☀️Product Overview
The solar floating mounting system is a device that generates electricity by floating photovoltaic modules on water. The stent is designed to improve the safety, power generation efficiency and environmental friendliness of photovoltaic power plants, while taking into account the special environment and conditions of the water body.
The design of the brackets should take into account water conditions, flood level, installation Angle and density of the photovoltaic module and other factors to ensure the safe operation and good performance of the power station.
Land Conservation
Established on the water, does not occupy land resources, can reduce the cost of land acquisition.
Increases Power Generation
Water has a cooling effect on photovoltaic modules, which can inhibit the rise of the surface temperature of the components. Experiments show power generation can increase by approximately 14%.
Environmental Protection
Covering the surface of the water with solar panels can reduce evaporation and inhibit algae blooms, protecting water resources.
Frequently Asked Questions
1. Are you a manufacturer or a trading company?
We are a professional manufacturer with our own dedicated factory, ensuring competitive prices and strict quality control for all our floating solar systems.
2. What is your standard lead time?
Generally, production takes 10-15 days after order confirmation. For large-scale commercial projects, we can negotiate a specific delivery schedule to meet your needs.
3. Do you provide customized design support?
Yes, we offer free technical drawings and customized engineering designs to meet the specific requirements of your water body and project site.
4. Is there a Minimum Order Quantity (MOQ)?
We do not have a strict Minimum Order Quantity requirement. We can provide single samples for technical evaluation and quality testing.
5. How long is the service life of the floating system?
Our HDPE floating mounting systems come with a 10-year warranty and are designed for a service life of up to 25 years in aquatic environments.
6. How does the system handle extreme wind and snow?
The system is engineered to withstand wind loads of up to 60m/s and snow loads of 1.4kN/M2, ensuring stability during harsh weather conditions.