基于空气源热泵利用大气中能量进行建筑供暖的系统及方法

By monitoring environmental parameters and weather forecasts, the air source heat pump is controlled to operate during its most efficient periods. Combined with the building envelope energy storage system, the problem of low energy efficiency of air source heat pumps in cold regions is solved. This enables cross-time scheduling and geographical expansion of thermal energy, improves system energy efficiency, and helps to address global warming.

CN117704468BActive Publication Date: 2026-07-17XIAN ATMOSPHERIC TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
XIAN ATMOSPHERIC TECH CO LTD
Filing Date
2023-12-28
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Air source heat pumps suffer from reduced heating capacity, low energy efficiency ratio, and frost formation on outdoor heat exchangers when used in cold and frigid regions, which limits their global application.

Method used

By monitoring indoor and outdoor environmental parameters and weather forecasts, the daily cumulative heat consumption of the building is calculated, the air source heat pump is controlled to operate during the most efficient period, and the energy storage characteristics of the building envelope energy storage system are utilized to achieve cross-time scheduling of heat energy. Combined with low-temperature heating technology, the system energy efficiency is improved and the applicable area is expanded.

Benefits of technology

It improves the energy efficiency of air source heat pump systems, expands their applicable geographical and climatic regions, enables them to maintain comfortable indoor temperatures in non-heating areas, and directly reduces atmospheric temperature by extracting atmospheric energy, thus mitigating global warming.

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明公开了一种基于空气源热泵利用大气中能量进行建筑供暖的系统及方法,获得供暖设计日建筑日总耗热量,配置空气源热泵和热量传输管道;获取天气预报室外逐时温度和建筑围护结构储能系统信息;计算一天建筑日总耗热量和某时刻开始供暖的空气源热泵的累计供热量,根据各时刻累计供热量对应的供暖累计运行时间,获得空气源热泵供暖日最佳运行时间;确定一天供暖开机时刻和关机时刻。根据不同地域气象维持建筑恒温所需要日累计耗热量来设计建筑供暖系统,智能控制系统控制一天最佳运行时段启动收集大气中的热能,输送至建筑围护结构储能系统提升建筑室内温度并储存在建筑围护结构储能系统中,实现热能24小时内调度,使建筑在全天达到舒适温度。
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