• Resources Science
  • Vol. 42, Issue 8, 1630 (2020)
Yiqiang WANG1、2、* and Yuan ZHAO3
Author Affiliations
  • 1School of Geography and Tourism, Qufu Normal University, Rizhao 276826, China
  • 2Rizhao Key Laboratory of Territory Spatial Planning and Ecological Construction, Rizhao 276826, China
  • 3Jinling College, Nanjing Normal University, Nanjing 210046, China
  • show less
    DOI: 10.18402/resci.2020.08.16 Cite this Article
    Yiqiang WANG, Yuan ZHAO. Evolution of the global pattern of natural gas flow nodes and its resource effect[J]. Resources Science, 2020, 42(8): 1630 Copy Citation Text show less
    References

    [1] BP. BP世界能源统计年鉴(2007-2019)[EB/OL]. (2019-07-30)[2019-12-13]. https://www.bp.com/zh_cn/china/home/news/reports/statistical-review-2019.html. [BP. BP World Energy Statistics Yearbook (2007-2019)[EB/OL]. (2019-07-30)[2019-12-13]. https://www.bp.com/zh_cn/china/home/news/reports/statistical-review-2019.html. ] [BP.BP World Energy Statistics Yearbook (2007-2019)[EB/OL]. (2019-07-30)[2019-12-13].https://www.bp.com/zh_cn/china/home/news/reports/statistical-review-2019.html.] https://www.bp.com/zh_cn/china/home/news/reports/statistical-review-2019.html

    [2] 成升魁, 闵庆文, 闫丽珍. 从静态的断面分析到动态的过程评价: 兼论资源流动的研究内容与方法[J]. 自然资源学报, 2005,20(3):407-414. [Cheng SK, Min QW, Yan LZ. From static assessment to dynamic processing: Resources flow and its contents and methods[J]. Journal of Natural Resources, 2005,20(3):407-414.] [Cheng S K, Min Q W, Yan L Z. From static assessment to dynamic processing: Resources flow and its contents and methods[J]. Journal of Natural Resources, 2005, 20(3): 407-414.]

    [3] 沈镭, 刘晓洁. 资源流研究的理论与方法探析[J]. 资源科学, 2006,28(3):9-16. [ShenL, Liu XJ. Discussion on theories and methods of resources flow[J]. Resources Science, 2006,28(3):9-16.] [Shen L, Liu X J. Discussion on theories and methods of resources flow[J]. Resources Science, 2006, 28(3): 9-16.]

    [4] 成升魁, 沈镭, 闵庆文, 等. 资源科学研究的新视角: 自然资源流动过程的研究[J]. 资源科学, 2006,28(2):199-200. [Cheng SK, ShenL, Min QW, et al. New views on resources science: Study on natural resources flow processing[J]. Resources Science, 2006,28(2):199-200.] [Cheng S K, Shen L, Min Q W, et al. New views on resources science: Study on natural resources flow processing[J]. Resources Science, 2006, 28(2): 199-200.]

    [5] 马杰. 大国博弈下的天然气贸易态势及中国对策分析[J]. 江西社会科学, 2018, (11):62-67. [MaJ. Natural gas trade situation and China’s countermeasures under superpower games[J]. Jiangxi Social Sciences, 2018, (11):62-67.] [Ma J. Natural gas trade situation and China’s countermeasures under superpower games[J]. Jiangxi Social Sciences, 2018, (11): 62-67.]

    [6] Chen ZH, An HZ, Gao XY et al. Competition pattern of the global liquefied natural gas (LNG) trade by network analysis[J]. Journal of Natural Gas Science and Engineering, 33, 769-776(2016).

    [7] 刘劲松. 基于社会网络分析的世界天然气贸易格局演化[J]. 经济地理, 2016,36(12):89-95. [Liu JS. Evolution of world natural gas trade pattern based on social network analysis[J]. Economic Geography, 2016,36(12):89-95.] [Liu J S. Evolution of world natural gas trade pattern based on social network analysis[J]. Economic Geography, 2016, 36(12): 89-95.]

    [8] 马远, 徐俐俐. “一带一路”沿线国家天然气贸易网络结构及影响因素[J]. 世界经济研究, 2017, (3):109-122. [MaY, Xu LL. Network structure and influence factors of gas trade about the countries along“the Belt and Road”[J]. World Economy Studies, 2017, (3):109-122.] [Ma Y, Xu L L. Network structure and influence factors of gas trade about the countries along“the Belt and Road”[J]. World Economy Studies, 2017, (3): 109-122.]

    [9] 沈镭, 刘立涛, 高天明, 等. 中国能源资源的数量、流动与功能分区[J]. 资源科学, 2012,34(9):1611-1621. [ShenL, Liu LT, Gao TM, et al. The quantity, flow and functional zoning of energy resources in China[J]. Resources Science, 2012,34(9):1611-1621.] [Shen L, Liu L T, Gao T M, et al. The quantity, flow and functional zoning of energy resources in China[J]. Resources Science, 2012, 34(9): 1611-1621.]

    [10] 张新林, 赵媛, 许昕, 等. 中国天然气资源流动优势度时空演变特征[J]. 地理研究, 2016,35(8):1457-1469. [Zhang XL, ZhaoY, XuX, et al. Analysis of temporal and spatial evolution pattern of gas flow superiority in China[J]. Geographical Research, 2016,35(8):1457-1469.] [Zhang X L, Zhao Y, Xu X, et al. Analysis of temporal and spatial evolution pattern of gas flow superiority in China[J]. Geographical Research, 2016, 35(8): 1457-1469.]

    [11] 王宜强, 朱明博, 赵媛. 中国天然气流动体系及其动态变化特征[J]. 世界地理研究, 2019,28(5):153-164. [Wang YQ, Zhu MB, ZhaoY. Scale system and dynamic change characteristics of natural gas flow in China[J]. World Regional Studies, 2019,28(5):153-164.] [Wang Y Q, Zhu M B, Zhao Y. Scale system and dynamic change characteristics of natural gas flow in China[J]. World Regional Studies, 2019, 28(5): 153-164.]

    [12] 王宁, 桑广书. 中国天然气进口的空间格局分析[J]. 世界地理研究, 2010,19(2):148-154. [WangN, Sang GS. The analysis of China’s natural gas imports spatial pattern[J]. World Regional Studies, 2010,19(2):148-154.] [Wang N, Sang G S. The analysis of China’s natural gas imports spatial pattern[J]. World Regional Studies, 2010, 19(2): 148-154.]

    [13] 肖建忠, 赵银玲. 中国液化天然气进口流量与贸易潜力: 基于贸易引力模型[J]. 北京理工大学学报(社会科学版), 2016,18(5):16-23. [ Xiao JZ, Zhao YL. The analysis of LNG import flow and trade potential of China: Based on trade gravity model research[J]. Journal of Beijing Institute of Technology (Social Sciences Edition), 2016,18(5):16-23.] [ Xiao J Z, Zhao Y L. The analysis of LNG import flow and trade potential of China: Based on trade gravity model research[J]. Journal of Beijing Institute of Technology (Social Sciences Edition), 2016, 18(5): 16-23.]

    [14] 孙聆轩, 吴晓明, 李建平, 等. 中国天然气进口空间格局演进及优化路径[J]. 天然气工业, 2016,36(2):125-130. [Sun LX, Wu XM, Li JP, et al. Evolution and optimization of China’s natural gas import spatial framework[J]. Natural Gas Industry, 2016,36(2):125-130.] [Sun L X, Wu X M, Li J P, et al. Evolution and optimization of China’s natural gas import spatial framework[J]. Natural Gas Industry, 2016, 36(2): 125-130.]

    [15] 陈晓鹏, 成升魁, 吴良. 中亚主要能源出口国地缘政治风险的度量与评价[J]. 资源科学, 2018,40(4):773-783. [Chen XP, Cheng SK, WuL. Quantitative measurement and evaluation of geopolitical risks confronting Central Asian major energy exporting countries[J]. Resources Science, 2018,40(4):773-783.] [Chen X P, Cheng S K, Wu L. Quantitative measurement and evaluation of geopolitical risks confronting Central Asian major energy exporting countries[J]. Resources Science, 2018, 40(4): 773-783.]

    [16] 郝洪昌, 邢万里. 中日韩印天然气贸易多元化和竞争关系研究[J]. 中国矿业, 2019,28(11):1-8. [Hao HC, Xing WL. Research on diversification and competition relationship among China, Japan, Korea and India[J]. China Mining Magazine, 2019,28(11):1-8.] [Hao H C, Xing W L. Research on diversification and competition relationship among China, Japan, Korea and India[J]. China Mining Magazine, 2019, 28(11): 1-8.]

    [17] 王宜强, 赵媛. 碳基能源资源流动节点的确定及其研究内容[J]. 资源科学, 2018,40(7):1459-1472. [Wang YQ, ZhaoY. Nodal study of carbon-based energy resources flow[J]. Resources Science, 2018,40(7):1459-1472.] [Wang Y Q, Zhao Y. Nodal study of carbon-based energy resources flow[J]. Resources Science, 2018, 40(7): 1459-1472.]

    [18] Paul HF. A note on Lefever’s“standard deviational ellipse”[J]. American Journal of Sociology, 33, 94-98(1927).

    [19] Benjamin KS, AnnF. Examining the complications of global energy governance[J]. Journal of Energy & Natural Resources Law, 30, 235-263(2012).

    [20] 徐铭辰. 全球天然气治理话语权与中国的对策分析[J]. 东北亚论坛, 2018,27(3):24-35. [Xu MC. On the discourse power of global gas governance and China’s countermeasures[J]. Northeast Asia Forum, 2018,27(3):24-35.] [Xu M C. On the discourse power of global gas governance and China’s countermeasures[J]. Northeast Asia Forum, 2018, 27(3): 24-35.]

    Yiqiang WANG, Yuan ZHAO. Evolution of the global pattern of natural gas flow nodes and its resource effect[J]. Resources Science, 2020, 42(8): 1630
    Download Citation