Structural analysis in PV systems: ensuring safety and investment longevity

Text will discuss best practices for safety and performance of PV systems
Structural analysis in photovoltaic systems: ensuring the safety and longevity of your investment
Proper structural analysis of these systems is crucial to ensure safety.

The growing adoption of photovoltaic solar energy in Brazil has driven the installation of systems in various types of buildings and land. However, proper structural analysis of these systems is crucial to ensure the safety, efficiency and durability of the projects. 

This article addresses the importance of structural analysis in Photovoltaic systems, highlighting the main factors to be considered, such as wind loads, dead weight and the integrity of the ing structures. In addition, the relevant standards and regulations will be discussed, as well as best practices to ensure the safety and optimal performance of photovoltaic systems.

Photovoltaic solar energy has established itself as a viable and sustainable alternative for generating electricity in Brazil. The installation of photovoltaic systems on roofs, facades, land and even bodies of water has become increasingly common. However, proper structural analysis of these systems is essential to ensure that they withstand various climatic and operational conditions, avoiding accidents and losses.

By ensuring the safety, efficiency and durability of systems, structural analysis helps to maximize return on investment and promote solar energy as a clean and reliable source of electricity.

Want to read the full article? it now for free 24ª edition of the Magazine Canal Solar.

The opinions and information expressed are the sole responsibility of the author and do not necessarily represent the official position of the author. Canal Solar.

Photo by Eliasafe Schwertner
Eliasafe Schwertner
Civil engineer and structural expert. Director of the civil engineering company ESS8 consultancy, focusing on expertise, structural recovery, public and private contracts. With his team, he has performed structural analysis on more than 30 thousand roofs for receiving photovoltaic modules.

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