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Evaluations of Wind Effect on PV Module by Non-uniform Mechanical Loads System and Mean-Surface Pressure Pattern

机译:非均匀机械载荷系统和平均表面压力模式对光伏组件的风影响评估

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The issue of typhoons has received considerable critical attention since the associated strong winds generally damaged PV modules severely. Previous IEC standards examined the effect of static uniform-loads (IEC 61215-2:2016) or dynamic uniform-loads (IEC TS 62782:2016) on PV module in low wind-velocity, but overlooked the moment effect or non-uniform loads due to wind actions on PV module, especially in high wind-velocity. Therefore, the challenge is how to improve the current mechanical loads system to meet the test requirements due to strong wind such as typhoon's action on PV module. This work has successfully developed a new test capacity named non-uniform mechanic loads (NUML) system, which owns eighteen (3x6) independent pneumatic cylinders with maximum loading up to ±12000 Pa (pressure load”+”, suction load”-“). NUML system can operate the different wind effect by the simulated data named mean surface-pressure pattern (MSPP) for PV module. All MSPPs can also be evaluated directly by wind-tunnel experiment and CFD simulation. Results of this study revealed that such severity wind-test for PV module strongly relied on the choices of major environmental factors such as wind velocity (V), wind direction angle (β) and inclined angle (α). In addition, the failures of the module and its fixtures, after NUML test, are closely related to the external forces such as MSPP (V, α, β).
机译:由于相关的强风通常会严重损坏光伏组件,因此台风问题已引起相当多的关注。先前的IEC标准检查了低风速下静态均匀载荷(IEC 61215-2:2016)或动态均匀载荷(IEC TS 62782:2016)对PV模块的影响,但忽略了力矩效应或不均匀载荷由于风对光伏组件的作用,特别是在高风速下。因此,面临的挑战是如何改进当前的机械负载系统,以满足由于台风对PV模块的作用等强风而导致的测试要求。这项工作成功地开发了一种新的测试能力,称为非均匀机械载荷(NUML)系统,该系统拥有十八个(3x6)独立的气缸,最大载荷高达±12000 Pa(压力载荷“ +”,吸力载荷“-”) 。 NUML系统可以通过名为PV模块的平均表面压力模式(MSPP)的模拟数据来操作不同的风效应。还可以通过风洞实验和CFD仿真直接评估所有MSPP。这项研究的结果表明,这种对光伏组件的严酷风试强烈依赖于主要环境因素的选择,例如风速(V),风向角(β)和倾斜角(α)。此外,在NUML测试后,模块及其固定装置的故障与外力如MSPP(V,α,β)密切相关。

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