耐久性
威布尔分布
材料科学
复合材料
光伏系统
断裂(地质)
公制(单位)
夹层玻璃
风力工程
模式(计算机接口)
机械负荷
失效模式及影响分析
结构工程
材料性能
荷载剖面图
压力(语言学)
负载电阻
结构荷载
计算机科学
极限载荷
试验方法
概率分布
作者
Nick Bosco,Martin Springer
标识
DOI:10.1109/jphotov.2025.3625245
摘要
In this work, we present a method to evaluate the equivalency between any module mechanical loading conditions. The method is developed to address the specific failure mode of glass fracture and is based on Weibull analysis and weakest link theory. It considers the varying stress profile across the module to calculate the probability of glass fracture, which is used as the metric of equivalency. An idealized nonuniform loading scheme is employed to demonstrate the method and introduce the concept of the equivalent uniform load factor: a factor applied to the maximum pressure of the nonuniform load to obtain the equivalent uniform load value. It is demonstrated that this factor is less than unity for all nonuniform load cases considered, including snow and various characters of wind loading. These significant results suggest that uniform loading may be reliably, and practically, employed to evaluate photovoltaic module glass for nonuniform loading durability.
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