Research of Virtual Simulation Scenario Editor for Earthquake Tabletop Exercise

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Abstract:

Earthquake is a small probability of unexpected events. Most of the emergency management personals did not experience the earthquake. They may cause flaws in the post-earthquake emergency response process, if they do not take part in earthquake emergency exercise. Traditional tabletop exercise, however, cannot provide a relatively realistic earthquake disaster scenes and vivid emergency background, so they need the virtual simulation exercises and drills for emergency management personnel to provide a real disaster site that is very similar to a drill. This paper presents system structure, function composition, scenario editing process of virtual reality simulation of earthquake emergency exercise and discusses a scenario editor based on OSG. Scenario Editor of earthquake emergency can control the drill and quickly rebuild the drill scene and improve emergency management personnel to design urban 3D scenes and earthquake and secondary disasters events.

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Periodical:

Advanced Materials Research (Volumes 989-994)

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4551-4555

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July 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Cui Zhonghui, Xu Yongzhi, Zhang Maojun : Research and implementation of the earthquake rescue virtual simulation scenario editor. micro computer information, volume twenty-second(2006), pp.298-301.

Google Scholar

[2] Jia Qunlin, Chen Xin, Zhou Bo Jia; Earthquake rescue training the application of virtual simulation technology ;. Beijing: Contemporary World Publishing House. (2009).

Google Scholar

[3] Xiao Tianyuan, Zhang Yanyun, Chen Jiadong: introduction to system simulation. Tsinghua University press, (2000).

Google Scholar

[4] Li Ni, Tang bravery, Lei Zhengdong Web based simulation scenario management system : Chinese Journal of Stereology and image analysis, pp.335-338. ( 2010).

Google Scholar

[5] Peng Chunguang, Qiu Xiaogang, Zhang Ke . Simulation environment based on XML model research of the script generate system. Computer simulation, 2006 (08), pp.403-405.

Google Scholar

[6] Arul Asirvatham, Hugues Hoppe. based on GPU geometry shear map terrain rendering. Tsinghua University press . (2007).

Google Scholar

[7] Zhao Qinping. DVENET distributed virtual reality application system operation platform and development tool . Beijing: Science Press. (2005).

Google Scholar

[8] Wang Dongming: Earthquake disaster simulation and rescue virtual simulation training system based on. Institute of engineering mechanics, China Earthquake Administration. (2008).

Google Scholar

[9] Reeves William T: Particale systems-a technique for modeling a class of fuzzy objects;. Computer Graphics, 1983, 17(3), pp.359-376.

Google Scholar

[10] Duchaineau Mark A, Wolinsky Murray, Sigeti David E. ROAMing Terrain: Real-time Optimally Adapting Meshes; . IEEE Visualization 1997. Los Alamitos: IEEE Computer Society Press, (1997), pp.81-88.

DOI: 10.1109/visual.1997.663860

Google Scholar