Modular scalable thermal storage reactor and its assembly and heat exchange control method

By dynamically generating mapping arrays and controlling timing through timestamp misalignment, the problems of fluid impact and flow interception interference under modular expansion are solved, thereby improving flow stability and system stability.

CN122408515APending Publication Date: 2026-07-17SHAANXI ZHIYU TIMES ENERGY SAVING TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202610766437.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-05-29
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional control methods in multi-source thermal energy storage and centralized scheduling control of industrial grids face challenges such as frequent hardware changes during modular expansion, untimely response of the control system, fluid impact and flow interference, and the lack of global data structure optimization in existing coordination mechanisms, making it difficult to maintain stability under high-frequency dynamic loads.

Method used

The system controller dynamically generates a mapping array to decouple hardware port associations, uses timestamp misalignment to establish an action timing interlock network, optimizes valve control timing, eliminates multi-loop concurrent flow interference, and keeps the static architecture of the control program unchanged.

Benefits of technology

It achieves reduced hardware reconfiguration work, elimination of fluid dynamics interference, maintenance of flow stability and system steady state, and reduced control complexity under modular expansion conditions.

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Abstract

本发明涉及过程控制系统技术领域,公开了一种模块化可扩容储热反应器及其组装与换热控制方法,控制器读取总线节点标识生成映射数组,采集受控换热单元温压信号并分流存入动态热能资源池;响应流量指令,调用调节阀矩阵参数集完成代数映射计算,生成备选开度数组集合;累加各通道开度差值绝对值确定动作代价参数,选取最小者作为目标控制状态字;解析阀门动作极性并分别载入第一与第二时钟中断队列,利用时间戳错位分步触发下发控制信号,建立时序互锁约束网络,本发明断开端口刚性绑定,基于控制系统拓扑自适应重构能力,免除底层代码重写;将流体动力干涉转化为数据结构寻优,解决阀门并发调节引发的系统控制震荡。
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Citation Information

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