研究论文

全球地球科学研究的可视化分析

  • 艾鑫 ,
  • 马明国 ,
  • 王雪梅 ,
  • 匡鸿海
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  • 1.西南大学地理科学学院,重庆金佛山喀斯特生态系统国家野外科学观测研究站,重庆 400715
    2.西南大学地理科学学院,重庆市遥感大数据应用工程研究中心,重庆 400715
    3.西南大学图书馆,重庆 400715
艾鑫(1995-),女,辽宁丹东人,硕士研究生,主要从事GIS技术分析与应用研究. E-mail:ax19951114@email.swu.edu.cn

收稿日期: 2020-09-15

  修回日期: 2020-11-15

  网络出版日期: 2021-02-09

A Visual Analysis of Global Geoscience Research

  • Xin Ai ,
  • Mingguo Ma ,
  • Xuemei Wang ,
  • Honghai Kuang
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  • 1.Chongqing Jinfo Mountain Karst Ecosystem National Observation and Research Station,School of Geographical Sciences,Southwest University,Chongqing 400715,China
    2.Chongqing Engineering Research Center for Remote Sensing Big Data Application,School of Geographical Sciences,Southwest University,Chongqing 400715,China
    3.Southwest University Library,Chongqing 400715,China
Ai Xin (1995-), female, Dandong City, Liaoning Province, Master student. Research areas include analysis and application of GIS technology. E-mail: ax19951114@email.swu.edu.cn

Received date: 2020-09-15

  Revised date: 2020-11-15

  Online published: 2021-02-09

摘要

文献计量学可以对学科发展态势进行信息挖掘和分析,可视化是文献计量学发展的热点方向之一。基于文献计量方法和GIS的空间分析功能分析了 1994—2018年全球地球科学领域的发展态势,并将发文量、主要发文作者和研究机构的地理分布、研究重心时空迁移等研究结果可视化。结果表明,全球地球科学研究的科研产出明显增多。地球科学研究的发文重心逐渐往北半球的东南方向迁移。国际合作在逐年加强,越来越多的国家参与到地球科学领域的研究中,美国在地球科学领域的研究中处于核心地位,中国的科研论文实力显著提高。中国地质大学的Santosh发表的论文最多,赵国春的论文受关注度最高,国家科学院和高校为主要论文高产机构。研究结果可以为地球科学学科建设和相关研究提供参考。

本文引用格式

艾鑫 , 马明国 , 王雪梅 , 匡鸿海 . 全球地球科学研究的可视化分析[J]. 地球科学进展, 2020 , 35(12) : 1270 -1280 . DOI: 10.11867/j.issn.1001-8166.2020.107

Abstract

Bibliometrics is an important methodology to mine and analyze the information of the discipline development trend. Visualization is one of the hot topics in the development of bibliometrics. Based on the bibliometric methods and the spatial analysis function of GIS, the development trend of global geoscience research from 1994 to 2018 was comprehensively analyzed and the visual analysis mainly focused on the global geoscience articles, the geographical distribution of the main productive authors and main research institutions, and the spatiotemporal migration of the centroids of global geoscience research. The results showed that the global scientific output of geoscience increased significantly from 1994 to 2018. The centroids of geoscience articles gradually migrated to the southeast of the northern hemisphere, and the changing trend was mainly reflected in the longitude direction. The international collaboration was deepening year and year, more and more countries have participated in the geoscience research. The USA played an important role in global geoscience research and the scientific research ability of China has improved significantly. Santosh M of China University of Geosciences has published the most articles, while articles produced by Zhao Guochun have received the highest attention. The Chinese Academy of Sciences and Chinese universities and colleges were the main productive institutions. The results can provide beneficial reference for the discipline construction of geoscience and relative research.

参考文献

1 Shi Jing, Zhu Weiwei, Wang Xin, et al. Bibliometrics analysis on the trend of international earth sciences in recent 5 years[J]. Acta Geologica Sinica, 2017,91(12): 290-297.
1 史静, 朱薇薇, 王鑫,等. 近5年国际地球科学领域发展态势文献计量分析[J]. 地质学报, 2017,91(12): 290-297.
2 Wang Xuemei, Zhang Zhiqiang, Ma Mingguo. World contribution of Chinese geoscience and its temporal and spatial changes[J]. Bulletin of National Natural Science Foundation of China, 2018, 32(3): 328-335.
2 王雪梅, 张志强, 马明国. 中国地球科学研究的世界贡献及其时空变化[J]. 中国科学基金, 2018, 32(3): 328-335.
3 Hersperger A M, Bürgi M. Going beyond landscape change description: Quantifying the importance of driving forces of landscape change in a Central Europe case study[J]. Land Use Policy, 2009, 26(3): 640-648.
4 Wang Xuemei, Li Xin, Zhang Zhiqiang, et al. Spatial display of bibliometric indicators using information system[J]. Library and Information Service, 2014, 58(3): 72-77.
4 王雪梅, 李新, 张志强, 等.文献计量指标的GIS空间展现[J]. 图书情报工作, 2014, 58(3): 72-77.
5 Liu Xingjian, Zhang Liang, Hong Song. Global biodiversity research during 1900-2009: A bibliometric analysis[J]. Biodiversity & Conservation, 2011, 20(4): 807-826.
6 Zhang Xinmin, Estoque Ronald C, Xie Hualin, et al. Bibliometric analysis of highly cited articles on ecosystem services[J]. PLoS One, 2019, 14(2): e0210707.
7 Hirsch J E. An index to quantify an individual's scientific research output that takes into account the effect of multiple coauthorship[J]. Scientometrics, 2010, 85(3): 741-754.
8 Narin F N, Mark P C. National publication and citation comparisons[J]. Journal of American Society for Information Science, 2010, 26(2): 80-93.
9 Frame D J, Francis N, Mark P C. The distribution of world science[J]. Social Studies of Science, 1977, 7(4): 400.
10 Frenken K, Hardeman S, Hoekman J. Spatial scientometrics: Towards a cumulative research program[J]. Journal of Informetrics, 2009, 3(3): 222-232.
11 Matthiessen C W, Winkel Schwarz A. Scientific Centres in Europe: An analysis of research strength and patterns of specialisation based on bibliometric indicators[J]. Urban Studies, 1999, 36(3): 453-477.
12 Bonaccorsi A, Daraio C. Exploring size and agglomeration effects on public research productivity[J]. Scientometrics, 2005, 63(1): 87-120.
13 Allen R S. Interdisciplinary research: A literature-based examination of disciplinary intersections using a common Tool, Geographic Information System (GIS) [J]. Science Technology Libraries, 2001, 21(3/4): 191-209. DOI:10.1300/J122v21n03\_12.
14 Wang Yanwen, Hong Song, Wang Yifei, et al. What is the difference in global research on Central Asia before and after the collapse of the USSR: A bibliometric analysis[J]. Scientometrics, 2019, 119(2): 909-930.
15 Lin Li, Yu Lin, Zhu Haihong, et al. A bibliometric and visual analysis of global geo-ontology research[J]. Computers & Geosciences, 2017, 99: 1-8.
16 Wang Xuemei, Zhang Zhiqiang, Li Xin. Tendency analysis of the international studies of Qinghai-Tibet Plateau using MKD and GIS[J]. Journal of the China Society for Scientific and Technical Information, 2015, 34(9): 930-937.
16 王雪梅, 张志强, 李新. 基于知识图谱和GIS分析的国际青藏高原研究态势分析[J]. 情报学报, 2015, 34(9): 930-937.
17 Bornmann Lutz, Waltman Ludo. The detection of "hot regions" in the geography of science—A visualization approach by using density maps[J]. Journal of Informetrics, 2011, 5(4): 547-553.
18 Bansal A R, Anand S P, Mita Rajaram, et al. Depth to the Bottom of Magnetic Sources (DBMS) from aeromagnetic data of Central India using modified centroid method for fractal distribution of sources[J]. Tectonophysics, 2013, 603(9): 155-161.
19 Yang Mai, Wang Xuemei. A bibliometrics analysis of world libraries' papers based on GIS[J]. Remote Sensing Technology and Application, 2015, 30(4): 819-824.
19 杨麦, 王雪梅. 基于GIS的图书馆文献计量分析[J]. 遥感技术与应用, 2015, 30(4): 819-824.
20 Zhou Ping, Loet Leydesdorff. The emergence of China as a leading nation in science[J]. Research Policy, 2009, 35(1): 83-104.
21 Gao Chundong, Wu Xiuping. International development trend analysis of water governance based on bibliometrics[J]. Advances in Earth Science, 2019, 34(3): 324-332.
21 高春东, 吴秀平. 基于文献计量的水治理研究国际发展态势分析[J]. 地球科学进展, 2019, 34(3): 324-332.
22 Wang Xuemei, Wei Yongping, Ma Mingguo, et al. Research progress of the Heihe River Basin based on bibliometrics[J]. Advances in Earth Science, 2019, 34(3): 316-323.
22 王雪梅, 尉永平, 马明国, 等. 基于文献计量学的黑河流域研究进展分析[J]. 地球科学进展, 2019, 34(3): 316-323.
23 Batty M. The geography of scientific citation[J]. Environment & Planning A, 2003, 35(5): 761-765.
24 Wu Aizhi. Trends of the geographical distribution of the core journals in China[J]. Journal of Academic Library, 2015(3): 96-100.
24 吴爱芝.中文核心期刊的地理分布及其变动态势研究[J]. 大学图书馆学报, 2015(3): 96-100.
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