一种用于广域集聚建筑群柔性的零碳社区能源优化方法及系统

By constructing a multi-energy complementary system architecture and combining gravity energy storage and soil thermal storage for wide-area aggregation, the efficient and stable operation of the zero-carbon community energy system has been achieved, solving the problems of soil thermal imbalance and real-time power fluctuation, and improving the system's adaptability and energy flow integration efficiency.

CN121936667BActive Publication Date: 2026-07-17CHINA ENERGY CONSTR URBAN INVESTMENT DEV CO LTD +1

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
CHINA ENERGY CONSTR URBAN INVESTMENT DEV CO LTD
Filing Date
2026-01-15
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing zero-carbon community technology solutions suffer from problems such as imbalance of soil hot and cold accumulation, rigid building energy consumption, lack of unified and flexible control methods under wide-area aggregation, insufficient response speed and economy of energy storage methods, and difficulty in dealing with real-time power fluctuations at the second and minute levels, resulting in insufficient system regulation flexibility and energy flow integration.

Method used

By constructing a multi-energy complementary system architecture, gravity energy storage and soil heat storage are aggregated over a wide area. By combining soil heat interaction data and gravity energy storage parameters, an adaptive connection and operation mode is designed to achieve seasonal active thermal energy management and daily adaptive scheduling. Gravity energy storage is used to assist in the regulation of real-time power fluctuations and optimize system planning and scheduling parameters.

Benefits of technology

It has improved the efficiency, stability and zero-carbon operation of the community energy system, enhanced the system's ability to adapt to source-load fluctuations, achieved cross-seasonal thermal energy balance and real-time power balance, and improved the system's flexibility and comprehensive utilization efficiency.

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Abstract

本发明提供了一种用于广域集聚建筑群柔性的零碳社区能源优化方法,该方法设计了多能源系统的基本结构和运行模式,构建了广域集聚柔性的社区能源智慧平台;然后为向智慧平台赋能,制订了季节性‑日‑实时多时间尺度运行策略。其中,季节性策略实施面向土壤热平衡的主动热能管理,充分利用了系统废热来保障运行可持续性和生态效益;日自适应运行策略则结合了土壤热平衡需求和建筑用能柔性,实现了逐日经济调度;实时调度则利用了重力储能快速平抑供需功率波动,从而辅助能源系统爬坡。最后构建了系统优化模型以对关键规划与调度参数算法寻优。该方法在实现社区能源系统的高效、稳定与零碳运行的同时提升了系统应对源‑荷波动的自适应能力。
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