Wind Load Design of Photovoltaic Power Plants by Comparison of Design Codes and Wind Tunnel Tests

O. Bogdan, D. Creţu
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引用次数: 4

Abstract

Abstract Wind load design of the ground-mounted photovoltaic (PV) power plants requires interpretation of the design code considering the particularities of these structures. The PV power plants consist on systems of several solar panels. Wind load pressure coefficient evaluation, by design code, for a single solar panel considered as a canopy roof, neglect the group effect and the air permeability of the system. On the other hand, the canopy roofs are structures with medium serviceability, but the PV power plants are structures with low serviceability. This paper discuss the difficulties of the wind load design for the PV power plants ground mounted in Romania and compares the Romanian, German, European and American wind design code specifications with the parameters provided by the wind tunnel test, for this type of structures. For Romanian wind load design an evolution of the 1990, 2004 and 2012 editions of the design codes specifications is also studied. Evaluation of the internal resultants for the structural elements of the PV panel, considering the pressure coefficients and the force coefficients, conducts to different results. Further code explanations and design specifications are required for wind design of the PV power plants.
设计规范与风洞试验比较的光伏电站风荷载设计
摘要:地面光伏电站的风荷载设计需要考虑其结构的特殊性,对设计规范进行解释。光伏电站由几个太阳能电池板组成。按照设计规范对单个太阳能板作为顶棚进行风荷载压力系数评估,忽略组效应和系统透气性。另一方面,顶棚是中等使用能力的结构,而光伏电站是低使用能力的结构。本文讨论了罗马尼亚地面光伏电站风荷载设计的难点,并对罗马尼亚、德国、欧美的风电设计规范与风洞试验提供的该类结构风荷载设计参数进行了比较。对于罗马尼亚风荷载设计,还研究了1990年、2004年和2012年版设计规范的演变。在考虑压力系数和力系数的情况下,对光伏板结构构件的内部结果进行了评价,得出了不同的结果。光伏电站风力设计需要进一步的规范说明和设计规范。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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