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Comparison and mechanism analysis of wind-induced vibration
These findings provide insights for wind-resistant design optimization of flexible PV supports.
Experimental study on wind-induced vibration and aerodynamic
This study investigates the wind-induced vibrations (WIVs) of photovoltaic (PV) modules possessing unique characteristics such as lightweight construction, low frequency, and susceptibility
A Review on Aerodynamic Characteristics and Wind-Induced
Relevant studies have been carried out, using either physical or numerical simulation tools, and the effect of a series of governing parameters, such as spacing ratio, angle of attack,
Title of paper
Ma et al. (2021) investigated the effects of wind direction, inclination angle, spacing ratio and installation position on the wind loads of the flexible PV modules support structures.
Effect of tilt angle on wind-induced vibration in pre-stressed flexible
This study presented a comprehensive numerical assessment focused on understanding the impact of panel tilt angle on wind-induced vibrations in flexible cable-supported photovoltaic
Wind induced structural response analysis of
Wind-induced vibration in photovoltaic tracking support can lead to structural instability and even component fractures under extreme conditions.
Static and Dynamic Response Analysis of Flexible Photovoltaic
This research focused on the safety and critical wind speed of flexible PV mounting structures, as well as the calculation of wind-vibration coefficients, and proposed reinforcement
Analysis of the response of wind-induced vibrations on flexible
This article investigates a flexible photovoltaic bracket''s response to wind vibration. A finite element model is established using SAP2000 software for time course analysis.
Investigation of wind-induced vibration evolution mechanisms in long
By examining aerodynamic vibration characteristics at smaller scales, the study reveals the most adverse vibration evolution mechanisms for the flexible PV.
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