Home / Projects / Project / Japanese / Aluminum Alloy Ground Solar Bracket-Fukui Prefecture Japan 2457KW

Aluminum Alloy Ground Solar Bracket-Fukui Prefecture Japan 2457KW

Views: 0     Author: Site Editor     Publish Time: 2023-12-05      Origin: Site


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Location: Toheiji in Fukui Prefecture, Japan, an area known for its vast flat terrain and abundant sunshine resources, providing ideal conditions for solar power projects.

Installed capacity: 2,457KW. The project aims to utilize Fukui Prefecture's abundant solar energy resources to provide large-scale clean energy to the local community while promoting sustainable regional economic development.

Technical Specifications and Design

Technical Specifications:

Racking material: high-strength aluminum alloy is used to ensure the lightweight, durable and corrosion-resistant properties of the racking.

Bracket Structure: Designed to be modular for easy transportation, installation and maintenance.

design features:

The bracket design takes into account the topographical characteristics of the earth's flat terrain to ensure stability and safety of the installation.

System design allows for future expansion to accommodate growth in energy demand.

Advanced windproof design is used to accommodate possible wind problems on earth flat sites.

Installation Process:

The project team began with detailed topographic mapping to ensure the accuracy and safety of the bracket installation.

The brackets were installed using prefabricated modules, which were accurately placed and fixed by cranes.

During the installation process, safety regulations were strictly followed to ensure the safety of construction personnel and equipment.

After completing the racking installation, system debugging is carried out to ensure the optimal performance of the solar panels.

Project Management:

The project is planned, executed and monitored using project management software to ensure that the project is carried out according to plan.

A dedicated project management team is set up to coordinate the various construction phases and solve problems during the construction process.

Regular project meetings are held to ensure that all parties involved have a clear understanding of project progress and issues.

Quality Control:

Quality standards and specifications are strictly followed in every step of the process, from material procurement to the installation process.

During the installation process, the stability of the racking and the mounting position of the solar panels are accurately measured and adjusted.

Upon completion of installation, system performance tests are conducted to ensure that design requirements are met.

Environmental Impact Assessment:

During the planning stage of the project, a detailed environmental impact assessment was conducted to ensure that the project's impact on the local ecosystem was minimized.

Measures, such as the use of environmentally friendly materials and the reduction of construction noise, were taken to minimize the impact on local residents and the ecosystem.

During project implementation, environmental changes are continuously monitored to ensure that environmental impacts are effectively controlled.

Economic benefit analysis:

The project is expected to achieve cost recovery within five years through revenue from electricity sales and government subsidies.

In the long term, solar power will provide investors with stable economic returns while reducing dependence on fossil fuels and lowering energy costs.

The project will also help increase the energy self-sufficiency of the local community and promote sustainable economic development.

Kseng Solar specializes in providing solar racking and tracking systems for the residential, commercial and utility-scale solar application.

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