首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 406 毫秒
1.
潘晓明 《探矿工程》2015,42(9):72-75
成都至贵阳客运专线南厂沟浅埋大跨度隧道下穿公路,重载车辆繁多,对隧道施工安全及道路行车安全造成威胁。采用FLAC3D软件分别对无行车条件下和行车荷载作用下施工过程进行了数值模拟,对比分析了两种工况下的受力及变形,结果表明,行车荷载对该隧道施工影响较小。下穿施工过程及监测数据分析表明,南厂沟隧道下穿公路数值模拟是合理的,为顺利施工提供了有益指导。  相似文献   

2.
王晓睿  周峰  张振  郭佳 《地球科学》2016,41(11):1959-1965
在城市地下工程建设中,新建大断面隧道近距离下穿施工对既有道路造成的扰动不可避免.分析地表变形特点及其变化规律对减小隧道施工造成的环境影响具有重大意义.结合郑州市沈庄北路-商鼎路下穿中州大道矩形顶管隧道工程的工程实践,采用现场地表变形实测统计分析并运用数值模拟方法对顶管顶进施工过程进行动态分析,揭示隧道开挖过程中的地表变化规律;数值模拟预测分析了顶管施工对既有道路的影响,从而优化施工方法和技术参数,提出相应的控制措施,并通过工程变形监测数据验证了预测分析的有效性.   相似文献   

3.
以重庆某道路扶壁式挡墙倾斜事故为例,根据地质条件、土层岩土参数、挡墙设计参数及施工过程反馈的信息,对倾斜段挡墙进行复核,根据复核结果和挡墙的实际变形特征,分析了导致该段挡墙倾斜的可能原因,提出了采用预应力锚索对扶壁式挡墙整体稳定性加固的预防措施及地基注浆加固处理方案。  相似文献   

4.
汪拾金 《探矿工程》2017,44(4):56-60
浸润线过高导致的渗流状况不良已经成为许多尾矿库的主要安全隐患,是引起尾矿库溃坝事故的最直接原因之一。自流式辐射井排渗系统具有自流排水安全可靠、辐射式集渗管水平伸入坝体范围广、排水量大、水位下降快、成本低、使用寿命周期长、后期管理运行方便等优势。在榆木沟尾矿库2号大口辐射井工程中应用了自流式辐射井排渗系统,取得了良好的技术和经济效果。结合该工程实践,对自流式辐射井排渗系统在尾矿库排渗工程中的施工关键技术问题进行了研究和探讨,为今后类似工程提供了有益的经验。  相似文献   

5.
裴熊伟 《探矿工程》2016,43(3):56-59
压水试验水压式栓塞较其他类型栓塞可靠、灵活,但一直存在试验结束后排水泄压难题,使该类型栓塞使用局限于浅孔及地下水位高的钻孔。本文对该问题进行了研究,提出了解决方案,设计了新型水压式栓塞结构。解决了一直以来水压式栓塞的排水泄压难题,突破了试验孔深限制,使水压式栓塞能得到广泛应用。介绍了该新型水压式栓塞的结构和工作原理以及工程应用效果。  相似文献   

6.
本文基于AUTO BANK渗流计算分析软件,对袁家沟水库坝体渗流进行分析计算,结果表明:采用棱体排水和褥垫排水综合排水型式能够有效降低浸润线,褥垫排水对大坝渗流计算影响较大,今后在类似工程中应注意采用褥垫排水和棱体排水综合型式降低碾压式均质土坝的浸润线,保证大坝的安全。  相似文献   

7.
深井潜水泵在筒井排水中的应用   总被引:1,自引:0,他引:1       下载免费PDF全文
矿井突发性涌水是经常发生的事故之一。在矿井发生这类事故之后,尽快排水,抢救人员生命财产,进行堵水作业,并尽快恢复正常生产,是一项刻不容缓的重要工作。由于矿井排水的特殊要求,需要大流量、高扬程的潜水泵短时间内连续作业,按常规安装的潜水泵往往不能达到矿井...  相似文献   

8.
为了解决浅井排水问题,我们设计了手搖式拉杆水泵,经过试制并进行了排水试验,证明性能尚好,能解决深度在30公尺以内的浅井排水问题。为了便于大家对拉杆水泵的了解,现将其原理、性能、结构、按装、使用等分别介绍于后,以供参考。  相似文献   

9.
地下工程渗流排水孔数值模拟的隐式复合单元法   总被引:1,自引:0,他引:1  
倪绍虎  肖明 《岩土力学》2008,29(6):1659-1664
根据渗流基本原理,提出了排水孔在地下工程中渗流数值模拟的隐式复合单元法。将排水孔隐含于模型网格中,得到排水孔在模型中的数据信息。判断所有排水孔与单元的相对位置,通过修正排水孔所穿过单元的渗透传导矩阵来模拟排水孔的强排水效果,并通过实例对排水子结构法和隐式复合单元法进行了比较。运用编制的三维有限元计算程序对某地下水电站厂房渗流场及排水孔进行了模拟,结果表明,采用隐式复合单元法对排水孔进行模拟是可行的。  相似文献   

10.
李向荣 《探矿工程》2010,37(2):33-39
针对杭州地铁1号线艮山门车站规模较大且具有下穿道路、防汛河流、盾构始发井、周边高层建筑物和多层建筑物等特点,通过对其深基坑施工技术进行研究,对报警原因进行分析,并采取相应对策,总结出可供杭州市区其他类似的地铁车站施工借鉴和参考的经验。  相似文献   

11.
The bedrock topography of the Botany Basin has been determined from seismic‐sparker records made in Botany Bay and Bate Bay, and from seismic‐refraction and gravity measurements on the Kurnell Peninsula. Supplementary information has been obtained from boreholes both on land and in the sea.

The Cooks and Georges Rivers formerly constituted the main drainage of the Basin and flowed generally southeastwards (beneath the present Kurnell Peninsula) and joined the Port Hacking River east of Cronulla. The depth of the bedrock channel of the former Georges River is 75–80 m b.s.l. at Taren Point, 90–95 m beneath the Kurnell Peninsula and 110–115 m at its junction with the Port Hacking River channel. The bedrock channel of the former Cooks River is about 30 m b.s.l. at Kyeemagh, its present entrance to Botany Bay, and it joined the Georges River at a location now 90 m b.s.l. beneath the Kurnell Peninsula.

A second drainage system existed in the north and east of Botany Bay and generated the present mouth beneath which the bedrock is now 110 m b.s.l. This channel followed a southeasterly course parallel to the present northern shore of Botany Bay and was separated from that of the ‘Cooks and Georges Rivers’ by a bedrock ridge which extended from beneath Sydney Airport to the northern extremity of the Kurnell Peninsula. Over much of its length this divide had a depth of about 30 m b.s.l.

The formation of the Kurnell Peninsula tombolo led to the diversion of the ‘Cooks/Georges River’ through the mouth of Botany Bay and subsequently led to the development of the bay. This change in the drainage system occurred when the sea was less than 30 m below the present sea level.  相似文献   

12.
印藏碰撞导致了青藏高原内部及周边地区形成巨量储量的成矿带。虽然这一地区的成矿研究非常深入,但仍然需要 完善对“源-运-储”的综合研究,需要从地壳上地幔结构角度对成矿源的起源进行探索。位于哀牢山剪切带南段的大坪- 长安金矿具有幔源成因迹象,该文研究了该矿区及邻区的岩石圈结构,从深部研究成矿来源。通过接收函数方法获得的研 究区剖面,揭示壳幔边界(Moho) 深度在30~40 km,但在金矿矿区下表现为Moho转换震相强烈横向不连续,表现为东西 两侧约3~5 km的下沉。岩石圈软流圈边界(LAB) 的转换震相揭示,研究区的岩石圈厚度为60~80 km,有效约束了研究区 强烈岩石圈减薄后剩余岩石圈的厚度。金矿区西侧思茅块体的岩石圈厚度最薄,位于前人层析成像工作揭示上地幔顶部一 低速体的上方。金矿区下方的岩石圈厚度为~80 km且LAB的转换震相表现为强烈的横向不连续。金矿下Moho和LAB的横 向不连续暗示了金矿区下方存在岩石圈尺度的岩浆通道,即软流圈的地幔物质可以较快速地到达浅表。笔者认为,研究区 的岩石圈结构支持由俯冲驱动的幔源成矿模型,但大坪-长安金矿矿区下的岩石圈尺度的岩浆通道的形成与哀牢山剪切带 的剪切变形直接相关。由Burma俯冲导致的地幔物质上涌对该通道的形成贡献有限。  相似文献   

13.
INTRODUCTION Volcanoesaremostlyobservedinoceanicridges,hotspotsandcontinentalriftzones(Hongetal.,2003),andarerarelyobservedincontinentalinteri ors.However,sincethevolcanoeswithintheconti nentinteriorscannotbeattributedtotheplate/block marginprocess,theydr…  相似文献   

14.
青藏高原新生代火山活动的深部力学背景   总被引:2,自引:0,他引:2  
为了研究火山形成基本要素——岩浆运移通道的形成, 基于重力异常反演的青藏高原下地壳底部的地幔对流应力场, 结合地壳破裂形成机理和对流应力场与青藏高原新生代火山分布的关系, 以及青藏高原下地幔对流演化的数值模拟结果, 分析了高原火山岩浆运移通道产生的深部力学机制.研究表明, 高原下地幔对流应力场存在两个大的拉张区, 高原中部和北部的火山岩均分布于拉张应力区.南部的林子宗火山区对应了印度板块与欧亚大陆碰撞前或碰撞早期高原下的地幔上升流.对流应力的量级为~100Ma, 这与导致地壳破裂的应力量级相当.所有这些证据表明, 青藏高原下地幔对流应力场可能是导致高原地壳破裂, 并发展为岩浆物质通道的主要力学机制之一.   相似文献   

15.
Phase and group velocity dispersions of fundamental mode Rayleigh waves for the path Port Moresby-Rabaul have been computed. The structural interpretation of dispersion curves for the Solomon Sea reveals the channel shear velocity as about 4.35 km/s and the channel starts around 95 km below the earth's surface. In other words, the elastic velocities-depth structure beneath the Solomon Sea is very similar to that beneath the northern part of the Western Mediterranean Basin. Further, group velocity dispersion of fundamental mode Rayleigh waves at the PMG and the RAB seismic stations have been computed. The structural interpretation of a dispersion curve for the orogenic belt of Papua New Guinea reveals a crust of about 62.5 km thick and uppermost mantle shear velocity of about 4.3 km/s.  相似文献   

16.
The principle prerequisite for the formation of a volcano is the generation of a channel for magma transportation. There is little research on the deep mechanical mechanism for the formation of a magma transportation channel in the Tibetan plateau. Based on the subcrustal mantle convectiongenerated stress field inversed by gravity anomalies, together with its relationship to the Cenozoic volcanism in the plateau, and the mechanism of crustal fracture formation, as well as the numerical results of the evolution of mantle convection beneath the plateau, this paper investigates the deep mechanical mechanism for the formation of a magma transportation channel in the Tibetan plateau. There are two significant extensional convection-generated stress zones beneath the plateau, in which the volcanic rocks in the central and northern parts of the plateau are distributed. The Linzizong volcanism in southern Tibet correlates the upwelling mantle flow prior to the India-Asia collision or during the early stage of the collision. The magnitude of the stress is - 100 MPa, which is the same order of force that causes crustal fractures. The evidence implies that the mantle convection-generated stress is one of the principle causes of crustal fractures, and furthermore, the formation of the magma transportation channel in the Tibetan plateau.  相似文献   

17.
An excellent section in the Welzow-Süd open-cast lignite mine in Lower Lusatia, eastern Germany, provided a rare opportunity to study a small (5 m deep), buried subglacial meltwater channel of Saalian age. The channel is steep-sided and distinctly U-shaped. It is separated from undeformed outwash deposits in which it is incised by a sharp erosional contact and it is filled with meltwater sand and till. The till was possibly squeezed into the channel from the adjacent ice/bed interface. Directly beneath the channel, there is a partly truncated diapir of clayey silt, evidencing sediment intrusion into the channel from below. During channel formation, the pressure gradient was oriented from the surrounding sediments into the channel, so that the channel served as a drainage conduit for groundwater from the adjacent subglacial aquifer. The substratum consists largely of sandy aquifers with a total thickness of about 100 m, separated by two aquitards. Channel formation was initiated when hydraulic transmissivity of the bed did not suffice to evacuate all the subglacial meltwater as groundwater flow. As the Welzow-Süd channel belongs to a dense network of subglacial channels in eastern Germany, temporary ice-sheet instability in this region prior to channel formation seems possible.  相似文献   

18.
Mapping of glacial meltwater channels along the length of the 25-km Mid-Cheshire Ridge reveals evidence for four distinctive channel morphologies, which are used to establish the pattern of meltwater flow during the Late Devensian glaciation. A key characteristic of all channels is an abrupt change in morphology between inception on the Mid-Cheshire Ridge and the downstream continuation on the surrounding Cheshire Plain, with large reductions in channel cross-sectional area at this point. The interpretation of this evidence is that meltwater flowing off the bedrock ridge was absorbed into a layer of permeable sediment beneath the Late Devensian ice sheet. This permeable sediment is significant because it would have acted as a deforming layer beneath the former ice sheet in this area. Reconstruction of the Late Devensian ice sheet based on information from the meltwater channels and using values of shear stresses typical of ice sheets resting on deformable beds (ca. 20 kPa) suggests an ice surface elevation over the Irish Sea of ca. 700 m. This value is considerably less than previous estimates of the vertical extent of the ice sheet of ca. 1000–1200 m and has important implications for the rapidity and mode of deglaciation during the Late Devensian. Copyright © 1999 John Wiley & Sons, Ltd.  相似文献   

19.
A thick wedge of nonmarine gray shale extends from the Galatia Channel and overlies the Springfield Coal Member of the Petersburg Formation (Pennsylvania) in western Gibson Country, but mainly marine black shales overlie the Springfield in the eastern part of the county. The sulfur content of the Springfield coal is lower beneath this wedge of nonmarine gray shale than beneath the marine shales. Fine-grained, compacted bay and overbank deposits form the western delta platform of the coal. Less compacted deposits of fluvial channel sandstone make up the eastern delta platform. Differential compaction of the delta platform of the Springfield coal controlled gray-shale distribution and determined the sulfur content of the coal.  相似文献   

20.
To better understand the lithosphere mantle collision tectonics between the India plate and Asia plate, we determine three dimensional P wave velocity structure beneath western Tibet using 27,439 arrival times from 2,174 teleseismic events recorded by 182 stations of Hi-CLIMB Project and 16 stations in the north of Hi-CLMB. Our tomographic images show the velocity structure significantly difference beneath northern and southern Qiangtang, which can further prove that the Longmu Co-Shuanghu ophiolitic belt is a significant tectonic boundary fault zone. There are two prominent high velocity anomalies and two prominent low velocity anomalies in our images. One obvious high velocity anomalies subduct beneath the Tibet at the long distance near 34°N, whereas it is broke off by an obvious low velocity anomaly under the IYS. We interpret them as northward subducting Indian lithosphere mantle and the low velocity anomanly under IYS likely reflects mantle material upwelling triggered by tearing of the northward subduction Indian lithosphere. The other prominent high velocity anomaly was imaged at a depth from 50 km to 200 km horizontal and up to the northern Qiangtang with its southern edge extending to about 34°N through Hoh Xil block. We infer it as the southward subducting Asia lithosphere mantle. The other widely low velocity anomaly beneath the Qiangtang block lies in the gap between the frontier of India plate and Asia plate, where is the channel of mantle material upwelling.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号