Integrated energy storage mobile supercritical carbon dioxide power generation system

By using standardized container design and intelligent self-organizing network technology, the system solves the problems of insufficient interfaces and coordination in the transportation and deployment of existing supercritical carbon dioxide power generation systems, realizes multi-mode transportation compatibility and rapid deployment, and improves the system's intelligence and environmental adaptability.

CN122408516APending Publication Date: 2026-07-17BEIJING DA ZHENG YONG YE TECH CO LTD
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Patent Information

Application Number
CN202610783434.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-06-02
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing supercritical carbon dioxide power generation systems suffer from insufficient standardized interfaces during transportation and deployment, making them incompatible with multimodal transport. They also lack intelligent combination capabilities between modules, resulting in long deployment times and an inability to achieve rapid connection and automatic collaboration.

Method used

It adopts a standardized container design, is equipped with lifting, forklift, and stacking interfaces, has a built-in intelligent multi-container identification and self-organizing network module, uses a self-sealing quick-installation interface and environmental sensors, supports remote digital twin platform connection, and realizes automatic module identification, networking and parameter coordination.

Benefits of technology

The system achieves multi-mode transportation compatibility, shortens deployment time, improves the intelligent collaboration capabilities between modules, supports rapid connection and remote management, and ensures efficient operation in extreme environments.

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Abstract

本发明为一种集成储能的移动式超临界二氧化碳发电系统,属于超临界二氧化碳发电技术领域。包括至少一个储热模块集装箱和至少一个发电模块集装箱,储热模块集装箱和发电模块集装箱的箱体均具备吊装接口、叉运接口和堆叠接口;储热模块集装箱和发电模块集装箱的外部均配置有通信与控制接口,通信与控制接口内置智能多箱识别与自组网模块,用于在多个储热模块集装箱和 / 或多个发电模块集装箱连接后,自动完成拓扑识别、主从分配与运行参数协同配置。本发明箱体标准化接口满足吊装、叉运、堆叠要求,真正兼容公路、铁路、船舶及直升机吊运,填补了现有方案运输模式单一的不足。
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