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Yang Wunian Zhu Zhangsen Institute of Remote Sensing GIS Chengdu University of Technology Chengdu Sichuan Liu Xinzhu Yang Wencai 《《地质学报》英文版》1997,71(3):344-354
The structural feature shown on a remote sensing image is a synthetic result ofcombination of the deformations produced during the entire geological history of an area.Therefore, the respective tectonic stress field of each of the different stages in the complexdeformation of an area can be reconstructed in three steps: (1) geological structures formed atdifferent times are distinguished in remote sensing image interpretation; (2) structuraldeformation fields at different stages are determined by analyzing relationships betweenmicrostructures (joints and fractures) and the related structures (folds and faults); and (3)tectonic stress fields at different stages are respectively recovered through a study of the featuresof structural deformation fields in different periods. Circular structures and related circlular and radial joints are correlated in space to con-cealed structural rises. The authors propose a new method for establishing a natural model ofthe concealed structural rises and calculating the tectonic stress field by using quantitative dataof the remote sensing information of circular structures and related linear structures. 相似文献
83.
煤层倾角与覆岩变形破裂分带 总被引:7,自引:0,他引:7
地下采煤中三带(冒落带、裂隙带、弯曲带)高度的判断是预测采空引起地表变形破坏程度的依据。在诸多的影响因素中, 煤层倾角是控制三带高度的最主要因素。建立在实测统计基础上的经验范围值用于三带高度的判断带有一定的人为性。急倾斜煤层中冒落带和裂隙带高度随煤层倾角变化的规律已被褐示[7].通过弹塑性岩石材料的非线性有限元模拟, 本文提出了利用应力重分布图判断中、缓倾角煤层采空区覆岩三带高度的方法, 并应用于实际工程。 相似文献
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华北地区700年来地壳应力场演化与地震的关系研究 总被引:20,自引:2,他引:20
目前地震断层相互作用问题已引起地震学家的广泛关注。许多研究表明一条断层的破裂可以影响附近其他断层趋于破裂的进程,两条断层间的确切作用取决于它们的相对位置、破裂机制、错动量和介质力学性质。本研究给出了华北地区700年来由于长期构造加载及地震断层错动导致的累积库仑破裂应力变化(ACCFS)的演化过程。长期构造加载场由GPS观测得到的地壳平均应变率场给出。关于历史地震断层破裂参数的估算,根据的是华北地区有现代仪器记录的大震资料归算地震烈度与断层破裂长度、震级和地震矩的统计关系;根据地质调查得到的地震断层走向、倾角以及本地区的构造应力场方向估计滑动角。考虑粘弹性成层介质地壳模型,计算长期构造加载和地震形变(同震及震后介质粘弹性驰豫变形)造成的累积应力场变化。将累积应力场变化投影到后续地震断层面和滑动方向上得到△CCFS,并研究其对后续地震发生的触发作用。对1303年以来华北地区发生的49个M≥6.5地震研究结果表明:ACCFS对48个后续地震中的38个有触发作用,触发率达到79.2%。应用当今累积应力场变化于华北地区1303年-2003年发生的M≥5地震,我们发现触发率达到75.5%,于1976年以来发生的M≥5地震触发率达82.1%。未被触发的地震中有些是发生在断层破裂区附近的余震,很可能是由于历史地震破裂参量估计的误差落入影区中,若排除这些影响,触发率会更高。研究表明ACCFS与发生的后续地震有很好的相关性。当前ACCFS显著上升的地区包括渤海及其邻域地区、西秦岭北缘断裂带、张家口-渤海地震带西端和太原盆地,其地震危险性应引起重视。 相似文献
86.
华南石炭纪岩关-大塘界线期牙形石地层分带 总被引:4,自引:0,他引:4
系统采集不同沉积相区和连续沉积的剖面,即浅海台地相广西柳江龙殿山剖面、台缘缓坡相云南施甸鱼硐剖面和台内盆地相广西柳州碰冲剖面,运用数理统计方法,研究了华南岩关一大塘界线过渡期牙形石的产出丰度和相分布,在恢复生物演化序列的基础上,对各剖面首先详细分带,再进一步综合成系统的5个牙形石带,即Gnathodus typicus—G.cuneiformis带、Gnathodus typicus—Protognathodus cordiformis带、Scaliognathus anchoralis—Gnathodus pseu-dosemiglaber带、Gnathodus praebilineatus带和Paragnathodus horrtopunctatus带。以生物系统发生为标准,严格限定各带的界线,并与北美、西欧同期地层进行精确对比,为建立杜内阶一维宪阶界线的全球层型(GSSP)提供可靠依据。 相似文献
87.
I.Y. Malchikova 《冰川冻土》2004,26(Z1):206-209
The development of North Transbaikalye mineral resources (e. g. the Chiney deposit of iron titanium-vanadium-magnetite ores and Udokan copper deposits) is impossible without the establishment of industrial and transport infrastructure, one component of which are linear engineering constructions (drive railways, by-line auto roads, platform passages, protecting constructions, and others). However,on condition of spreading permafrost rocks this is conjugated with certain ecological risk just as from the transport network objects so for the objects themselves. A special attention is paid in the paper to considering of problems of projecting and constructing railways on the Udokan ridge. 相似文献
88.
A procedure for developing equations that estimate the isolator displacement due to strong ground motion is applied to buildings isolated with the friction pendulum system. The resulting design equations, based on rigorous non‐linear analysis, offer an alternative to the iterative equivalent‐linear methods used by current U.S. building codes. The governing equations of the system are reduced to a form such that the median normalized displacement of the system due to an ensemble of ground motions is found to depend on only the isolation period—a function of the curvature of the isolator—and the friction force at incipient slip normalized by peak ground velocity. The normalization is effective in minimizing the dispersion of the normalized displacement for an ensemble of ground motions, implying that the median normalized displacement is a reliable estimate of response. The design equations reflect the significant (20 to 38%) increase in displacement when the excitation includes two lateral components of ground motion instead of just one component. Equivalent‐linear methods are shown to underestimate by up to 30% the exact median displacement determined by non‐linear response history analysis for one component of ground motion, and building codes include at most a 4.4% increase for a second component. Copyright © 2003 John Wiley & Sons, Ltd. 相似文献
89.
Two approximate methods for decomposing complicated inelastic dynamic responses of wall buildings into simple modal responses are presented. Both methods are based on the equivalent linear concept, where a non‐linear structure is represented by a set of equivalent linear models. One linear model is used for representing only one vibration mode of the non‐linear structure, and its equivalent linear parameters are identified from the inelastic response time histories by using a numerical optimizer. Several theoretical relations essential for the modal decomposition are derived under the framework of complex modal analysis. Various numerical examinations have been carried out to check the validity of the proposed modal decomposition methods, and the results are quite satisfactory in all cases. Fluctuating bending moment and shear at any location along the wall height contributed by each individual vibration mode can be obtained. Modal contributions to shear and flexural strength demands, as well as the corresponding modal properties, under various seismic loading conditions can also be identified and examined in detail. Furthermore, the effects of higher vibration modes on seismic demands of wall buildings are investigated by using the modal decomposition methods. Several new insights into the complicated inelastic dynamics of multi‐story wall buildings are presented. Copyright © 2004 John Wiley & Sons, Ltd. 相似文献
90.