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31.
铜陵地区老鸦岭层状钼矿床铅同位素组成研究   总被引:1,自引:0,他引:1  
安徽铜陵老鸦岭矿床中二叠系大隆组(P2d)顶部的含矿(钼矿化)黑色页岩以及附近(立新煤矿)同一层位不含矿黑色页岩的实测铅同位素组成分别为:^206Pb/^204Pb20.20~22.37,^207Pb/^204Pb15.67~15.82,^208Pb/^204Pb38.47~38.60和^206Pb/204Pb18.83~20.80,^207Pb/^204Pb15.65~15.76,^208Pb/^204Pb38.84~39.22。对137Ma的放射成因Pb进行校正后的铅同位素组成表明,含矿黑色页岩和不含矿黑色页岩均与燕山晚期火成岩无关,老鸦岭含矿黑色页岩可能具沉积成因。对沉积(约250Ma)以来的放射成因Pb进行校正后的铅同位素组成表明:不含矿黑色页岩的Pb源自上地壳,而含矿黑色页岩的Pb(因而推测其他成矿金属)可能源于上地壳物质(与不含矿黑色页岩的Pb源相似)与下地壳物质的混合。  相似文献   
32.
铂族元素的表生地球化学研究进展   总被引:2,自引:0,他引:2  
基性-超基性岩及黑色页岩等风化过程中铂族元素发生了活化和迁移。铂族元素在岩体附近土壤、植物和水体等表生介质中的迁移富集特征可以用来寻找岩浆型铂族元素矿床。黑色页岩风化过程中,Os的表生迁移对海洋^187Os/^188Os值上升有重要意义。此外,作为重金属元素,机动车铂族元素催化剂在环境中的释放,也会带来潜在的生态环境和人体健康问题。  相似文献   
33.
我国西北干旱半干旱地区,生态环境极为脆弱,土地沙漠化问题十分突出。防风固沙,恢复植被,遏制沙漠化,改善生态环境,是我国西部大开发战略和加快西部经济腾飞的主要任务之一。防风治沙首先要解决的问题是固沙保水。文章提出了利用宁夏腾格里沙漠东南缘中卫县沙坡头地区香山北麓的黑色泥质页岩在自然条件下天然胶结成壳作用于固沙的可能性。这类黑色泥质页岩具有遇水则吸水软化,风干则形成薄硬壳之特点。在斜坡坡面上或坡脚风化破碎或构造破碎或人工开挖的黑色泥质页岩碎块堆积的表面常形成1层1~5cm的硬壳。这类黑色泥质页岩在500℃时灼减量高达17.56%,说明具有很高的有机质含量,同时P2O5,和K2O含量也较高,有利于成壤和植物生长。黑色泥质页岩的天然胶结成壳作用与地表破碎的黑色泥质页岩堆积和特定的干旱半干旱气候以及本身成分、结构有关。这一硬壳层不但具有一定的强度和抗风蚀能力,而且还具有一定的吸水性和保水性。因此,借鉴草方格固沙方法,就地取材,充分利用黑色泥质页岩在自然条件下的天然胶结成壳性能,用于沙漠治理中的固沙。进一步对黑色泥质页岩天然胶结成壳的机理进行深入研究,并开展黑色泥质页岩固沙试验研究,有可能为腾格里沙漠治理开辟新的途径。  相似文献   
34.
三峡库区三叠系巴东组(T26)泥灰质岩石岩溶是移民迁建中发现的重大工程地质问题。泥灰质岩石中的构造非常复杂,包括老构造、新构造和表生构造,它们共同控制了岩溶作用。老构造中,褶皱和断裂带等局部构造控制着岩溶的重要部位和重要层位,节理和层理等小构造使岩溶普遍存在。新构造时期地表隆升和河流切割使岩体卸荷松动,岩溶通道扩宽。表生岩溶构造加密了岩溶通道,使岩溶作用增强。三峡库区泥灰质岩石斜坡带地质灾害形成的机理遵循着构造控制下岩溶发育的规律性,致使岩溶地质灾害具有范围广、规模大和结构复杂的特点。岩溶地质灾害的形式包括地面不均匀沉降、地裂缝、滑坡、崩塌、泥石流和地面塌陷。  相似文献   
35.
泥浆脉冲随钻测量系统研究   总被引:1,自引:0,他引:1  
介绍了泥浆脉冲随钻测量系统信号传输的3种基本工作方式:压力正脉冲、压力负脉冲和连续压力波.泥浆脉冲信号在传输过程中主要受钻探泵、井底动力机、泥浆中的气泡及活动钻具的干扰;钻井深度、泥浆中的气泡量、含砂量和泥浆类型对信号衰减有一定的影响.  相似文献   
36.
采用小动力无加压旋挖钻机在粒径较大的卵砾石地层和泥页岩地层中进行1500 mm以上大口径钻孔灌注桩施工,由于钻机动力小且不能加压,用常规嵌岩短螺旋钻头钻进出现进尺慢或不进尺现象。通过对河南西峡县宛西制药责任有限公司新厂房桩孔施工过程中出现此种现象的分析和处理,提出了嵌岩短螺旋钻头针对性的改进措施,并取得了良好效果。  相似文献   
37.
研究尼日尔三角洲东部深水区块发现,整个盆地从陆向洋具有3个大的构造分区:伸展拉张区、过渡区和挤压逆冲区。伸展区以大型同沉积断层伴生大量滚动背斜构造为特征,过渡区发育大量泥底辟构造,挤压区以复杂的逆冲叠瓦构造为主。通过分析形成机理,揭示东部深水转换带上M研究区构造特征,按构造的演化特征将该区构造分为泥底辟型、冲断-泥底辟混合型、逆冲型3种类型,提出研究区内的圈闭主要以构造-岩性圈闭为主,为尼日尔三角洲盆地深水勘探提供新的理论指导。  相似文献   
38.
On 25th January 2019, the tailings dam of the Brumadinho iron mine operated by Vale S/A failed catastrophically. The death toll stood at 259 and 11 people remained missing as of January 2020. This tragedy occurred three years after Mariana’s tailings dam rupture – the most significant tailing dam disaster in Brazilian history. Thus far, a systematic investigation on the cause and effect of the failure has yet to be conducted. Here, we use satellite-driven soil moisture index, multispectral high-resolution imagery and Interferometric Synthetic Aperture Radar (InSAR) products to assess pre-disaster scenarios and the direct causes of the tailings dam collapse. A decreasing trend in the moisture content at the surface and the full evanescence of pond water through time (2011–2019) suggest that the water was gradually penetrating the fill downwards and caused the seepage erosion, saturating the tailings dam. Large-scale slumping of the dam (extensional failure) upon the rupture indicates that the materials of the fill were already saturated. InSAR measurements reveal a dramatic, up to 30 cm subsidence in the dam (at the rear part) within the past 12 months before the dam collapse, signifying that the sediments had been removed from the fill. Although the information on the resistance level of the tailings dam to infiltrations is not available, these pieces of evidence collectively indicate that the seepage erosion (piping) is the primary cause for the chronic weakening of the structure and, hence, the internal “liquefaction” condition. Upon the collapse, the fully saturated mud tailings flowed down the gentle slope area (3.13 × 106 m2), where 73 % were originally covered by tree, grass or agricultural tracts. The toxic mud eventually reached the Paraopeba River after travelling 10 km, abruptly increasing the suspended particulate matter (SPM) concentration and the toxic chemical elements in the river, immediately affecting the local livelihoods that depend on its water. The Paraopeba River is a major tributary of the San Francisco River, the second-longest river in Brazil reaching the Atlantic Ocean. We anticipate that the environmental repercussions of this toxic seepage will be felt throughout the entire basin, especially riverine communities located downstream.  相似文献   
39.
Abstract

Due to the strong disintegration and water erosion of completely weathered granite, water and mud inrush disasters are apt to take place in this zone during underwater tunnel construction. The pore, compactness, seepage path length, fracture geometries and their interconnections for water and mud transfer are strongly influenced by confining pressure and waterproof-resistant slab safety thickness. In order to inspect the influence, a series of experiments based on a self-designed testing system and non-Darcy testing method were performed. The results indicated that the water and mud inrush evolution increased with the increase of confining pressure and decreased with the increase of safety thickness. In particular, the confining pressure mainly influences the initial evolution stage, and a critical safety thickness to prevent water and mud inrush is obtained. Besides, the non-Darcy testing method results shows that the water and mud inrush evolution affects the influence of non-Darcy flow. For example, while the safety thickness was smaller than the critical value, the evolution was large and unstable and its behavior transferred into nonlinear. In this case, the flow changed to non-Darcy flow.  相似文献   
40.
An effective approach to modeling the geomechanical behavior of the network and its permeability variation is to use a poroelastic displacement discontinuity method (DDM). However, the approach becomes rather computationally intensive for an extensive system of cracks, particularly when considering coupled diffusion/deformation processes. This is because of additional unknowns and the need for time‐marching schemes for the numerical integration. The Fast Multipole Method (FMM) is a technique that can accelerate the solution of large fracture problems with linear complexity with the number of unknowns both in memory and CPU time. Previous works combining DDM and FMM for large‐scale problems have accounted only for elastic rocks, neglecting the fluid leak‐off from the fractures into the matrix and its influence on pore pressure and stress field. In this work we develop an efficient geomechanical model for large‐scale natural fracture networks in poroelastic reservoirs with fracture flow in response to injection and production operations. Accuracy and computational performance of the proposed method with those of conventional poroelastic DDM are compared through several case studies involving up to several tens of thousands of boundary elements. The results show the effectiveness of the FMM approach to successfully evaluate field‐scale problems for the design of exploitation strategies in unconventional geothermal and petroleum reservoirs. An example considering faults reveals the impact of reservoir compartmentalization because of sealing faults for both geomechanical and flow variables under elastic and poroelastic rocks. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   
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