Lin H, Zhu J, Gong J H, et al. A grid-based collaborative virtual geographic environment for the planning of silt dam systems[J]. International Journal of Geographical Information Science, 2010,24(4):607-621.
Zhu J, Yin L Z, Wang J H, et al. Dam-break flood routing simulation and scale effect analysis based on virtual geographic environment[J]. IEEE Journal of Selected In Applied Earth Observations and Remote Sensing, 2014,99:2340399.
[6]
Zhu J, Gong J H, Liu W G. A collaborative virtual geographic environment based on P2P and grid technologies[J]. Information sciences, 2007,177(21):4621-4633.
Feng L, Wang C L, Li C R, et al. A research for 3D WebGIS based on WebGL[C]. International Conference on Computer Science and Network Technology, IEEE, 2011,1:348-351.
Li Y, Gong J H, Zhu J, et al. Spatiotemporal simulation and risk analysis of dam-break flooding based on cellular automata[J]. International Journal of Geographical Information Science, 2013,27(10):2043-2059.
[17]
Gallegos H A, Schubert J E, Sanders B F, et al. Two-dimensional, high-resolution modeling of urban dam-break flooding: A case study of Baldwin Hills, California[J]. Advances in Water Resources, 2009,32(8):1323-1335.
[18]
Wang V, Salim F, Moskovits P. The definitive guide to HTML5 WebSocket[M]. New York: Apress, 2013.
[19]
Pimentel V, Nickerson B G. Web display of real-time wind sensor data[R]. report TR11-214, New Brunswick: Faculty of Computer Science, University of New Brunswick, 2011.