DOE OSTI · 2530586
Agrivoltaic Racking Design Optimization Based on Wind and Snow Loading Finite Element Analysis
Abstract
The racking structure of photovoltaic (PV) systems plays a critical role in ensuring the PV panels generate power properly as it provides integral structural support and sometimes even solar tracking ability. Distinct applications of PV systems require variations of racking structure designs, which yield different mechanical performances under external loading conditions from the environment, such as heavy wind and snow. Past works, such as Reddy et al. [1], have analyzed the pressure effects of wind and snow loading on the racking structure of conventional rooftop and utility PV systems, but there is little knowledge of how various agrivoltaic racking systems perform, in terms of stress and strain, under the same loading conditions. There is also a knowledge gap in the industry on a set of optimized agrivoltaic racking design standards. This study investigates the mechanical performance of various existing racking systems and proposes novel designs that are optimized for agrivoltaics applications under wind and snow loading.
Keep this discovery
Explore connections, maps & timelines
Liao, Quanhuan, Williams, Henry J, Zhang, K Max. 2024-06-17. Agrivoltaic Racking Design Optimization Based on Wind and Snow Loading Finite Element Analysis. https://www.osti.gov/biblio/2530586
Cite the original work for its findings. Save a collection to share your selection of sources.