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Computational implementation of a GIS developed tool for prediction of dynamic ground movement and deformation due to underground extraction sequence 被引量:3

Computational implementation of a GIS developed tool for prediction of dynamic ground movement and deformation due to underground extraction sequence
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摘要 In the last century, there has been a significant development in the evaluation of methods to predict ground movement due to underground extraction. Some remarkable developments in three-dimensional computational methods have been supported in civil engineering, subsidence engineering and mining engineering practice. However, ground movement problem due to mining extraction sequence is effectively four dimensional (4D). A rational prediction is getting more and more important for long-term underground mining planning. Hence, computer-based analytical methods that realistically simulate spatially distributed time-dependent ground movement process are needed for the reliable long-term underground mining planning to minimize the surface environmental damages. In this research, a new computational system is developed to simulate four-dimensional (4D) ground movement by combining a stochastic medium theory, Knothe time-delay model and geographic information system (GIS) technology. All the calculations are implemented by a computational program, in which the components of GIS are used to fulfill the spatial-temporal analysis model. In this paper a tight coupling strategy based on component object model of GIS technology is used to overcome the problems of complex three-dimensional extraction model and spatial data integration. Moreover, the implementation of computational of the interfaces of the developed tool is described. The GIS based developed tool is validated by two study cases. The developed computational tool and models are achieved within the GIS system so the effective and efficient calculation methodology can be obtained, so the simulation problems of 4D ground movement due to underground mining extraction sequence can be solved by implementation of the developed tool in GIS.
出处 《International Journal of Coal Science & Technology》 EI 2016年第4期379-398,共20页 国际煤炭科学技术学报(英文)
关键词 Computational model Geographical information system - Component object model - Complex mining geometry Ground deformation Surface subsidence GIS系统 地面运动 三维计算 开发工具 地下开采 预测 序列 组件对象模型
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