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11.
Quantitative basin characterisation to refine debris-flow triggering criteria and processes: an example from the Italian Western Alps 总被引:1,自引:1,他引:0
This paper investigates rapid channelized debris flow related to rainfalls in small alpine basins. Its goal is to evaluate
and correlate different geological and technical aspects with predisposing and triggering factors that can control these phenomena.
The study area is the upper part of the Susa Valley where 12 small basins were selected. For each of them, lithological, geomorphological,
climatic and technical information were mapped and analysed. Debris-flow triggering conditions, flow and depositional processes
were related to physical characteristics of the basin that can be easily measured and quantified. At least three different
groups of basins were found: G1) basins with one event each 4–6 years, characterised by massive or blocky calcareous rocks,
G2) basins with more than one event per year that show an abundance of layered or sheared fine-grained rocks and G3) basins
with recurrence levels exceeding 10 years, activated only by heavy and prolonged rainfalls, marked by massive or blocky coarse-grained
igneous rocks. Furthermore, important morphometric differences were found. These considerations are useful in terms of hazard
zonation and risk mitigation. 相似文献
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Engineering geological studies and tunnel support design at Sulakyurt dam site, Turkey 总被引:2,自引:0,他引:2
H. Basarir 《Engineering Geology》2006,86(4):225-237
This paper presents the results of engineering geological investigations and tunnel support design studies, carried out at the Sulakyurt dam site, northeast of Ankara, Turkey. The Sulakyurt dam will be used for flow control and water storage for irrigation projects. Studies were carried out both in the field and the laboratory. Field studies include engineering geological mapping, intensive discontinuity surveying, core drilling and sampling for laboratory testing. The diversion tunnel will be driven in rock mass, consisting of granite and diorite. Empirical, analytical and numerical methods were combined for safe tunnel design. Rock mass rating (RMR), Rock mass quality (Q) and Geological strength index (GSI) systems were used for empirical rock mass quality determination, site characterization and support design. The convergence–confinement method was used as analytical method and software called Phase2, a 2D finite element program, was utilized as numerical method. According to the results acquired from the empirical, analytical and numerical methods, tunnel stability problems were expected in both granite and diorite rock masses. The support system, suggested by empirical methods, was applied and the performance of suggested support system was evaluated by means of numerical modelling. It was concluded that the suggested support systems were adequate, since after applying the suggested support system to granite and diorite, tunnel deformation and the yielded elements around the tunnel decreased significantly. Thus, it is suggested that for more reliable support design empirical, numerical and analytical methods should be combined. 相似文献
14.
爆破工程地质控制论 总被引:1,自引:1,他引:1
爆破理论与技术的创新和发展,对我国爆破工程事业乃至基础设施建设都是十分重要的。在数十年爆破理论研究与生产实践的基础上,对爆破及其破岩的科学概念进行了定义,系统阐述了炸药能量特征、岩体介质特征、炸药能量与岩体介质相互作用等决定爆破作用机制和效果的因素及其相互关系,明确指出地质条件是爆破的基础,炸药能量特征必须与岩体介质特征来适应;基于岩体特性及其爆破特征,将自然岩体划分为似均匀连续体和不连续体两类。研究表明,在似均匀连续体中,岩体爆破作用机制和效果受微地形最小抵抗线控制;在不连续体中,受岩体结构特征控制。两者结合,形成了爆破工程地质控制论。 相似文献
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工程场地的特征与工程地质分区 总被引:1,自引:0,他引:1
工程场地与城市在空间尺度上相去甚远 ,但工程场地所具备的与环境行为相近的共性 ,使其属性分析可以推广应用到城市建设所面对的整个工程地质环境。从这一意义上说 ,工程场地是整个城市宏观工程地质环境的微观单元 ,众多微观单元的组合构成了环境的宏观总体。为此 ,工程场地的三大属性特性、适宜性、稳定性 ,可以作为城市工程地质环境分析中分析方法的基础。从工程场地分析推广到城市工程地质环境分析 ,还将有助于保证城市工程地质环境分析的定量化水平。 相似文献
19.
南水北调中线工程上第三系膨胀性硬粘土的工程地质特性研究 总被引:7,自引:5,他引:7
上第三系硬粘土在中国东部新生代沉积盆地具有广泛的分布 ,因其性质复杂而成为中国区域性特殊岩土研究的重要对象。纵贯于南阳盆地和华北盆地西缘的南水北调中线工程长距离地开挖在不同的上第三系硬粘土中。本文在对南阳盆地、方城宝丰、邯郸永年三渠段上百个原状样的物质组成、物理性质、物化性质、膨胀性和收缩性、强度特性系统测试分析的基础上 ,总结了各类硬粘土的工程地质特性及其形成机理和变化规律 ,并根据不同湿度、围压状态下的试验结果分析了硬粘土的工程环境效应 ,这对于认识上第三系硬粘土在开挖运营条件下的变形破坏机理有着重要的理论和实际意义。 相似文献
20.
近年来,在国土资源部的高度重视下,我区相继建立了一系列地学数据库。这些地学数据库的建立不仅为地矿行业提供了基础性数据,也加速了"数字国土工程"和国土资源信息化建设的步伐。随着信息技术的高速发展,利用地理信息系统(GIS)将各类地学数据有机地结合起来,形成地学数据应用与管理系统,最终通过网络服务于社会,必将是各类地学数据发展的必然趋势。 相似文献