Containerized optical storage integrated device

By setting windows and window components in containerized photovoltaic-storage integrated equipment and using gas springs to support the flaps to adjust the angle of photovoltaic modules, the problems of low power generation efficiency and airtightness during transportation of containerized energy storage systems have been solved, achieving efficient power generation and flexible transportation.

CN224319304UActive Publication Date: 2026-06-02ARCTECH SOLAR HOLDING CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ARCTECH SOLAR HOLDING CO LTD
Filing Date
2025-06-10
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Existing containerized energy storage systems cannot adjust the angle of photovoltaic modules in real time according to changes in the sun's position, resulting in low power generation efficiency and the inability to guarantee airtightness during transportation.

Method used

Design a containerized photovoltaic-energy storage integrated device. By setting windows and window components on the container, the angle of the photovoltaic modules can be adjusted by using gas springs to support the flaps. The flaps are closed during transportation to ensure airtightness, and the device combines a photovoltaic power generation device and an energy storage system.

Benefits of technology

It enables photovoltaic modules to track their angle in real time according to changes in the sun's position, improving power generation efficiency, while maintaining the airtightness of the container during transportation to meet practical needs.

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    Figure CN224319304U_ABST
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Abstract

A containerized photovoltaic-energy storage integrated device includes a container and a photovoltaic power generation unit. The container includes at least one window and a window assembly corresponding to the window. The window assembly includes a flap and a gas spring. The flap can be closed or opened relative to the window. The gas spring connects to the flap and supports it when it is open relative to the window, keeping it in the open state. The photovoltaic power generation unit includes a first photovoltaic support and photovoltaic modules. The first photovoltaic support includes a first drive mechanism and a first main shaft driven by the first drive mechanism. The first drive mechanism is located inside the container, and the first main shaft is located inside the container and corresponds to the window. The photovoltaic modules are mounted on the first main shaft. This application achieves a clever combination of the photovoltaic support and the energy storage system by opening a window in the container, allowing the first main shaft to pass through the container. The window assembly installed at the container window can open during operation to provide clearance for the main shaft and can close during transportation.
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