引用本文:管霖,江泽涛,唐宗顺.基于集中质-量调节的综合能源系统供能管网管径优化设计方法及系统经济性分析[J].电力自动化设备,2017,37(6):
GUAN Lin,JIANG Zetao,TANG Zongshun.Optimal diameter sizing based on centralized quality-quantity regulation and economic analysis of IES piping network[J].Electric Power Automation Equipment,2017,37(6):
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基于集中质-量调节的综合能源系统供能管网管径优化设计方法及系统经济性分析
管霖1, 江泽涛1, 唐宗顺1,2
1.华南理工大学 电力学院,广东 广州 510641;2.广州供电局有限公司,广东 广州 510620
摘要:
供能管网的投资和运行损耗对综合能源系统的工程可行性和经济性有重要的影响,因此提出了一套基于集中质-量调节运行模拟的综合能源系统供能管网管径优化设计方法。运行调节根据当前时刻负荷比最大的用户的负荷情况调节综合能源站的供水流量和温度,较好地贴近总负荷曲线;优化设计方法以等年值总投资最小为目标选择最优管径组合,综合考虑了系统初始投资和长期运行费用,提高了总体经济性。选择广州中新知识城某商住混合区作为算例,验证了所提方法的有效性,并分析了供能调节下的运行成本和综合能源系统供能半径对管网规划的影响。
关键词:  综合能源系统  供能管网  集中质量-流量调节  管径优化设计  经济性分析
DOI:10.16081/j.issn.1006-6047.2017.06.011
分类号:TM761
基金项目:国家自然科学基金重点项目(51437006)
Optimal diameter sizing based on centralized quality-quantity regulation and economic analysis of IES piping network
GUAN Lin1, JIANG Zetao1, TANG Zongshun1,2
1.Electric Power College, South China University of Technology, Guangzhou 510641, China;2.Guangzhou Power Supply Co. Ltd.,Guangzhou 510620, China
Abstract:
The feasibility and economy of an IES(Integrated Energy System) project is greatly affected by the investment and operational cost of its piping network, for which, a method of optimal diameter sizing based on the centralized quality-quantity regulation is proposed. The temperature and quantity of the water flow supplied by the energy station is regulated according to the load of its user with the maximum load ratio at present moment, in that the total load curve is better matched. With the minimum equivalent annual total cost as its objective, the proposed method selects the optimal combination of pipe diameters to comprehensively consider the initial investment and the long-term operational cost for enhancing the overall economic performance. With the Sino-Singapore Guangzhou Knowledge City as an example, the effectiveness of the proposed method is verified, the operational cost under energy-supply regulation and the influence of IES energy-supply radius on the piping network planning being analyzed.
Key words:  integrated energy system  energy-supply network  centralized quality-quantity regulation  optimal pipe diameter sizing  economic analysis

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