一种供热系统效能分析管理方法及系统

By dividing the heating system into main heating nodes and auxiliary heating nodes, establishing a temperature-distance relationship function, identifying heating dead zones, constructing new heating nodes, and adjusting production parameters, the problem of uneven heating was solved, and the rational allocation of heating resources and improvement of user experience were achieved.

CN117823996BActive Publication Date: 2026-07-17北京热力智能控制技术有限责任公司

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
北京热力智能控制技术有限责任公司
Filing Date
2024-02-06
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

How to rationally allocate heating resources, fundamentally balance the heating temperature for users at different distances, solve the problem of uneven heating in the heating system, and improve user experience.

Method used

By obtaining a planar distribution map, heating stations are located and main heating nodes and auxiliary heating nodes are divided. A real-time temperature-distance relationship function is established, the heating range is divided, heating dead zones are identified, and representative points are selected from the heating dead zones. The smallest enclosing circle is integrated to determine whether to build new heating nodes. Production parameters are adjusted to eliminate heating dead zones and a distributed heating system is constructed.

Benefits of technology

It enables the rational allocation of heating resources, improves energy efficiency, enhances user experience, optimizes heating effects, reduces resource waste, and ensures the stability of the heating system.

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明适用于效能分析管理技术领域,尤其涉及一种供热系统效能分析管理方法及系统,方法包括:获取目标区域内的平面分布图,并在平面分布图中定位供热站的位置,对供热站进行划分,确定主供热节点和辅供热节点;确定辅供热节点的供热范围,并在供热范围中,选取至少两个测试站,采集测试站的实时温度,计算测试站与辅供热节点的距离,建立实时温度与距离的关系函数;确定目标温度,并将目标温度输入到关系函数中。本发明通过找出供热死角,可及时发现温度不平衡的供热区域,通过确定新建供热节点的生产参数,可以消除供热死角,合理调配供热资源,从而在根本上解决供热不均匀的问题,进一步提升用户体验,保证供热效果。
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