摘要: 全球能源互联网的宏观运行特性受到多种因素影响。为分析影响全球能源互联网运行的主要因素之间的相互联系,讨论对内在物理机制进行定量解释的重要性;设计全球能源互联网宏观运行特性仿真方法的基本方案,并对几项重点技术进行讨论;基于多通道能量流网络提出能有效模拟全球能源互联网动态特性的仿真软件的设计方案。 Abstract: The macroscopic operating features(MOF)of the Global Energy Interconnection(GEI)will be affected by many different reasons. The inter-connection between the dominant factors that influenced the operation of the GEI were analyzed and the importance of the quantitative interpretation of the physical mechanism was discussed. The basic scheme of the simulation method for the MOF of the GEI was designed and several research propositions were discussed. A blue print of the future simulation software for the dynamic characteristic of the GEI was established using a multi-pass energy flow network
References
[1]
郭四代. 中国新能源消费与经济增长关系的实证研究[D]. 北京:中国地质大学(北京), 2012. GUO Sidai. Empirical research on the relationship between China's new energy consumption and economic growth[D]. Beijing:China University of Geosciences(Beijing), 2012.
[2]
董晓花,王欣,陈利. 柯布——道格拉斯生产函数理论研究综述[J]. 生产力研究, 2008(3):148-150. DONG Xiaohua, WANG Xin, CHEN Li. Review of Cobb-Douglas production function theory[J]. Productivity Research, 2008(3):148-150.
[3]
GRANGER C W J, NEWBOLD P. Forecasting economic time series(second edition)[M]. San Diego,US: Academic Press, 1986.
[4]
BHATTACHARYA M, BHATTACHARYA S N. Economic growth and energy consumption nexus in Developing world: the case of China and India[J]. Journal of Applied Economics and Business Research, 2014, 4(3): 150-167.
[5]
ASAFUADJAYE J. The relationship between energy consumption, energy prices and economic growth: time series from[J]. Energy Economics, 2000, 22(6):615-625.
[6]
原鹏飞, 吴吉林. 能源价格上涨情景下能源消费与经济波动的综合特征[J]. 统计研究, 2011, 28(9): 57-65. YUAN Pengfei, WU Jilin. The synthetical characteristics of energy consumption and economic fluctuation in the scenes of energy price rising[J]. Statistical Research, 2011, 28(9): 57-65.
[7]
葛颂. 能源消费与经济增长关系的研究综述[J]. 经济界, 2015, 23(3): 82-87. GE Song. A review of researches on the relationship between energy consumption and economic growth[J]. Economic Affairs, 2015, 23(3): 82-87.
[8]
SURI V, CHAPMAN D. Economic growth, trade and energy: implications for the environmental Kuznets curve[J]. Ecological Economics, 1998, 25(2):195-208.
[9]
刘振亚. 全球能源互联网[M]. 北京: 中国电力出版社: 2015.
[10]
孙霞. 中东能源地缘政治的演变与中国的对策[J]. 阿拉伯世界研究, 2013(5):59-71. SUN Xia. The evolution of the energy geopolitics in the Middle East and China's countermeasures[J]. Arab World Studies, 2013(5):59-71.
[11]
张斌. 2020年我国能源电力消费及碳排放强度情景分析[J]. 中国能源, 2009, 31(3):28-31. ZHANG Bin. Scenario analysis on energy consumption and carbon emissions of China in 2020[J]. Energy of China, 2009, 31(3):28-31.
SOYTAS U, SARI R. Energy consumption, economic growth, and carbon emissions: challenges faced by an EU candidate member[J]. Ecological Economics, 2009, 68(6):1667-1675.
[14]
GRANGER C W J, TER?SVIRTA T. Modelling nonlinear economic relationships [M]. Oxford, UK: Oxford University Press, 1993.
[15]
原嫄, 李国平. 产业内部结构升级对碳排放的影响——基于OECD主要成员国面板数据的实证分析[J]. 气候变化研究进展, 2016, 12(4):332-340. YUAN Yuan,LI Guoping The impact of the internal industrial structure evolution:the analysis based on the panel data from main members of OECD[J]. Advances in Climate Change Research, 2016, 12(4):332-340.