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Decomposition Analysis of Sectoral Energy Use in Beijing (1981-2005) Using the LMDI Method
引用本文:Liu Chunlan,;Xie Gaodi,;Cai Bofeng. Decomposition Analysis of Sectoral Energy Use in Beijing (1981-2005) Using the LMDI Method[J]. 中国人口.资源与环境(英文版), 2008, 6(2): 49-54
作者姓名:Liu Chunlan,  Xie Gaodi,  Cai Bofeng
作者单位:[1]Beijing Municipal Research Institute of Environmental Protection, Beijing 100037, China [2]Institute of Geographical Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China [3]不详, Chinese Academy of Sciences, Beijing 100101, China
基金项目:国家自然科学基金,Chinese Academy of Sciences Interna-tional Partnership Project Human Activities and Ecosystem Changes 
摘    要:This paper aims to identify the main driving force for changes of total primary energy consumption in Beijing during the period of 1981-2005. Sectoral energy use was investigated when regional economic structure changed significantly. The changes of total primary energy consumption in Beijing are decomposed into production effects, structural effects and intensity effects using the additive version of the logarithmic mean Divisia index (LMDI) method. Aggregate decomposition analysis showed that the major contributor of total effect was made by the production effect followed by the intensity effect, and the structural effect was relatively insignificant. The total and production effects were all positive. In contrast, the structural effect and intensity effect were all negative. Sectoral decomposition investigation indicated that the most effective way to slow down the growth rate of total primary energy consumption (TPEC) was to reduce the production of the energy-intensive industrial sectors and improving industrial energy intensity. The results show that in this period, Beijing's economy has undergone a transformation from an industrial to a service economy. However, the structures of sectoral energy use have not been changed yet, and energy demand should be increasing until the energy-intensive industrial production to be reduced and energy intensity of the region reaches a peak. As sequence energy consumption data of sub-sectors are not available, only the fundamental three sectors are considered: agriculture, industry and service. However, further decomposition into secondary and tertiary sectors is definitely needed for detailed investigations.

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Decomposition Analysis of Sectoral Energy Use in Beijing (1981-2005) Using the LMDI Method
Liu Chunlan,Xie Gaodi,Cai Bofeng. Decomposition Analysis of Sectoral Energy Use in Beijing (1981-2005) Using the LMDI Method[J]. Chinese JOurnal of Population Resources and Environment, 2008, 6(2): 49-54
Authors:Liu Chunlan  Xie Gaodi  Cai Bofeng
Affiliation:1. Beijing Municipal Research Institute of Environmental Protection, Beijing 100037, China
2. Institute of Geographical Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China
Abstract:This paper aims to identify the main driving force for changes of total primary enexgy consumption in Beijing during the period of 1981-2005. Sectoral energy use was investigated when regional economic structure changed significantly. The changes of total primary energy consumption in Beijing are decomposed into production effects, structural effects and intensity effects using the additive version of the logarithmic mean Divisia index (LMDI) method. Aggregate decomposition analysis showed that the major contributor of total effect was made by the production effect fol-lowed by the intensity effect, and the structural effect was rela-tively insignificant. The total and production effects were all posi-tive. In contrast, the structural effect and intensity effect were all negative. Sectoral decomposition investigation indicated that the most effective way to slow down the growth rate of total primary energy consumption (TPEC) was to reduce the production of the energy-intensive industrial sectors and improving industrial en-ergy intensity. The results show that in this period, Beijing's economy has undergone a transformation from an industrial to a service economy. However, the structures of sectoral energy use have not been changed yet, and energy demand should be in-creasing until the energy-intensive industrial production to be reduced and energy intensity of the region reaches a peal As sequence energy consumption data of sub-sectors are not available, only the fundamental three sectors are considered: agriculture, industry and service. However, further decomposition into secon-dary and tertiary sectors is definitely needed for detailed investi-gations.
Keywords:decomposition  sectoral energy consumption  loga-rithmic mean Divisia index (LMDI)  Beijing
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