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基于线框架模型的三维地质断层结构模型及其构建技术 被引量:7
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作者 朱良峰 陈国良 +1 位作者 吴信才 刘修国 《地学前缘》 EI CAS CSCD 北大核心 2007年第2期276-282,共7页
基于地质断层构造的特点,文中提出了一种适合三维断层模拟的数据模型——线框架模型,并基于该数据模型详细描述三维断层结构模型的构建方法,实现了从层面结构的地质模型向块体结构的地质模型进行自动转换的关键算法。线框架模型以方向... 基于地质断层构造的特点,文中提出了一种适合三维断层模拟的数据模型——线框架模型,并基于该数据模型详细描述三维断层结构模型的构建方法,实现了从层面结构的地质模型向块体结构的地质模型进行自动转换的关键算法。线框架模型以方向线框架来表达地质模型的骨架,以方向TIN网来表达地质模型的血肉,具备地质断层结构模型所要表达的各种几何元素与拓扑关系。基于线框架模型的三维地质断层构模技术将地质界面之间的交切在地质界面三角网形成之前就进行处理,将面与面之间的切割操作简化为线与线之间的操作,这种方法不仅能有效地减轻断层地质体构模的复杂程度,而且可以将线与线之间的交线作为地质界面三角网构建时的约束边,从而有效地保证了地质界面之间交切关系的正确性。 展开更多
关键词 三维地质建模 断层结构模型 线框架模型 块体结构 地质断层 可视化
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SKUA基岩三维地质建模 被引量:4
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作者 陈文杰 《城市地质》 2015年第2期72-78,共7页
以天津平原地区某个工区为例,介绍了三维地质模型建模的数据准备,SKUA建模的流程以及模型分析,共使用28条断层,6个地层的地质构造图,3条地质剖面构建了地质结构模型,表明SKUA建模是高效的和实用的。
关键词 SKUA 三维地质结构模型:断层模型 地层模型 GIS
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Coseismic slip distribution of 2009 L'Aquila earthquake derived from InSAR and GPS data 被引量:3
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作者 WANG Yong-zhe ZHU Jian-jun +2 位作者 OU Zi-qiang LI Zhi-wei XING Xue-min 《Journal of Central South University》 SCIE EI CAS 2012年第1期244-251,共8页
To better understand the mechanism of the Mw6.3 L'Aquila (Central Italy) earthquake occurred in 2009, global positioning system (GPS) and interferometric synthetic aperture radar (InSAR) data were used to deriv... To better understand the mechanism of the Mw6.3 L'Aquila (Central Italy) earthquake occurred in 2009, global positioning system (GPS) and interferometric synthetic aperture radar (InSAR) data were used to derive the coseismic slip distribution of the earthquake fault. Firstly, based on the homogeneous elastic half-space model, the fault geometric parameters were solved by the genetic algorithm. The best fitting model shows that the fault is a 13.7 km×14.1 km rectangular fault, in 139.3° strike direction and 50.2° southwest-dipping. Secondly, fixing the optimal fault geometric parameters, the fault plane was extended and discretized into 16× 16 patches, each with a size of 1 kmx 1 krn, and the non-uniform slip distribution of the fault was inverted by the steepest descent method with an appropriate smoothing ratio based on the layered crustal structure model. The preferred solution shows that the fault is mainly a normal fault with slight right-lateral strike slip, the maximum slip of 1.01 m is located in the depth of 8.28 km, the average rake is -100.9°, and the total geodetic moment is about 3.34× 1018 N.m (Mw 6.28). The results are much closer than previous studies in comparison with the seismological estimation. These demonstrate that the coseismic fault slip distribution of the L'Aauila earthauake inverted by the crustal model considering layered characters is reliable. 展开更多
关键词 L'Aquila earthquake interferometric synthetic aperture radar global positioning system (GPS) slip distribution
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