一种泳池热泵与生活热水的废热回收智能集成控制系统

By using an intelligent integrated control system with multi-point sensors and dynamic scheduling algorithms, the problems of insufficient energy efficiency improvement and waste heat recovery in traditional swimming pool heat pumps and domestic hot water systems have been solved, achieving efficient and stable energy management and waste heat utilization, and reducing energy consumption and carbon emissions.

CN121498253BActive Publication Date: 2026-07-17GUANGDONG NEW ENERGY TECH DEV

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
GUANGDONG NEW ENERGY TECH DEV
Filing Date
2025-12-03
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional swimming pool heat pumps and domestic hot water systems suffer from limited energy efficiency improvements, insufficient or excessive waste heat recovery, lack of dynamic control and energy efficiency assessment during operation, leading to energy waste and unstable system operation.

Method used

Design an intelligent integrated control system for waste heat recovery from swimming pool heat pumps and domestic hot water. Construct a real-time monitoring network using multi-point temperature and flow sensors, and combine it with an energy efficiency assessment and recovery decision module to achieve dynamic scheduling and heating mode optimization, avoid frequent start-ups and shutdowns, and ensure system stability and efficiency.

Benefits of technology

It achieves high energy efficiency operation under different load and climate conditions, reduces the overall energy consumption and carbon emissions of the system, ensures the continuity and comfort of domestic hot water supply, and maximizes the recovery and utilization of waste heat.

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明提出一种泳池热泵与生活热水的废热回收智能集成控制系统,系统包括:数据采集模块、能效评估与回收决策模块、智能调度执行模块及加热模式优化模块。通过实时监测热泵运行参数与水箱热分层状态,动态评估废热可利用性,并结合热泵能效变化趋势与水箱顶部温度加速度判断系统稳定性,智能控制三通阀切换废热预热路径;在废热回收状态下,基于板式换热器温差与流量确定废热参与程度,结合水箱上下温差及顶部温度变化趋势调节主加热功率,实现高效、稳定、节能的生活热水供应。本发明显著提升能源综合利用效率,降低碳排放,适用于绿色建筑与智慧能源场景。
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