• Journal of Natural Resources
  • Vol. 35, Issue 11, 2696 (2020)
Ze HE1、2、3、4, Yan-nan ZHOU1、2、3, and Yi LIU1、2、3、*
Author Affiliations
  • 1Key Laboratory of Regional Sustainable Development Modeling/Institute of Geographic Sciences and Natural Resources Research, CAS, Beijing 100101, China
  • 2College of Resources and Environment, University of Chinese Academy of Sciences, Beijing 100049, China
  • 3Institute of Strategy Research of Guangdong-Hong Kong-Macao Greater Bay Area, Guangzhou 510070, China
  • 4Department of Human Geography and Spatial Planning, Utrecht University, Utrecht 3584CB, Netherlands
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    DOI: 10.31497/zrzyxb.20201111 Cite this Article
    Ze HE, Yan-nan ZHOU, Yi LIU. System dynamics simulation on China's energy consumption in 2050: Based on the policy scenarios of key industries[J]. Journal of Natural Resources, 2020, 35(11): 2696 Copy Citation Text show less
    References

    [1] 曹斌, 李文涛, 杜国敏, 等. 2030年后世界能源将走向何方? : 全球主要能源展望报告分析. 国际石油经济, 2016,24(11):8-15. [ CAOB, LI WT, DU GM, et al. World energy trend to 2030: Analysis of major global energy outlook reports. International Petroleum Economics, 2016,24(11):8-15.] [CAO B, LI W T, DU G M, et al. World energy trend to 2030: Analysis of major global energy outlook reports. International Petroleum Economics, 2016, 24(11): 8-15.]

    [2] 戴彦德, 田智宇, 朱跃中, 等. 重塑能源: 面向2050年的中国能源消费和生产革命路线图. 经济研究参考, 2016, (21):3-14. [ DAI YD, TIAN ZY, ZHU YZ, et al. A roadmap for China's energy consumption and production revolution by 2050. Review of Economic Research, 2016, (21):3-14.] [DAI Y D, TIAN Z Y, ZHU Y Z, et al. A roadmap for China's energy consumption and production revolution by 2050. Review of Economic Research, 2016, (21): 3-14.]

    [3] 何建坤. 中国能源革命与低碳发展的战略选择. 武汉大学学报: 哲学社会科学版, 2015,68(1):5-12. [ HE JK. The strategic choice of Chinese energy revolution and low carbon development. Wuhan University Journal: Philosophy & Social Sciences, 2015,68(1):5-12.] [HE J K. The strategic choice of Chinese energy revolution and low carbon development. Wuhan University Journal: Philosophy & Social Sciences, 2015, 68(1): 5-12.]

    [4] LIUQ, CHENY, TIANC et al. Strategic deliberation on development of low- carbon energy system in China[J]. Advances in Climate Change Research, 7, 26-34(2016).

    [5] 姜克隽, 胡秀莲, 庄幸, 等. 中国2050年低碳情景和低碳发展之路. 中外能源, 2009,14(6):1-6. [ JIANG KJ, HU XL, ZHUANGX, et al. China's low-carbon scenarios and roadmap for 2050. Sino-global Energy, 2009,14(6):1-6.] [JIANG K J, HU X L, ZHUANG X, et al. China's low-carbon scenarios and roadmap for 2050. Sino-global Energy, 2009, 14(6): 1-6.]

    [6] 国家发展和改革委员会能源研究所课题组. 中国2050年低碳发展之路: 能源需求暨碳排放情景分析. 北京: 科学出版社, 2009. [ Energy Research Institute National Development and Reform Commission Research Group. China's Low Carbon Development Pathways by 2050: Scenario Analysis of Energy Demand and Carbon Emissions. Beijing: Science Press, 2009.] [Energy Research Institute National Development and Reform Commission Research Group. China's Low Carbon Development Pathways by 2050: Scenario Analysis of Energy Demand and Carbon Emissions. Beijing: Science Press, 2009.]

    [7] 中国社会科学院数量经济与技术经济研究所课题组. 国家能源发展战略研究. 中国社会科学院, 2011. [ Institute of Quantitative & Technical Economics, Chinese Academy of Social Sciences Research Group. National energy development strategy research. Chinese Academy of Social Sciences, 2011.] [Institute of Quantitative & Technical Economics, Chinese Academy of Social Sciences Research Group. National energy development strategy research. Chinese Academy of Social Sciences, 2011.]

    [8] 中国石油技术经济研究院. 2050年世界与中国能源展望. http://etri.cnpc.com.cn/etri/qydt/201607/0d251da8cfef4c569aee255899d9a037.shtml, 2019-12-10. [ China's Institute of Petroleum Technology and Economics. . Energy outlook for the world and China in 2050. http://etri.cnpc.com.cn/etri/qydt/201607/0d251da8cfef4c569aee255899d9a037.shtml, 2019-12-10.] [China's Institute of Petroleum Technology and Economics. Energy outlook for the world and China in 2050. http://etri.cnpc.com.cn/etri/qydt/201607/0d251da8cfef4c569aee255899d9a037.shtml, 2019-12-10.] http://etri.cnpc.com.cn/etri/qydt/201607/0d251da8cfef4c569aee255899d9a037.shtml

    [9] 樊杰, 李平星. 基于城市化的中国能源消费前景分析及对碳排放的相关思考. 地球科学进展, 2011,26(1):57-65. [ FANJ, LI PX. Analysis on the future energy consumption and preliminary discussion on carbon emission of China from the perspective urbanization. Advances in Earth Science, 2011,26(1):57-65.] [FAN J, LI P X. Analysis on the future energy consumption and preliminary discussion on carbon emission of China from the perspective urbanization. Advances in Earth Science, 2011, 26(1): 57-65.]

    [10] 沈镭, 刘立涛, 王礼茂, 等. 2050年中国能源消费的情景预测. 自然资源学报, 2015,30(3):361-373. [ SHENL, LIU LT, WANG LM, et al. 2050 energy consumption projection for China. Journal of Natural Resources, 2015,30(3):361-373.] [SHEN L, LIU L T, WANG L M, et al. 2050 energy consumption projection for China. Journal of Natural Resources, 2015, 30(3): 361-373.]

    [11] 刘强, 王恰. 中国的能源革命: 供给侧改革与结构优化(2017—2050). 国际石油经济, 2017,25(8):1-14. [ LIUQ, WANGQ. China's energy revolution: Reform of supply-side and structural optimization (2017-2050). International Petroleum Economics, 2017,25(8):1-14.] [LIU Q, WANG Q. China's energy revolution: Reform of supply-side and structural optimization (2017-2050). International Petroleum Economics, 2017, 25(8): 1-14.]

    [12] 姜克隽, 胡秀莲, 刘强, 等. 中国2050年低碳发展情景研究. 见: 2050中国能源和碳排放研究课题组. 2050中国能源和碳排放报告. 北京: 科学出版社, 2009: 753-820. [ JIANG KJ, HU XL, LIUQ, et al.China's low carbon development pathways by 2050: Scenario analysis of energy demand and carbon emissions. In: Study Group of China Energy and Carbon Emissions. 2050 China Energy and CO2 Emissions Report. Beijing: Science Press, 2009: 753-820.] [JIANG K J, HU X L, LIU Q, et al. China's low carbon development pathways by 2050: Scenario analysis of energy demand and carbon emissions. In: Study Group of China Energy and Carbon Emissions. 2050 China Energy and CO2 Emissions Report. Beijing: Science Press, 2009: 753-820.]

    [13] 刘强, 田川, 郑晓奇, 等. 中国电力行业碳减排相关政策评价. 资源科学, 2017,39(12):2368-2376. [ LIUQ, TIANC, ZHENG XQ, et al. Evaluation of CO2 emission reduction policies in China's power sector. Resources Science, 2017,39(12):2368-2376.] [LIU Q, TIAN C, ZHENG X Q, et al. Evaluation of CO2 emission reduction policies in China's power sector. Resources Science, 2017, 39(12): 2368-2376.]

    [14] 国家应对气候变化战略研究和国际合作中心, 国家发展和改革委员会能源研究所和美国能源创新. 中国气候与能源政策方案—定量分析及与“十三五”规划期的政策建议. https://china.energypolicy.solutions/docs/20160703_ExecutiveSummary_CN.PDF, 2019-11-22. [ National Center for Strategic Research and International Cooperation on Climate Change, Energy Research Institute of National Development and Reform Commission and U.S. Energy Innovation. China's climate and energy policy program-quantitative analysis and policy recommendations for the 13th five-year plan period. https://china.energypolicy.solutions/docs/20160703_ExecutiveSummary_CN.PDF, 2019-11-22.] [National Center for Strategic Research and International Cooperation on Climate Change, Energy Research Institute of National Development and Reform Commission and U.S. Energy Innovation. China's climate and energy policy program-quantitative analysis and policy recommendations for the 13th five-year plan period. https://china.energypolicy.solutions/docs/20160703_ExecutiveSummary_CN.PDF, 2019-11-22.] https://china.energypolicy.solutions/docs/20160703_ExecutiveSummary_CN.PDF

    [15] 梁巧梅, 魏一鸣, 范英, 等. 中国能源需求和能源强度预测的情景分析模型及其应用. 管理学报, 2004,1(1):62-67. [ LIANG QM, WEI YM, FANY, et al. A scenario analysis of China's energy requirement and energy intensity: Model and its applications. Chinese Journal of Management, 2004,1(1):62-67.] [LIANG Q M, WEI Y M, FAN Y, et al. A scenario analysis of China's energy requirement and energy intensity: Model and its applications. Chinese Journal of Management, 2004, 1(1): 62-67.]

    [16] 刘强, 陈怡, 滕飞, 等. 中国深度脱碳路径及政策分析. 中国人口·资源与环境, 2017,27(9):162-170. [ LIUQ, CHENY, TENGF, et al. Pathway and policy analysis to China's deep decarbonization. China Population, Resources and Environment, 2017,27(9):162-170.] [LIU Q, CHEN Y, TENG F, et al. Pathway and policy analysis to China's deep decarbonization. China Population, Resources and Environment, 2017, 27(9): 162-170.]

    [17] 姜克隽. 一个强有力的2050碳减排目标将非常有利于中国的社会经济发展. 气候变化研究进展, 2019,15(1):103-106. [ JIANG KJ. An ambitious CO2 mitigation target will bring much benefit to China's social economy development. Climate Change Research, 2019,15(1):103-106.] [JIANG K J. An ambitious CO2 mitigation target will bring much benefit to China's social economy development. Climate Change Research, 2019, 15(1): 103-106.]

    [18] 刘毅. 沿海地区能源供需保障与解决途径. 地理学报, 1999,54(6):509-515. [ LIUY. Measures for problems of energy issues and supply in China's coastal region. Acta Geographica Sinica, 1999,54(6):509-515.] [LIU Y. Measures for problems of energy issues and supply in China's coastal region. Acta Geographica Sinica, 1999, 54(6): 509-515.]

    [19] 李博, 张文忠, 余建辉, 等. 能源富集区市域经济发展水平空间格局演变: 基于晋陕蒙甘宁地区. 自然资源学报, 2020,35(3):668-682. [ LIB, ZHANG WZ, YU JH, et al. Evolution of spatial pattern of urban economic development in energy-rich regions: Based on the Jin-Shan and Meng-Ganning Regions. Journal of Natural Resources, 2020,35(3):668-682.] [LI B, ZHANG W Z , YU J H, et al. Evolution of spatial pattern of urban economic development in energy-rich regions: Based on the Jin-Shan and Meng-Ganning Regions. Journal of Natural Resources, 2020, 35(3): 668-682.]

    [20] 李兰兰, 徐婷婷, 李方一, 等. 中国居民天然气消费重心迁移路径及增长动因分解. 自然资源学报, 2017,32(4):606-619. [ LI LL, XU TT, LI FY, et al. Migration path and growth factor decomposition of natural gas consumption in China. Journal of Natural Resources, 2017,32(4):606-619.] [LI L L, XU T T, LI F Y, et al. Migration path and growth factor decomposition of natural gas consumption in China. Journal of Natural Resources, 2017, 32(4): 606-619.]

    [21] 王礼茂. 中国资源安全战略: 以石油为例. 资源科学, 2002,24(1):5-10. [ WANG LM. Resources security strategies in China: The case of oil resources. Resources Science, 2002,24(1):5-10.] [WANG L M. Resources security strategies in China: The case of oil resources. Resources Science, 2002, 24(1): 5-10.]

    [22] 史丹. 全球能源格局变化及对中国能源安全的挑战. 中外能源, 2013,18(2):1-7. [ SHID. Changes in global energy supply landscape and implications to China′s energy security. Sino-Global Energy, 2013,18(2):1-7.] [SHI D. Changes in global energy supply landscape and implications to China′s energy security. Sino-Global Energy, 2013, 18(2): 1-7.]

    [23] 杨宇, 刘毅. 世界能源地理研究进展及学科发展展望. 地理科学进展, 2013,32(5):818-830. [ YANGY, LIUY. Progress and prospect of world energy geography in China. Progress in Geography, 2013,32(5):818-830.] [YANG Y, LIU Y. Progress and prospect of world energy geography in China. Progress in Geography, 2013, 32(5): 818-830.]

    [24] 渠立权, 骆华松, 胡志丁, 等. 中国石油资源安全评价及保障措施. 世界地理研究, 2017,26(4):11-19. [ QU LQ, LUO HS, HU ZD, et al. Security evaluation of oil resources and measures on safeguard. World Regional Studies, 2017,26(4):11-19.] [QU L Q, LUO H S, HU Z D, et al. Security evaluation of oil resources and measures on safeguard. World Regional Studies, 2017, 26(4): 11-19.]

    [25] DNVG L. Energy Transition Outlook 2019[J](2019). https://eto.dnvgl.com/2019/index.html#ETO2019-top

    [26] 吴巧生, 王华, 成金华. 中国可持续发展油气资源安全态势. 中国工业经济, 2003, (12):48-56. [ WU QS, WANGH, CHENG JH. Sustainable developing oil and gas resource security situation in China. China Industrial Economy, 2003, (12):48-56.] [WU Q S, WANG H , CHENG J H. Sustainable developing oil and gas resource security situation in China. China Industrial Economy, 2003, (12): 48-56.]

    [27] 郎一环, 王礼茂. 石油地缘政治格局的演变态势及中国的政策响应. 资源科学, 2008,30(12):1778-1883. [ LANG YH, WANG LM. Evolution of petroleum geopolitical patterns and China's policy response. Resources Science, 2008,30(12):1778-1783.] [LANG Y H, WANG L M. Evolution of petroleum geopolitical patterns and China's policy response. Resources Science, 2008, 30(12): 1778-1783.]

    [28] 毛汉英. 中国与俄罗斯及中亚五国能源合作前景展望. 地理科学进展, 2013,32(10):1433-1443. [ MAO HY. Prospects of energy cooperation of China with Russia and Central Asian countries. Progress in Geography, 2013,32(10):1433-1443.] [MAO H Y. Prospects of energy cooperation of China with Russia and Central Asian countries. Progress in Geography, 2013, 32(10): 1433-1443.]

    [29] 杨宇, 何则, 刘毅. “丝绸之路经济带”中国与中亚国家油气贸易合作的现状、问题与对策. 中国科学院院刊, 2018,33(6):575-584. [ YANGY, HEZ, LIUY. Global energy cooperation between China and Central Asia: Current situation, risks, and countermeasures. Bulletin of Chinese Academy of Sciences, 2018,33(6):575-584.] [YANG Y, HE Z, LIU Y. Global energy cooperation between China and Central Asia: Current situation, risks, and countermeasures. Bulletin of Chinese Academy of Sciences, 2018, 33(6): 575-584.]

    [30] 闫世刚, 刘曙光. 新能源安全观下的中国能源外交. 国际问题研究, 2014, (2):109-117. [ YAN SG, LIU SG. China's energy diplomacy under the new energy security concept. International Studies, 2014, (2):109-117.] [YAN S G, LIU S G. China's energy diplomacy under the new energy security concept. International Studies, 2014, (2): 109-117.]

    [31] 余建华. 世界能源政治与中国国际能源合作. 长春: 长春出版社, 2011. [ YU JH. World Energy Politics and China's Energy International Cooperation. Changchun: Changchun Press, 2011.] [YU J H. World Energy Politics and China's Energy International Cooperation. Changchun: Changchun Press, 2011.]

    [32] 申玉铭. 经济全球化与国家能源安全. 世界地理研究, 2003, (3):78-83. [ SHEN YM. Economic globalization and the national energy security. World Regional Study, 2003, (3):78-83.] [SHEN Y M. Economic globalization and the national energy security. World Regional Study, 2003, (3): 78-83.]

    Ze HE, Yan-nan ZHOU, Yi LIU. System dynamics simulation on China's energy consumption in 2050: Based on the policy scenarios of key industries[J]. Journal of Natural Resources, 2020, 35(11): 2696
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