Application of 3D WebGIS and real-time technique in earthquake information publishing and visualization
详细信息    查看全文
  • 作者:Boren Li ; Jianping Wu ; Mao Pan ; Jing Huang
  • 关键词:Earthquake ; Real time ; Virtual globe ; WebGIS
  • 刊名:Earthquake Science
  • 出版年:2015
  • 出版时间:June 2015
  • 年:2015
  • 卷:28
  • 期:3
  • 页码:223-231
  • 全文大小:2,154 KB
  • 参考文献:Abdalla R, Tao V (2004) Applications of 3D web-based GIS in earthquake disasters modeling and visualization. Geospat Inf Res Bridg Pac Atl 2:814-17
    Bell G, Parisi A, Mark P (1995) The virtual reality modeling language: version 1.0 specification. http://?www.?web3d.?org/?x3d/?specifications/?vrml/?VRML1.-/?index.?html . The VRML Consortium Incorporated. Accessed 2014
    Cao Z, Wang W, Ma D, Su J, Gao Z and Han Y (2009) Optimum path analysis of post-earthquake transportation considering multi-objective based on GIS. In: International conference on transportation engineering 2009, ASCE, pp 1104-109
    CENC (2014) Latest earthquakes. http://?www.?csndmc.?ac.?cn/-/span> . China Earthquake Networks Center(CENC). Accessed 2014
    Chen K, Yu Y, Gao M (2010) Research on ShakeMap system in terms of the site effect. Earthq Res China 26(1):92-02 (in Chinese with English abstract)
    Cubellis E, Carlino S (2004) Management of historical seismic data using GIS: the Island of Ischia (Southern Italy). Nat Hazards 33(3):379-93View Article
    GeoServer (2014) GeoServer user manual. http://?docs.?geoserver.?org/-.-.-/?user/-/span> .?Open Source Geospatial Foundation (OSGeo). Accessed 2013
    Gong J, Li X, Wu H (2014) Spatiotemporal data model for real-time GIS. Acta Geodaetica et Cartographic Sinica 43(3):226-32 (in Chinese with English abstract)
    GoogleEarth (2015) Google Earth. https://?earth.?google.?com/-/span> . Google Inc. Accessed 2015
    Hashemi M, Alesheikh AA (2011) A GIS-based earthquake damage assessment and settlement methodology. Soil Dyn Earthq Eng 31(11):1607-617View Article
    IRIS (2015) Seismic monitor. http://?ds.?iris.?edu/?seismon/-/span> .?Incorporated Research Institutions for Seismology (IRIS). Accessed 2015
    JMA (2015) Earthquake information. http://?www.?jma.?go.?jp/?en/?quake .?Japan Meteorological Agency,Tokyo, Japan (JMA).?Accessed 2015
    Kresse W, Danko DM (2012) Springer handbook of geographic information. Springer, Berlin, pp 118-20View Article
    Nadi S, Delavar MR (2003) Spatio-temporal modeling of dynamic phenomena in GIS. Scandinavian Research Conference on Geographical Information Science—ScanGIS, Espoo, Finland, pp 215-25
    NASA World Wind (2014) World wind. http://?worldwind.?arc.?nasa.?gov .?The National Aeronautics and Space Administration (NASA). Accessed 2014
    Obe R, Hsu L (2011) PostGIS 2.0 raster and 3D support enhancements (report). North Carolina GIS conference
    OSGeo (2010) PostGIS 2.0.0 manual. http://?postgis.?net/?docs/?manual-2.-/-/span>
    Paar P, Clasen M (2007) Earth, landscape, biotope, plant. Interactive visualisation with biosphere 3D. International conference on urban planning and regional development in the information society. Eigenverlag des Vereins CORP, Vienna, May 20-3, 2007
    Peng H, Wu Z, Wu YM, Yu S, Zhang D, Huang W (2011) Developing a prototype earthquake early warning system in the Beijing capital region. Seismol Res Lett 82(3):394-03View Article
    Pessina V, Meroni F (2009) A WebGIS tool for seismic hazard scenarios and risk analysis. Soil Dyn Earthq Eng 29(9):1274-281View Article
    Saadatseresht M, Mansourian A, Taleai M (2009) Evacuation planning using multiobjective evolutionary optimization approach. Eur J Oper Res 198(1):305-14View Article
    Sato HP, Harp EL (2009) Interpretation of earthquake-induced landslides triggered by the 12 May 2008, M7.9 Wenchuan earthquake in the Beichuan area, Sichuan Province, China using satellite imagery and Google Earth. Landslides 6(2):153-59View Article
    Shi R, Xu H, Chen H (2008) Application of 3D VirtualWebGIS in earthquake disaster prevention and mitigation. J Seismol Res 31(2):193-96 (in Chinese with English abstract)
    USGS/NEIC (2014) Latest earthquakes. http://?earthquake.?usgs.?gov/?earthquakes/?map/-/span> .?National Earthquake Information Center (NEIC). Accessed 2014
    WebGL (2013) WebGL specification, version 1.0.2. https://?www.?khronos.?org/?registry/?webgl/?specs/-.-.-/-/span> . Accessed 1 Mar 2013
    World Wind Java SDK (2011) NASA World Wind Java SDK. http://?worldwind.?arc.?nasa.?gov/?java/-/span> . The National Aeronautics and Space Administration (NASA). Accessed 2011
    X3D (2015) X3d. Wikipedia. http://?en.?wikipedia.?org/?w/?index.?php??title=?X3D&?oldid=-43179479 . Wikimdedia project. Accessed 2015
    Yang C, Huang Z (2009) Earthquake instant messenger system in China. Seismol Geomagn Obs Res 30(5):133-38 (in Chinese with English abstract)
    Yu L, Gong P (2012) Google Earth as a virtual globe tool for earth science applications at the global scale: progress and perspectives. Int J Remote Sens 33(12):3966-986View Article
    Zerger A, Smith DI (2003) Impediments to using GIS for real-time disaster decision support. Comput Environ Urban Syst 27(2):123-41View Article
  • 作者单位:Boren Li (1)
    Jianping Wu (1)
    Mao Pan (2)
    Jing Huang (1)

    1. Institute of Geophysics, China Earthquake Administration, Bejing, 100081, China
    2. School of Earth and Space Sciences, Peking University, Beijng, China
  • 刊物主题:Geophysics/Geodesy;
  • 出版者:Springer Berlin Heidelberg
  • ISSN:1867-8777
文摘
In hazard management, earthquake researchers have utilized GIS to ease the process of managing disasters. Researchers use WebGIS to assess hazards and seismic risk. Although they can provide a visual analysis platform based on GIS technology, they lack a general description in the extensibility of WebGIS for processing dynamic data, especially real-time data. In this paper, we propose a novel approach for real-time 3D visual earthquake information publishing model based on WebGIS and digital globe to improve the ability of processing real-time data in systems based on WebGIS. On the basis of the model, we implement a real-time 3D earthquake information publishing system—EqMap3D. The system can not only publish real-time earthquake information but also display these data and their background geoscience information in a 3D scene. It provides a powerful tool for display, analysis, and decision-making for researchers and administrators. It also facilitates better communication between researchers engaged in geosciences and the interested public.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700