华电技术 ›› 2021, Vol. 43 ›› Issue (4): 34-38.doi: 10.3969/j.issn.1674-1951.2021.04.006

• 综合能源系统 • 上一篇    下一篇

基于冷热电多能互补的园区综合能源系统设计

朱海东1(), 郝浩1,2, 郑剑1,2,*(), 张庭玉1,2, 陈志凯1,2, 胡恩俊1,2   

  1. 1.南京华盾电力信息安全测评有限公司,南京 210000
    2.国电南京自动化股份有限公司信息技术研究院,南京 210000
  • 收稿日期:2020-04-15 修回日期:2021-03-30 出版日期:2021-04-25 发布日期:2021-04-25
  • 通讯作者: 郑剑
  • 作者简介:朱海东(1974—),男,安徽阜阳人,工程师,从事综合能源服务、电力市场研究方面的工作(E-mail:171171531@qq.com)。

Design of integrated energy system for parks based on complementation of cold, heat and electricity

ZHU Haidong1(), HAO Hao1,2, ZHENG Jian1,2,*(), ZHANG Tingyu1,2, CHEN Zhikai1,2, HU Enjun1,2   

  1. 1. Nanjing Huadun Power Information Security Assessment Company Limited,Nanjing 210000,China
    2. Information Technology Research Institute of Guodian Nanjing Automation Company Limited,Nanjing 210000,China
  • Received:2020-04-15 Revised:2021-03-30 Online:2021-04-25 Published:2021-04-25
  • Contact: ZHENG Jian

摘要:

分析了国内外综合能源的发展情况,针对传统冷、热、电等多种能源系统独立运行,不能优化协同等相关问题,以工业园区为场景,提出了一种基于冷热电多能互补的综合能源信息化集成解决方案。结合某园区的实际情况,建立一套面向园区、兼顾政府等多种用户需求的冷热电多能互补的综合能源系统,介绍了该系统的整体架构,数据接入、数据流转以及平台功能等方面的设计,最终实现能源流、信息流、价值流的交换与互动。

关键词: 综合能源, 多能互补, 控制平台, 优化运行, 服务平台, 碳排放, 冷热电三联供, 能源利用率

Abstract:

The analysis on the development of integrated energy at home and abroad shows that traditional mode of running cold,heat,electricity and other energy systems independently cannot achieve the optimizing and coordinating operation.Taking an industrial park as the example,an integrated energy information comprehensive solution based on the of cold,heat and electricity is proposed.Taking the actual situation of the park into consideration,a set of integrated energy system is established for the users of the park,as well as the government,to meet their demand for cold,heat and electricity.The overall architecture,data access,data flow and platform functions of the system were described in detail.This system realizes the interaction of energy flow,information flow and value flow.

Key words: integrated energy, multi-energy complementation, control platform, optimizing operation, service platform, carbon emission, CCHP, energy utilization rate

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