Solution

I. Project Overview
This solution provides a one-stop solution for large-scale ground-mounted photovoltaic (PV) power plants and industrial/commercial distributed PV power plants, offering everything from the mounting system to the overall supporting infrastructure. With high efficiency, stability, and low cost as core objectives, it customizes the PV mounting system and supporting systems based on the climate, topography, and grid conditions of the project site, ensuring safe and stable operation of the power plant for over 25 years and maximizing investment returns.
II. Core Requirements Analysis
- Cost Control: Reduce the overall cost of the mounting system and the project, while also minimizing subsequent operation and maintenance costs.
- Efficiency Improvement: Improve the solar energy reception efficiency of PV modules through optimized mounting design, thereby increasing the power plant's power generation.
- Safety and Stability: The mounting system must be resistant to wind loads, snow loads, and corrosion, adapting to complex outdoor environments.
- Rapid Construction: Simplify the installation process, shorten the construction period, and reduce construction labor costs.
III. Core Solution Contents
1. Customized Photovoltaic Mounting System
We offer various types of mounting systems, including aluminum alloy, zinc-aluminum-magnesium (ZAMg) photovoltaic mounting systems, and tracking mounting systems, allowing selection based on project requirements:
- Material Advantages: Aluminum alloy mounting systems are lightweight and corrosion-resistant; ZAMg mounting systems are high-strength and long-lasting, suitable for harsh environments such as coastal areas and high humidity.
- Structural Optimization: Modular design, standardized components, and convenient installation; tilt angle can be adjusted according to terrain (optimal tilt angle design) to improve solar energy utilization.
- Tracking Mounting System Options: For large ground-mounted power plants, single-axis/dual-axis tracking mounting systems are available, increasing power generation by 15%-30% compared to fixed mounting systems.
2. System Design Optimization
- Site Selection and Layout: Combining topographic mapping, we optimize the spacing of the modules to avoid shading and improve land utilization.
- Load Calculation: Based on local meteorological data such as wind, snow, and earthquakes, we simulate the load on the mounting structure to ensure that the safety factor meets standards.
3. Engineering Construction and Management: We provide full-process construction technical guidance, adopting a "factory prefabrication + on-site assembly" model, and collaborating with a professional installation team to shorten the construction period by more than 30%. We have established a quality control system to supervise key aspects such as support installation accuracy and corrosion protection throughout the entire process.
4. Intelligent Operation and Maintenance Services: The support system is equipped with a status monitoring module, which, combined with the power plant operation and maintenance platform, enables remote fault early warning and regular maintenance reminders, reducing subsequent operation and maintenance costs and extending the service life of the support system.
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