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1.
Internal erosion is the most common reason which induces failure of embankment dams besides overtopping. Relatively large leakage is frequently concentrated at defects of impervious element, and this will lead to eventual failure. The amount of leakage depends not only on integrity of impervious element, but also on dam height, shape of valley, shape of impervious element and water level in reservoir. The integrity of impervious element, which represents the relative level of seepage safety, is not easy to be determined quantitatively. A simple method for generalization of steady seepage state of embankment dams with thin impervious element is proposed in this paper. The apparent overall value of permeability coefficient for impervious element can be obtained by this method with reasonable accuracy and efficiency. A defect parameter of impervious element is defined as an index to characterize seepage safety of embankment dams. It equals the ratio of the apparent overall value of permeability coefficient to the measured value in laboratory for intact materials. Subsequently, seepage safety of three dams is evaluated and the evolution of defect level of impervious element of dams is investigated. It is proved that the newly proposed method in this paper is feasible in the evaluation of relative seepage safety level of embankment dams with thin impervious element.  相似文献   

2.
Treatment of the seepage problems at the Kalecik Dam (Turkey)   总被引:10,自引:0,他引:10  
Sedat Turkmen   《Engineering Geology》2003,68(3-4):159-169
This paper describes the seepage prevention measures at Kalecik Dam. Water leaked from the foundation of the dam after the impoundment. The dam, 77 m in height, was constructed for irrigation purposes.

The foundation consists of Mesozoic ophiolite, Paleocene allochthonous units composed of different lithologies and Miocene conglomerate. Karstified and fractured Paleocene limestone outcrops on the right bank of the dam foundation. This unit extends into, and its thickness increases within, the right abutment. The leakage occurs towards the downstream springs through the right bank limestone.

The main grout curtain is 200 m long and 60 m deep and was constructed on the right bank. After reservoir impounding, new springs were observed in the downstream area. Therefore, after the construction of the dam, remedial curtain grouting was required and carried out in three stages. Firstly, the main grout curtain was supplemented by additional grouting to seal the fractures and infill karstic cavities. The diversion tunnel was also repaired. The curtain depth was the same as the depth of the previous curtain. The second stage of additional treatment consisted of new deep grouting. Some investigation holes were also drilled along the same alignment as the main curtain to locate the seepage in the region. These holes were extended to an elevation of 442 m. The final stage of grouting measures was between the spillway and the dam body and underneath the spillway.

As a result of the additional grouting measures, the spring discharges observed downstream of the dam embankment decreased. However, the seepage paths were extended and were moved with time so that the seepage problems are still continuing.  相似文献   


3.
Dams constructed on the seismically active regions have a high-risk potential for downstream life and property. Strong ground motion can result in instability of the dam and strength loss of foundation. Active faults within the foundation of dam have the potential to cause damaging displacement of the structures. Appropriate design measures should be considered to obtain rational solution to the problem of catastrophic release of water from the reservoir, and especially to resist earthquake loads. Safety concerns for dams under the earthquake loads involve the seismic hazard evaluation of dam site for the overall stability of structure. Various types of analyses can be used, ranging from a simplified analysis to more complex procedures based on ground motion parameters and response spectra. This paper briefly evaluates seismic hazard analyses for dam structures, and introduces the analyses for thirty-six dams with height ranging from 15 to 195 m in Kızılırmak basin, Turkey. The seismic hazard analyses have indicated that peak ground acceleration varies within a wide range (0.09–0.45 g) for the dam sites of the basin.  相似文献   

4.
某水库坝基渗透稳定性研究   总被引:4,自引:0,他引:4  
金仁祥 《岩土力学》2004,25(1):157-159
某拟建高为22 m的混凝土重力坝坐落于第四系冰水堆积层之上。在大坝上下游水头差的作用下,产生库水渗漏。库水的大量漏失,不但可能使大坝蓄水达不到设计高程而影响工程效益,而且,水流的渗透作用还会导致地基岩(土)体的恶化,产生渗透破坏,影响大坝本身的安全。在现场调查基础上,用数值模拟方法评价了该水库在库内设置175 m长铺盖条件下的渗漏问题,计算了水库的渗流量、大坝基底的水力坡度。因其量值较大,必须在渗流出口处采取反滤层等工程措施,给相关部门提供设计依据和决策参考。  相似文献   

5.
根据2000年实测数据绘制了在不同水位下水库堤坝测压管等水位线图,建立垂向二维有限元法渗流数值模型,模拟了尔王庄水库堤坝11个典型断面稳定渗流状态。综合分析测压管实测数据、现场勘查和计算结果,确定水库渗漏严重坝段。计算得出全封闭、悬挂式高压喷射灌浆防渗墙两加固方案下坝体单宽渗流量、浸润线、渗透比降等水力要素,结果表明全封闭设计可降低70.04%~98.32%渗流量,截渗沟或明渠处溢出渗透坡降降至0.001~0.023,控制效果显著。  相似文献   

6.
某拟建水电站为高坝大库,挡水建筑物系200m级碾压混凝土重力坝,系我国在境外投资建设的重大能源项目之一。该水电站位于一条区域性的深大断裂(F4断裂)上,该断裂的活动性以及涉及的筑坝技术可行性为本工程的重大技术课题,关乎水电站成立与否的关键。为此开展了区域地震地质调查、物探、钻探、硐探、断裂物质测龄以及岩土物理力学性质现场和室内测试等大量工作,研究表明:(1)该断裂地震活动微弱,最新活动年龄14.2万~79.8万年,是一条晚更新世以来不活动的断裂,为非活动断层;(2)F4断裂对水坝建设存在影响的部位主要为碎裂岩带和F4-1、F4-2断层,其中微新碎裂岩多为Ⅲ1B类岩体,仅F4-2断层下盘影响带内的碎裂岩岩体为Ⅳ1B类岩体,F4-1、F4-2断层带工程性质差,为Ⅴ类岩体,是坝基最软弱的部位;(3)在F4断裂带上筑坝,建库后诱发构造型水库地震的可能性小,存在的主要工程地质问题为坝基变形和渗漏、渗透稳定问题,可通过适当深挖,并结合回填混凝土塞、固结灌浆、加深加密帷幕孔以及增加帷幕排数等工程措施予以处理。因此,F4断裂带上可以兴建水电站工程,筑坝技术可行。结果可为该水电站设计、施工提供技术依据,为类似工程提供技术参考。  相似文献   

7.
Sweden has more than 190 large hydropower dams, of which about 50 are pure embankment dams and over 100 are concrete/embankment dams. This paper presents results from conceptual analyses of the response of typical Swedish rock mass to the construction of a hydropower embankment dam and its first stages of operation. The aim is to identify locations and magnitudes of displacements that are occurring in the rock foundation and grout curtain after construction of the dam, the first filling of its water reservoir, and after one seasonal variation of the water table. Coupled hydro-mechanical analysis was conducted using the two-dimensional distinct element program UDEC. Series of the simulations have been performed and the results show that the first filling of the reservoir and variation of water table induce largest magnitudes of displacement, with the greatest values obtained from the two models with high differential horizontal stresses and smallest spacing of sub-vertical fractures. These results may help identifying the condition of the dam foundation and contribute to the development of proper maintenance measures, which guarantee the safety and functionality of the dam. Additionally, newly developed dams may use these results for the estimation of the possible response of the rock foundation to the construction.  相似文献   

8.
仙岭水库土坝渗流稳定分析及除险加固措施   总被引:12,自引:0,他引:12  
胡强  佘成学 《岩土力学》2004,25(3):503-506
根据湖南省仙岭水库的地质勘探资料,利用有限元进行计算分析,弄清了大坝的渗流情况,分析了大坝存在的渗漏和渗透变形问题,并提出了除险加固的措施,经过计算分析说明:所提出的措施是合理可靠的,所得出的结论可为同类土坝的安全鉴定、加固以及今后土坝设计、施工和管理提供借鉴。  相似文献   

9.
In this study, the earthquake hazard was evaluated for all of 19 of the proposed or built dams along the Mekong River. All values representing a potential indication of hazardous earthquakes, such as the closest earthquake and seismogenic faults and including the seismic parameters required for a seismic safety evaluation, were clarified. The results will be useful in reviewing the safety of existing dams and for the design of suitable earthquake resistant specifications for any currently or future planned dam construction in this area. Seismotectonically, 14 of the 19 proposed Mekong River dams are located within an earthquake source zone. Most of faults are potentially still active, according to both seismicity and paleoseismological evidence. In addition, the maximum credible earthquakes were estimated to be in the range of 7–8 Mw for the closest fault zone of each dam. Previous isoseismal maps indicated a risk of shaking intensities of around scale III–IV (Modified Mercalli Intensity Scale) for the dams. According to the preliminary ranging of the International Commission on Large Dams, 9 of these 19 dams are classified as in an extreme hazard class and so need careful observation and monitoring of hazardous earthquakes. An effective mitigation plan should also be prepared for each operating dam.  相似文献   

10.
11.
湖南新田水浸窝水库渗漏分析及其治理   总被引:5,自引:3,他引:2  
水浸窝水库是采用全封闭式堵洞而成的地下、地表水库。其渗漏类型按渗漏及出流状况分,属于集中管道渗漏、集中管道式出流;以渗漏场在水库中所处的地貌部位分,属于近坝库岸渗漏类型(坝下渗漏)。解决该水库渗漏的最佳方案是在原坝址上游83. 0m处修建新坝并辅以适当的帷幕灌浆处理。该处工程地质条件好,无需清基,坝前有天然通气孔,经济安全。   相似文献   

12.
地质雷达在探测南方岩溶地区堤坝隐患中的应用   总被引:8,自引:0,他引:8  
通过对广东、湖南等省5个溶岩地区堤坝隐患地质雷达探测及其影像特征研究,指出:在我国南方岩溶地区堤坝隐患探测中,地质雷达可以解决坝体白蚁巢、溶洞、土洞隐患探测;坝体岩体性界面划分;坝体断裂探测;水库坝体浸润线和库底防渗土工膜完整性检测等问题。  相似文献   

13.
卡拉水电站坝区渗流控制效应精细模拟与评价   总被引:1,自引:0,他引:1  
郑华康  张枫  李毅  陈益峰  周创兵 《岩土力学》2012,33(9):2743-2748
卡拉水电站坝址区河谷狭窄,岸坡陡峻,地质条件复杂,渗漏问题突出。为减小卡拉坝区渗漏并改善大坝的渗透稳定性,工程设计采取防渗帷幕、排水孔幕和排水洞等防渗排水措施。采用子结构、变分不等式和自适应罚函数相结合的方法(简称SVA方法),结合典型溢流坝段与坝区整体渗流场分析成果,评价卡拉大坝及坝基渗流控制方案的合理性,并论证其优化的可能性。研究表明:①防渗帷幕有效雍高了帷幕上游侧岩体内的地下水位、增加了绕坝渗流的渗径长度并降低了坝基的扬压力,排水系统则显著降低了坝体内的孔隙水压力以及坝基扬压力;②排水孔幕间距对坝体内的自由面分布有着显著影响,排水孔幕间距取3.0~4.5 m是合适的。  相似文献   

14.
Zhang  Wenbing  Shen  Zhenzhong  Chen  Guanyun  Zhang  Wanlin  Xu  Liqun  Ren  Jie  Wang  Fei 《Hydrogeology Journal》2021,29(5):1831-1855

Seepage analysis and assessment of the effect of seepage control at reservoir sites are essential parts of dam design and operations, and of considerable significance for the safe and economic design of the masses and hydraulic structures associated with reservoir sites. In this study, a systematic process is provided for the optimal design and assessment of seepage control of reservoir dams under karst development conditions. A reservoir dam planned for construction in the middle-upper reaches of the Huayang River in China is selected as a case example for illustration. A three-dimensional equivalent continuum seepage finite-element numerical model is applied to investigate the effectiveness of the proposed and optimized seepage-control schemes, and it is calibrated by an inversion analysis of the initial seepage field based on the flexible tolerance method and field penetration test data. By analyzing the sensitivity of seepage discharge to the length and depth of the grouting curtain, a safe and economic seepage-control optimization scheme is suggested. Additionally, the sensitivity of seepage discharge to the hydraulic conductivity of the limestone layer is analyzed, and the results show that the hydraulic conductivity of the limestone layer has a significant impact on the seepage discharge of the reservoir site. The methodology and results derived from this study can provide technical support and reference for the optimal design and assessment of seepage control for reservoir dam engineering under karst conditions.

  相似文献   

15.
Gypsum is a highly soluble rock and is dissolved readily to form caves, sinkholes, disappearing streams, and other karst features that typically are also present in limestones and dolomites. Gypsum karst is widespread in the USA and has caused problems at several sites where dams were built, or where dam construction was considered. Gypsum karst is present (at least locally) in most areas where gypsum crops out, or is less than 30–60 m below the land surface. These karst features can compromise on the ability of a dam to hold water in a reservoir, and can even cause collapse of a dam. Gypsum karst in the abutments or foundation of a dam can allow water to pass through, around, or under a dam, and solution channels can enlarge quickly, once water starts flowing through such a karst system. The common procedure for controlling gypsum karst beneath the dam is a deep cut-off trench, backfilled with impermeable material, or a close-spaced grout curtain that hopefully will fill all cavities. In Oklahoma, the proposed Upper Mangum Dam was abandoned before construction, because of extensive gypsum karst in the abutments and impoundment area. Catastrophic failure of the Quail Creek Dike in southwest Utah in 1989 was due to flow of water through an undetected karstified gypsum unit beneath the earth-fill embankment. The dike was rebuilt, at a cost of US $12 million, with construction of a cut-off trench 600 m long and 25 m deep. Other dams in the USA with severe gypsum-karst leakage problems in recent years are Horsetooth and Carter Lake Dams, in Colorado, and Anchor Dam, in Wyoming.  相似文献   

16.
Prehistorical earthquake induced features, such as faults, folds, fissures, and slumps have been discovered during the Karameh dam construction. The dam is located close to the plate tectonics boundary formed by the active Jordan Valley Fault. Of most importance are those known as the fold-type deformations ``décollement type of structure' which are well preserved in the laminated Lisan formations. These features show that historical moderate to strongly sized earthquake activities are likely to have been originated in the vicinity of the dam site. Such features may well provide valuable information for identification of areas of highly strong earthquake regions.  相似文献   

17.
张茹  陈群  何昌荣  费文平 《岩土力学》2008,29(Z1):79-84
土石坝震害将导致严重后果,目前国内外修筑于地震区的土石坝在抗震设计时都进行了动力分析。室内动力试验提供土石料可靠的动强度和动力参数是土石坝地震动力分析准确性的关键。水牛家心墙土石坝坝高100多米,大坝设防烈度9度,采用动三轴仪,对其坝基②层细砂砾料和心墙防渗土料进行大量的动力特性试验研究,分析两种土料的动模量阻尼特性,并简述其影响因素。分析试验结果有:使用一个试样完成三个不同的围压力?3c或固结比Kc,与《土工试验规程》推荐方法相比,大大减小了试验和分析工作量, 且有相当的规律性和准确程度;动模量阻尼比的主要影响因素是动应变幅、围压力、固结主应力比、孔隙比等。动应变水平影响动模量阻尼成倍增减,动模量随围压力?3c增减而增减,阻尼比D随?3c的升高而略有减小,动模量和阻尼比随固结比Kc增减而增减,Kc从1到2可使心墙土料的Edmax增加60%左右;土类不同,模量阻尼也不尽相同。水牛家心墙料的动模量较高,阻尼比较小,不易产生动力破坏。  相似文献   

18.
西南某水电站坝址基岩为碳酸盐岩,坝区断层构造和岩溶较发育。水库蓄水后,坝址右岸抗力体1 315 m排水洞出现持续渗漏。随库区水位升高,涌水量逐渐加大至约1.9 m3·s?1,水库无法正常蓄水。为查明库水渗漏途径,有针对性地采取措施减少渗漏量,开展了岩溶渗漏研究。通过工程地质测绘、岩溶水文地质调查、钻探、压水试验、孔内电视、孔内电磁波CT等勘察手段,结合前期平硐、基坑开挖和物探等勘查成果,并利用灌浆孔灌浆过程试验数据,最终查明库水渗漏通道:在水压力作用下,库水沿断裂构造F12下渗,在深部沿层间溶蚀带绕过防渗帷幕,呈30°倾角向下游逐步抬升,最终通过竖向岩溶发育带,从1 315 m排水洞地质薄弱点涌出。通过对灌浆帷幕采取补强措施,封堵了主要渗漏通道,库水渗漏得到有效控制,达到了设计要求。   相似文献   

19.
A Probabilistic method is used to evaluate the seismic hazard of nineteen embankment dam sites in Jordan. A line source model developed by McGuire (1978) is used in this study. An updated earthquake catalogue covering the period from 1 A.D. to 1991 A.D. is used for this purpose. This catalogue includes all earthquakes that occurred in Jordan and adjacent areas, more specifically between latitudes 27.0°–35.5° N and longitudes 32.0°–39.0° E.Nine distinct seismic sources of potential seismic activities are identified. The seismic hazard parameters are determined using the method suggested by Kijko and Sellevoll (1989).The Peak Ground Acceleration (PGA) is selected as a measure of ground motion severity. Esteva (1974) attenuation relationship is used in evaluating PGA values at each dam site. Analysis is carried out for 50%, 90%, and 95% probability that is not being exceeded in a life time of 50, 100, and 200 years.Results of analysis indicate that PGA values are higher for dam sites closer to the Dead Sea Fault. This fault is believed to be responsible for most earthquake activities in Jordan and vicinity. The highest PGA value is found to be for Al-Karama dam site.  相似文献   

20.
A probabilistic 3-D slope stability analysis model (PTDSSAM) is developed to evaluate the stability of embankment dams and their foundations under conditions of staged construction taking into consideration uncertainty, spatial variabilities and correlations of shear strength parameters, as well as the uncertainties in pore water pressure. The model has the following capabilities: (1) conducting undrained shear strength analysis (USA) and effective stress analysis (ESA) slope stability analysis of staged construction, (2) incorporation of field monitored data of pore water pressure, and (3) incorporation of increase of undrained shear strength with depth, effective stress, and pore water pressure dissipation. The PTDSSAM model is incorporated in a computer program that can analyze slopes located in multilayered deposits, considering the total slope width.

The main outputs of the program are the geometric parameters of the most critical sliding surface (i.e., center of rotation/radius of rotation and critical width of failure), mean 2-D safety factor, mean 3-D safety factor, squared coefficient of variation of resisting moment, and the probability of slope failure. The program is applied to a case study, Karameh dam in Jordan. Monitored data of induced pore water pressure in the dam embankment and soft foundation were gathered during dam construction.

The stability of Karameh dam embankment and foundation was evaluated during staged construction using deterministic and probabilistic analysis. Foundation stability was evaluated based on the monitored data of pore water pressure.

The study showed that the mean values of the corrective factors which account for the discrepancies between the in situ and laboratory-measured values of soil properties and for the modeling errors have significant influence on the 2-D safety factor, 3-D safety factor, slope probability of failure, and on the expected failure width.

The degree of spatial correlation associated with shear strength parameters within a soil deposit also influences the probability of slope failure and the expected failure width. This correlation is quantified by scale of fluctuation. It is found that a larger scale of fluctuation gives an increase in the probability of slope failure and a reduction in the critical failure width.  相似文献   


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