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基于天然气基分布式能源系统智能建筑能源物联网研究 被引量:5

Research on Building Energy Smart Grid Based on Natural Gas Based Distributed Energy System
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摘要 针对常规建筑供能系统存在的不足,充分利用城市既有天然气一次能源供应管网优势,以提高总能系统效率为出发点,本文提出了基于天然气基分布式能源系统智能建筑能源物联网(NDES-SG),并提出了NDES-SG集成基本原则与关键科学问题。为诠释NDES-SG的集成、节能潜力以及系统评价方法,给出了一个范例系统,系统计算结果表明,与常规供能系统相比,NDES-SG实现节能达22.2%。NDES-SG概念为进一步提高能源利用效率与实现新一代的建筑能源供应系统提供了思路。 For the deficiency of conventional building energy supply system, in order to make full use of advantage of existing city primary energy supply pipeline network in natural gas and improve the efficiency of the total energy system, the building energy smart grid based on natural gas based distributed energy system is proposed in this paper. The basic principles of system integration and key scientific issues of NDES-SG system are also given in this paper. To interpret integration, energy saving potential and system evaluation method of NDES-SG, a simplified case is presented. The results show that NDES-SG system saves 22.2% compared with conventional energy supply system. NDES-SG concept provides a guideline for improving further energy efficiency and implementing a new building energy supply system.
出处 《工程热物理学报》 EI CAS CSCD 北大核心 2012年第12期2047-2051,共5页 Journal of Engineering Thermophysics
基金 国家青年自然科学基金项目(No.51106045)
关键词 天然气基分布式能源系统 能源利用效率 智能建筑能源物联网 natural gas based distributed energy system energy etficiency building energy smartgrid
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  • 1倪维斗,陈贞,麻林巍,付峰,李政.有关我国节能的几个战略指导思想[J].中国能源,2009,31(7):5-11. 被引量:9
  • 2MA Linwei, LIU Pei, FU Feng, et al. Integrated EnergyStrategy for the Sustainable Development of China [J].Energy, 2011,36(2): 1143-1154.
  • 3金红光,郑丹星,徐建中.分布式冷热电联产系统与应用[M].北京:中国电力出版社,2008.
  • 4REN Hongbo, ZHOU Weisheng, Nakagami K, et al. Feasi-bility Assessment of Introducing Distributed Energy Re-sources in Urban Areas of China [J]. Applied ThermalEngineering, 2010,30(16): 2584-2593.
  • 5Roque Diaz P, Benito Y R, Parise JAR. Thermoeco-nomic Assessment of a Multi-Engine, Multi-Heat-PumpCCHP (Combined Cooling, Heating and Power Genera-tion) System-A Case Study [J]. Energy, 2010, 35(9): 3540-3550.
  • 6ASHRAE. ASHRAE handbook-System and Equipment[M]. Atlanta. American Society of Heating, Refrigeratingand Air-Conditioning Engineers Inc, 2004.
  • 7杨世明,陶文铨.传热学[M].北京:高等教育出版社,2006:25-28.
  • 8Kemal C, Bedri Y, Omer Q. Evaluation of Energy andExergy Losses in District Heating Network [J]. AppliedThermal Engineering, 2004, 24(7): 1009-1017.
  • 9McNabb A, Weir G J. Heat Losses From an Insulated Pipe[J]. Journal of Mathematical Analysis and Applications,1980, 77(1): 270-277.

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