毕业设计(论文)府谷清水川电石厂滑坡治理工程设计.doc
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1、 本科毕业论文(设计) 题目:府谷清水川电石厂滑坡治理工程设计 姓 名: 学号: 院(系): 工程学院 专业:地质工程 工程地质方向 指导教师: 职称: 评 阅 人: 职称: 2014 年 6 月摘 要 滑坡是一种地质灾害,滑坡的发生可能会导致河流堵塞,交通阻断,电力、通讯措施受损,房屋被毁,和其他的经济损失,甚至会造成人员伤亡。我国大部分地区为山区,高原和丘陵分布广,故滑坡灾害发生密度大,频率高,我国已成为世界上受滑坡危害最严重的国家之一,每年因滑坡灾害造成的损失数以亿计,给国家和人民生命财产带来巨大损失,产生严重社会影响。 陕西省府谷县清水川低热值燃料资源综合利用项目是2010 年陕西省政
2、府规划建设的重点煤矸石综合利用项目之一。因电石厂一期工程挖山填沟等场坪建设,在场区东侧形成了高陡顺层边坡、滑坡及冲沟汇水,在场区西侧形成了高陡人工填方边坡,在场区北侧形成了高陡切层边坡。为确保电石厂一期项目顺利建设及后续安全生产,需对场区周边形成的高边坡、滑坡及冲沟汇水等地质灾害进行加固治理。滑坡区主要为黄土低山丘陵,地形复杂。滑坡体上部为灰黄色黄土,下部为砂岩泥岩互层,滑带发育在砂岩泥岩交界处。在滑坡区整个勘探深度内未发现地下水。由于部分滑坡物质已经产生滑动迹象所以需要对滑坡进行稳定性分析和必要时进行治理。滑坡稳定性分析采用传递系数法进行计算,经建立地质模型计算得出的结论是在自然状态下滑坡处
3、于欠稳定状态,在暴雨状态下不稳定,所以急需要对滑坡进行治理。滑坡治理常用的方案有锚索格构、抗滑桩、预应力锚索抗滑桩、截排水工程和减重反压等。经过技术和经济两方面比选后决定采用刷坡、截排水工程、减重反压和预应力锚索格构进行治理。具体的治理方案为:1 为了减小滑坡推力及便于治理工程的实施,对滑坡体同样进行刷坡减重,刷坡坡率为1:0.75 、1:1 及1:1.75,设置五级边坡,每级边坡设置620m 宽平台。2 在刷坡减重后的第一三级边坡设置1、2型锚索框架进行加固。1型锚索框架由六条横梁和三条竖梁组成,每根竖梁均设三孔锚索,竖梁横向间距3.0m。框架横、竖梁截面尺寸均为0.40.6m,基础埋深1.
4、5m,竖梁高18.0m,横梁长9.0 m,采用C30 混凝土现场浇筑。锚索钻孔直径130mm,倾角25,锚固段长度13m,由1112.7mm 高强度、低松弛的1860 级钢绞线组成,锚索端部设置框架。锚索单孔设计拉力870kN。锚索孔注浆采用1:1 水泥砂浆,水灰比0.450.5,砂浆强度不小于30Mpa。2型锚索框架由三条横梁和三条竖梁组成,每根竖梁均设三孔锚索,竖梁横向间距3.0m。框架横、竖梁截面尺寸均为0.40.6m,基础埋深1.5m,竖梁高14.2.0m,横梁长9.0 m,采用C30 混凝土现场浇筑。锚索钻孔直径130mm,倾角25,锚固段长度13m,由1112.7mm 高强度、低松
5、弛的1860 级钢绞线组成,锚索端部设置框架。锚索单孔设计拉力870kN。锚索孔注浆采用1:1 水泥砂浆,水灰比0.450.5,砂浆强度不小于30Mpa。3 为防止坡体以外地表水流入坡体及确保坡面地表水顺畅迅速地排出边坡体外,在边坡平台及坡面设置1型和2型截排水沟,边坡平台及坡面截排水沟汇水后经场内排洪系统收集统一排至场区以外。关键词:滑坡 预应力锚索 截排水沟 格构梁 传递系数法 稳定性分析Abstract Landslide is a kind of geological disaster, landslide may lead to blocked rivers, blocking tr
6、affic, electric power, communication measures is damaged, destroyed homes, and other economic losses, and even cause casualties. Most area of our country is a mountain, plateau and the hills are widely distributed, so the landslide density, high frequency, China has become one of the most serious la
7、ndslide hazards of the countries in the world, each year caused by landslide disaster losses of hundreds of millions, bring great loss to the country and peoples life and property, causing serious social impact. Shanxi province Fugu County water in comprehensive utilization of low calorific value fu
8、el resources project is the focus on coal gangue in Shanxi province government planning and construction of the 2010 comprehensive utilization project of. For a project of calcium carbide factory of digging and filling ditch site construction, site east of the formation of a high and steep slope, sl
9、ope and gully catchment, the presence of zone on the west side of the artificial fill of high steep slope, the presence of area on the north side of high steep slope cutting layer formation. In order to ensure the production and subsequent safe and smooth construction project of calcium carbide plan
10、t, high slope, landslide and gully catchment and other geological disasters for strengthening the management of field periphery. The landslide area is mainly the loess hilly terrain, complex. The upper part of the landslide was sallow loess, the lower sandstone mudstone, sandstone and mudstone slidi
11、ng zone at the junction. Groundwater is not found in the landslide area within the depth of exploration. As part of the landslide material has been produced to slide so the need for governance of stability analysis of landslide when necessary. Analysis by means of transfer coefficient method to calc
12、ulate the stability of the landslide, the establishment of geological model to calculate the conclusion is in the natural state of landslide is less stable, unstable in the rain condition, so the need for the landslide. Landslide often use scheme has anchor lattice, anti slide pile, prestressed anch
13、or cable anti slide pile, interception and drainage engineering and weight of anti pressure etc. After two technical and economic comparison of interception and drainage engineering, decided to adopt the weight back pressure and prestressed anchor cable frame structure of governance. Specific treatm
14、ent scheme for: In order to reduce a implementation of landslide thrust and convenient treatment engineering of landslide, slope of weight loss, brush at the rate of 1:0.75, 1:1 and 1:1.75, set up five slope, slope settings per level 6 20m wide platform.Two in the brush slope weight loss after the f
15、irst to the three grade slope 1, 2 type of anchor cable frame reinforcement. The 1 type of anchor cable frame is composed of six beam and three vertical beams, each beam are provided with three anchor, lateral spacing of vertical beam 3.0m. Frame transverse, vertical beam section size is 0.4 0.6m, d
16、epth of foundation 1.5m, vertical beam high 18.0m, beam length 9 m, using C30 concrete pouring. Anchor drilling diameter 130mm, angle of 25 , anchorage length 12M, consisting of 11 12.7mm diameter grade 1860 high strength, low relaxation steel strand, cable end frame. Cable tension 870kN single hole
17、 design. Anchor hole grouting cement mortar used 1:1, water cement ratio of 0.45 0.5, mortar strength of not less than 30Mpa. The 2 type of anchor cable frame is composed of three beam and three vertical beams, each beam are provided with three anchor, lateral spacing of vertical beam 3.0m. Frame tr
18、ansverse, vertical beam section size is 0.4 0.6m, depth of foundation 1.5m, vertical beam high 14.2.0m, beam length 9 m, using C30 concrete pouring. Anchor drilling diameter 130mm, angle of 25 , anchorage length 13M, consisting of 11 12.7mm diameter grade 1860 high strength, low relaxation steel str
19、and, cable end frame. Cable tension 870kN single hole design. Anchor hole grouting cement mortar used 1:1, water cement ratio of 0.45 0.5, mortar strength of not less than 30Mpa.Three in order to prevent the slope from surface water into the slope and ensure the smooth slope surface water rapidly di
20、scharging slope in vitro, type 1 and type 2 water drain is arranged on the slope platform and slope, slope platform and slope water drain water after the drainage system to collect uniform row to the field to.Keywords:landslide anchorage Intercepting drain lattice beam Transfer Coefficient Method st
21、ability analysis目录第一章 绪论1第一节 研究的主要意义1第二节 国内外研究现状1第三节 本文主要研究内容2第二章 研究区工程地质环境条件3第一节 自然地理气象条件3第二节 地形地貌3第三节 地层岩性4第四节 水文地质条件4第五节 地质构造及地震5第三章、滑坡特征及成因分析7第一节 滑坡基本特征7第二节 成因分析8第四章、滑坡稳定性及推力计算9第一节 计算方法9第二节 稳定性分析11第三节 稳定性评价12第四节 推力计算12第五章 治理工程设计15第一节 设计原则15第二节 设计依据15第三节 方案比选15第四节 治理设计16第五节 治理后的稳定性计算27第六章 施工注意事项2
22、8第一节 施工顺序28第二节 各分项工程注意事项28第七章 结论与建议29参考文献30附录31第一章 绪论 第一节 研究的主要意义 滑坡是一种地质灾害,滑坡的发生可能会导致河流堵塞,交通阻断,电力、通讯措施受损,房屋被毁,和其他的经济损失,甚至会造成人员伤亡。我国大部分地区为山区,高原和丘陵分布广,故滑坡灾害发生密度大,频率高,我国已成为世界上受滑坡危害最严重的国家之一,每年因滑坡灾害造成的损失数以亿计,给国家和人民生命财产带来巨大损失,产生严重社会影响。 为了减小滑坡给人类带来的损失,需要对滑坡的治理工程进行准确分析,完做出合理的,有效的设计。为了检验在校四年的学习成果,选取了府谷清水川电石
23、厂D2区滑坡治理选为此次毕业论文。陕西省府谷县清水川低热值燃料资源综合利用项目是2010 年陕西省政府规划建设的重点煤矸石综合利用项目之一。项目建设场地原为一塬峁荒地,地貌单元属低山丘陵,冲沟较发育,场区南侧为一高陡自然斜坡,因电石厂一期工程挖山填沟等场坪建设,在场区东侧形成了高陡顺层边坡、滑坡及冲沟汇水,在场区西侧形成了高陡人工填方边坡,在场区北侧形成了高陡切层边坡。为确保电石厂一期项目顺利建设及后续安全生产,需对场区周边形成的高边坡、滑坡及冲沟汇水等地质灾害进行加固治理。第二节 国内外研究现状 目前国内外治理滑坡的方法主要有以下几种。一 地下排水工程 由于水是形成滑坡的重要作用因素,特别是
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