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41.
应力波与可滑移岩石界面间的相互作用研究 总被引:10,自引:1,他引:10
研究了应力波与用节理刚度系数描述的线性滑移岩石界面间的相互作用,给出了其透、反射波幅的一般表达式。通过应力波垂直人射界面时的具体分析,反映出岩石界面的节理刚度对应力波传播的重要影响,并揭示了岩石界面对应力波的高频滤波作用。 相似文献
42.
桩长及水泥掺入量对柔性桩承载力等的影响 总被引:16,自引:1,他引:16
采用弹性无限半空间体内的Mindlin应力解和分层总和法,计算分析了柔性桩的荷载传递规律,较详细地讨论了桩长、固化剂(水泥)掺入量对柔性桩复合地基承载力、变形的影响。计算值与实测值比较吻合。 相似文献
43.
460铀矿床成矿构造背景 总被引:1,自引:1,他引:1
460矿床为一个大型斑岩型铀-钼矿床。晚侏罗世近东西向分布的火山岩系为铀元素的预富集打下了基础。白垩纪流纹斑岩为其主要的成矿母岩,可能为NE向展布。早第三纪末期的热液活动使铀进一步富集成矿,在区域应力场作用下,矿体呈NW走向。晚第三纪的表生淋积作用,使矿体上部近地表处形成次生富集带。基于上述研究,可以进一步明确此类矿床的找矿方向。 相似文献
44.
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
45.
2001年四川雅江6.0级地震序列的破裂特征及发震构造 总被引:1,自引:0,他引:1
2001年雅江地震序列(主要地震是2月14日的Ms5.1和2月23日的Ms6.0地震)是四川地区近13年来的重要地震。选择2001年1月1日~6月30日期间,四川地震台网至少5个清晰的初动到时所记录的雅江地震序列中88次地震,并对其作了重新定位,对其中较大的13次地震用四川地区地震台网P波初动资料作了震源机制解。88次地震震源深度分布在2~16km,优势深度为9~llkm。前震、5.1级地震及其余震、6.0级地震及余震都紧邻孜河断裂分布,且按时段划分的震中优势分布方位与孜河断裂走向都是北西向。根据雅江地区近期大地形变场物质运移方向,选定了震源机制解的破裂面。13次较大地震震源机制解的主压应力P轴具有较大的垂向分量,水平投影方向为南东;地震类型都是左旋、走滑一正断型或正断一走滑型;大部分地震破裂面走向为北西一南东,倾向南西。根据前震、5.1级地震及其余震、6.0级地震及其余震震中优势分布方位,以及大多数较大地震破裂面走向和倾向,认为穿过震区的走向北西、倾向南西的孜河断裂是这次雅江地震序列的发震断裂。 相似文献
46.
基坑开挖与土钉支护的数值模拟 总被引:2,自引:0,他引:2
运用FLAC程序对深基坑土钉墙支护设计进行了数值模拟,分析了边壁土体的变形大小和土钉应力分布,并与现场实测结果对比,得出基坑顶的水平位移值与实测值相差不大,并对差值进行了分析。在应力方面,改善了土体内应力集中的现象,从而制约了土体的变形。剪应力在支护结构和坡角处有集中现象,在坡角处较为严重。 相似文献
47.
Kela 2 Gas Field, with high formation pressure (74.35MPa), high pressure coefficient (2.022) and difficulty of potential test and evaluation, is the largest integrated proved dry gas reservoir in China so far and the principal source for West-East Gas Development Project. In order to correctly evaluate the elastic-plastic deformation of rocks caused by the pressure decline during production, some researches, as the experiment on reservoir sensitivity to stress of gas filed with abnormal high pressure, are made. By testing the rock mechanic properties, porosities and permeabilities at different temperature and pressure of 342 core samples from 5 wells in this area, the variations of petro-physical properties at changing pressure are analyzed, and the applicable inspection relationship is concluded. The average productivity curve with the reservoir sensitivity to stress is plotted on the basis of the research, integrated with the field-wide productivity equation. The knowledge lays a foundation for the gas well productivity evaluation in the field and the gas field development plan, and provides effective techniques and measures for basic research on the development of similar gas fields. 相似文献
48.
Stephen E Laubach Jon E Olson Julia F.W Gale 《Earth and Planetary Science Letters》2004,222(1):191-195
Fluid flow in fractured rock is an increasingly central issue in recovering water and hydrocarbon supplies and geothermal energy, in predicting flow of pollutants underground, in engineering structures, and in understanding large-scale crustal behaviour. Conventional wisdom assumes that fluids prefer to flow along fractures oriented parallel or nearly parallel to modern-day maximum horizontal compressive stress, or SHmax. The reasoning is that these fractures have the lowest normal stresses across them and therefore provide the least resistance to flow. For example, this view governs how geophysicists design and interpret seismic experiments to probe fracture fluid pathways in the deep subsurface. Contrary to these widely held views, here we use core, stress measurement, and fluid flow data to show that SHmax does not necessarily coincide with the direction of open natural fractures in the subsurface (>3 km depth). Consequently, in situ stress direction cannot be considered to predict or control the direction of maximum permeability in rock. Where effective stress is compressive and fractures are expected to be closed, chemical alteration dictates location of open conduits, either preserving or destroying fracture flow pathways no matter their orientation. 相似文献
49.
Monitoring and modelling of pore water pressure changes and riverbank stability during flow events 总被引:1,自引:0,他引:1
Pore water pressures (positive and negative) were monitored for four years (1996–1999) using a series of tensiometer‐piezometers at increasing depths in a riverbank of the Sieve River, Tuscany (central Italy), with the overall objective of investigating pore pressure changes in response to ?ow events and their effects on bank stability. The saturated/unsaturated ?ow was modelled using a ?nite element seepage analysis, for the main ?ow events occurring during the four‐year monitoring period. Modelling results were validated by comparing measured with computed pore water pressure values for a series of representative events. Riverbank stability analysis was conducted by applying the limit equilibrium method (Morgenstern‐Price), using pore water pressure distributions obtained by the seepage analysis. The simulation of the 14 December 1996 event, during which a bank failure occurred, is reported in detail to illustrate the relations between the water table and river stage during the various phases of the hydrograph and their effects on bank stability. The simulation, according to monitored data, shows that the failure occurred three hours after the peak stage, during the inversion of ?ow (from the bank towards the river). A relatively limited development of positive pore pressures, reducing the effective stress and annulling the shear strength term due to the matric suction, and the sudden loss of the con?ning pressure of the river during the initial drawdown were responsible for triggering the mass failure. Results deriving from the seepage and stability analysis of nine selected ?ow events were then used to investigate the role of the ?ow event characteristics (in terms of peak stages and hydrograph characteristics) and of changes in bank geometry. Besides the peak river stage, which mainly controls the occurrence of conditions of instability, an important role is played by the hydrograph characteristics, in particular by the presence of one or more minor peaks in the river stage preceding the main one. Copyright © 2004 John Wiley & Sons, Ltd. 相似文献
50.