching assessment show that electricity generations from roof PV systems in low-rise buildings can meet most of the energy demand (at least 70%) in all climate zones of China. East and west facades of mid-rise buildings have an advantage over south facades in Kunming and Guangzhou in terms of load matching. It is necessary to combine roofs, south, east and west facades to meet the ZEBs requirement of for high-rise building. When the heating/cooling demand is dominant, the tilt angle should be higher/lower than the latitude of the specific location. This research will be helpful in designing building PV systems in different climate zones of China. (C) 2019 Elsevier Ltd. All rights reserved.
机译:负载匹配是不可避免的问题,它限制了建筑物中使用的光伏(PV)系统的开发。本文的目的是通过在中国不同气候区进行负荷匹配评估和优化光伏系统来解决这一问题。评估了倾斜角,方向,PV容积比和建筑物高度对实现零能耗建筑物(ZEB)的影响。基于自给自足和自耗,对屋顶和外墙的光伏潜力进行了分析和优化。净负荷方差和最大电力进口被用作评估中国不同气候区的光伏系统性能的指标。负荷匹配评估的结果表明,在中国所有气候区中,低层建筑中屋顶光伏系统的发电都可以满足大部分能源需求(至少70%)。在负荷匹配方面,中层建筑的东立面和西立面在昆明和广州比南立面具有优势。必须结合屋顶,南,东和西外墙,以满足高层建筑的ZEB要求。当加热/冷却需求占主导地位时,倾斜角应高于/低于特定位置的纬度。这项研究将有助于设计中国不同气候区的建筑光伏系统。 (C)2019 Elsevier Ltd.保留所有权利。

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