Light up Christmas Eve and protect the safety of photovoltaic power stations around the world
Dec 26 , 2023

The annual Christmas is here again, and the streets are filled with a strong Christmas atmosphere. In addition to the Christmas tree and Santa Claus, there is also white snow in the sky. In this joyous festival, Huge Energy offers the most sincere holiday blessings, so that the magic of the season will fill your heart and bring hope and joy.


snow load


As a supplier of photovoltaic bracket solutions, Huge Energy uses scientific structural design and advanced system solutions to help photovoltaic power stations around the world operate safely during the snow season.


Reasonable structural design is not only conducive to increasing the power generation of photovoltaic power stations, reducing operation and maintenance workload and costs, but most importantly, ensuring the safe and stable operation of the power station. How to choose the right bracket to achieve wind and snow stability for photovoltaic power stations in winter? First, we need to understand a few concepts:


What is snow load and what effect does it have?

Snow load is an architectural term that refers to the calculated snow pressure acting on the top surface of a building or structure. The snow load on the roofs of general industrial and civil buildings is caused by snow and is a spontaneous meteorological load. The size of the snow load value mainly depends on the amount of snowfall in each region based on meteorological data, the roof form, the geometric size of the building, and the normal use of the building.

At present, the snow load value generally accounts for 10%-30% of the self-weight of the entire roof structure. Such a large snow load often causes large deformation of various roof structures, especially in cold and snowy areas. After heavy snowfall, the roof structure will be deformed. The structure not only produces large residual deformations, but sometimes also suffers structural damage. It is more serious in the low recesses of the roof. Due to the accumulation of snow, large overloads are formed in local areas, and the safety of general roof structures is low. Therefore, when carrying out structural design, caution should be taken and the snow load value should be properly handled.


Before designing a Distributed Rooftop Photovoltaic Power Station, it is necessary to carefully calculate the limit values of the roof's constant load and wind and snow load to avoid roof collapse and threaten the safety of people in the building and property losses.


supplier of photovoltaic bracket solutions


Advantages of Huge Energy’s photovoltaic brackets


In-depth analysis of various wind and snow load problems encountered by photovoltaic brackets during power station construction, through CFD simulation analysis of the wind and snow load coefficients of various arrays of photovoltaic modules, and the optimal design solution.


The unique back lock design prevents modules from accumulating snow, greatly increasing the power generation capacity of photovoltaic power stations in extreme weather such as heavy snow.


Innovative cross-section design has better strength, bending resistance and durability. The maximum snow load can reach 3.6KN/m2: the maximum wind load can reach 46m/s.


There are few installation spare parts and a high degree of pre-installation. There is no need for on-site cutting and drilling, which reduces the difficulty and construction time of on-site construction and greatly reduces the project cost.


supplier of photovoltaic bracket solutions


With 10 years of quality assurance and 25 years of design life, Huge Energy has always adhered to the development strategy of "safety first in project design" and achieved a record of zero quality safety accidents in 10 years.


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