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1.
Hongxing reservoir was constructed on the floodplain of Hulan River in Heilongjiang. The geological problem of the reservoir is the seepage of the dam base and its related seepage stability. The leakage of the reservoir is caused by the water head differences between the upstream and downstream of the dam. Severe seepage could decrease the engineering benefits of the reservoir. Moreover, infiltration function of water will influence the safety of the dam. Through the analysis on the granule constitute and the formation of the dam base, the types of the seepage failure apt to happen were defined and the anti-infiltration and the permissible depression ratio were determined. Using the numerical simulation software GMS, the two-dimension numerical modeling has been carried out to analyze the seepage field of the reservoir. Through the two conditions modeling with concrete impervious wall and no concrete impervious wall, the largest flow rate, single-wide seepage discharge and the max infiltration gradient of the dam base were calculated. According to the permeable depression ratio of the dam base, the seepage stability of Hongxing reservoir dam base was analyzed.  相似文献   

2.
Clogging effect, as a new concept in geological engineering, is a phenomenon of permeability decreasing under seeping in reservoir dam foundation of the alluvial and diluvial deposits with deep and thick layer, coarse particle and high permeability in mountains-gully rivers of Tibetan Plateau. A clogging infiltration instrument has been designed successfully and a series of simulation tests have been done. Based on large amounts of data, it is confirmed that the existence of the clogging effect and the law of infiltration clogging is found out. Three indexes are proposed such as "optimal size of particle", "optimal size range of particle" and "characteristic pore", which are closely related with effect of infiltration clogging. The concept and results can offer a new idea to solve problems on anti-seepage of dam foundation in mountains-gully rivers environment and to study artificial clogging, meanwhile supplement of the concept of seepage deformation.  相似文献   

3.
At present, the mechanism research on glacial lake outburst mainly focuses on the ice quake and ice landslide, etc. To some glacial lakes, the seepage deformation is the dominant factor in outburst process. Taking the Yindapu Glacial Lake in Tibet as an example, using SEEP/W module of FEM software (GEO-STUDIO), the authors analyzed seepage stability of terminal moraine ridge dam. The leading role of seepage deformation in some glacial lake outburst mechanism is proposed and proved.  相似文献   

4.
At present, the mechanism research on glacial lake outburst mainly focuses on the ice quake and ice landslide, etc. To some glacial lakes, the seepage deformation is the dominant factor in outburst process. Taking the Yindapu Glacial Lake in Tibet as an example, using SEEP/W module of FEM software ( GEO-STUDIO), the authors analyzed seepage stability of terminal moraine ridge dam. The leading role of seepage deformation in some glacial lake outburst mechanism is proposed and proved.  相似文献   

5.
The three-dimensional seepage simulation test device for siltation dam foundation soil is a multifunctional penetration instrument which is designed for the simulation of infiltration clogging,seepage damage,and dam seepage and so on. This device is different from the traditional instruments for the rock and soil permeability. In order to verify the practicability of the device,the authors collected the soil samples for laboratory penetration test,observed the seepage damage phenomenon,and obtained the dynamic change curve of permeability coefficient and isopotential map of water pressure. At the same time,the Geostudio finite element software is used to simulate the steady seepage of the test device. By contrast of the isopotential maps between simulation and actual water pressures,it is found that they are approximately the same. It is proved that the test data of the device is scientific and reliable,reaching the results of the test and design purposes. The instrument can be used in many aspects of experimental study on soil seepage.  相似文献   

6.
采用SBAS-InSAR技术获取WLL水库及周边区域地表沉降信息。结果表明:1)WLL水库大坝表现为整体下沉,沉降速率在逐年减小后趋于稳定;2)受水库水位、大坝自重及地下水位等因素的共同影响,大坝沉降速率、累积沉降量表现为东南至西北方向逐渐增大;3)水库周边区域沉降未对大坝产生实质性影响。  相似文献   

7.
宿鸭湖水库是一座综合利用的平原大型水库,经75.8特大洪水考验后暴露出坝基渗漏及渗透稳定等诸多工程地质问题。本文通过对多次勘察及水库观测资料的整理分析,对洼地段坝后渗水的形成机制进行了论证,指出坝基粉质粘土(Ⅲ)的大孔隙结构与坝后排渗设施不完善、年久失修是该段坝后渗水的主要原因,并提出治理措施,建议被设计部门采纳。大坝经加固除险施工,水库运行15年来证明,大坝安全,水库运行正常。  相似文献   

8.
本文在简要介绍燕山水库工程地质环境的基础上,分析论述了可能产生的环境工程地质问题。指出水库淹没及浸没、水库诱发地震、坝基渗透变形及膨胀土体稳定问题是该水库的主要环境工程地质问题,并提出了进一步研究的途径。  相似文献   

9.
低渗储层中启动压力梯度导致流体渗流规律呈现非线性特征,使得低渗储层的开发方式与中高渗储层不同。为了研究新立油田低渗储层中的非线性渗流现象,以新立油田天然低渗岩心为研究对象,通过精密压力测试多孔介质渗流实验分析超低界面张力体系对新立油田低渗岩心中单相及两相流体启动压力梯度的影响。研究结果表明:对于任何流体,新立油田低渗岩心均表现出非线性渗流特征,存在着一定启动压力梯度;低渗岩心拟启动压力梯度的值高于启动压力梯度,且两者均随着渗透率的提高而降低且与渗透率之间均为幂关系;超低界面张力体系可以明显地降低低渗岩心最小启动压力梯度与拟启动压力梯度;对于不同渗透率的岩心,两相临界启动压力梯度与含水饱和度的关系均表现出相似的变化规律,即两相临界启动压力梯度随着平均含水饱和度的上升先上升后降低;在不同渗透率下,对比水驱和超低界面张力体系驱的临界压力梯度最高点,超低界面张力体系下的临界压力梯度最高点明显小于水驱,这表明界面张力的减小可以明显地降低驱油时产生的两相临界压力梯度,超低界面张力体系改善了油藏的注入性。本研究对新立低渗储层水驱后开发方式的选择提供了参考。   相似文献   

10.
帷幕结合基坑内降水的方案是深基坑工程中地下水控制的主要趋势,由于基坑渗流场的复杂性和尺度效应,业内尚无成熟且精确的解析计算方法。在分析悬挂式帷幕基坑与闸坝渗流场特点异同的基础上,对闸坝改进阻力系数法进行修正,提出了承压水条件下悬挂式帷幕基坑渗流段的分段方式,推导了新的考虑基坑特殊段"水平汇流段"的等效阻力系数计算公式,并将之拓展至含水层各向异性条件下,实现了悬挂式帷幕基坑涌水量和坑外水位降深的定量计算;最后,结合典型基坑案例,通过数值模拟验证了该方法的精确性。研究表明:经过合理分段、等效和修正处理后,改进阻力系数法在悬挂式帷幕基坑承压水渗流计算中,与数值法计算结果的相对误差能控制在5%以内,精度较高,且具有分段灵活、计算简单的优点,能适用于不同场地条件下基坑降水设计的计算。   相似文献   

11.
利用三峡数字遥测地震台网产出的地震观测资料,基于互相关-重排实验技术系统分析三峡工程在蓄水进程中地震活动与库水位的相关性及不确定度,探讨三峡水库地震的成因机制。结果表明:1)蓄水进程中库首区地壳经历了“持续加载-渗透饱水-回弹与再平衡”的复杂过程,库区地震活动的时空分布特征与库水位的时序变化关系密切;2)从开始蓄水到175 m实验性蓄水阶段,巨量的直接库水荷载导致沿江近库岸10 km范围内的矿洞、溶洞、浅表性岩层、断层等失稳而诱发地震,震源深度5 km范围内的浅震活动明显与库水位快速上升产生的弹性加载有关,对库水位上涨呈“瞬时”响应;3)随着175 m实验性蓄水阶段稳定运行,渗透作用逐渐成为库区地震活动的主要影响因素,断层软化等作用可能是接连触发2014-03秭归M4.5、M4.9等构造型水库地震的原因,震源深度大于5 km的深震活动开始呈现对库水位的“滞后”响应特征。长江香溪库段作为仙女山、九畹溪断裂与长江交会的三角形构造部位,其周缘或存在发生中等强度地震的危险性。  相似文献   

12.
禹门河水库是洛河上的一座反调节水库 ,坝址地质条件较复杂 ,就拱坝与重力坝两种坝型而言各有优缺点。本文通过对坝址区建坝工程地质条件的研究分析 ,提出禹门河坝址具有良好的建坝条件 ,且重力坝方案优于拱坝方案。  相似文献   

13.
Clogging effect, as a new concept in geological engineering, is a phenomenon of permeability decreasing under seeping in reservoir dam foundation of the alluvial and diluvial deposits with deep and thick layer, coarse particle and high permeability in mountains-gully rivers of Tibetan Plateau. A clogging infiltration instrument has been designed successfully and a series of simulation tests have been done. Based on large amounts of data, it is confirmed that the existence of the clogging effect and the law of infiltration clogging is found out. Three indexes are proposed such as "optimal size of particle", "optimal size range of particle" and "characteristic pore", which are closely related with effect of infiltration clogging. The concept and results can offer a new idea to solve problems on anti-seepage of dam foundation in mountains-gully rivers environment and to study artificial clogging, meanwhile supplement of the concept of seepage deformation.  相似文献   

14.
库岸滑坡体分布广泛,在库水位升降和降雨条件下极易失稳。三板溪水电站东岭信滑坡堆积体总方量2 000×104 m3,最大厚度150 m,2006年水电站蓄水后滑坡体开始出现大变形,每年雨季加剧。首先经野外地质勘察和十余年监测数据整理,探明了地质条件和变形规律;其次使用SEEP/W模块对不同库水位升降速率、2019年库水位结合实测降雨条件下的饱和-非饱和流进行模拟,并采用SLOPE/W分别计算不同时刻的稳定系数。分析认为东岭信为超深层滑坡,其变形过程深受库水位升降和降雨影响;滑坡体具有明显的滞水特征,渗流过程复杂;在库水位上升过程中稳定系数不断下降,而在库水位消落过程中稳定性逐渐增强;在库水位上升和强降雨量共同作用下稳定性下降很快,汛后10 d左右达到最低值,此时的稳定性最差。本研究可用于指导库水位升降和降雨条件下大型滑坡体稳定性评价。   相似文献   

15.
高含水期水平井挖潜物理模拟   总被引:1,自引:0,他引:1  
结合油藏渗流与水平井筒内流体流动的耦合性,以水驱油相似原理为基础,建立三维油藏物理胶结水平井多层模型,并从其微观孔隙特征及油水渗流特征等方面与实际油藏进行对比.以物理模型为基础,从动态变化指标及油水分布特征等角度研究不同挖潜方式在高含水期挖潜效果的差异性,总结水平井挖潜提高采收率的规律.结果表明:在交错井网及正韵律储层的条件下,高含水期剩余油多富集于井组中心储层顶部区域;高含水期应用水平井进行挖潜剩余油,其在多个动态变化指标上优于直井,并且水平井对井组边角区域及储层中下部位剩余油的控制能力也较强;水平井与常规井网的不同配置关系对挖潜效果有较大影响,水平井挖潜动态也随着含水率上升呈现不同的规律.  相似文献   

16.
库岸滑坡受到库水升降作用影响, 内部渗透压力会产生周期性的变化。动态渗透压力会导致滑带结构与强度产生劣化, 进而影响滑坡整体稳定性。为揭示滑带在渗透作用下的结构演变特征, 通过室内渗流试验结合CT扫描技术获取了黄土坡滑坡滑带在不同渗流条件下的细观结构特征, 采用Avizo软件量化滑带细观结构参数, 定量分析了不同渗透条件下滑带结构的演变规律。结果表明, 滑带的渗透系数随渗流时长的增加而呈指数形式下降, 且水力梯度越大最终试样的渗透系数越小; 连续的CT重构图像显示渗流过程中部分黏土团聚体发生解体, 大孔隙被附近的细颗粒逐渐充填, 试样结构的宏观均一性增强; 统计数据表明滑带土的表观孔隙率由5%下降到了1%, 等效直径小于80 μm的孔隙占比随渗流时长的增加而增多, 而等效直径大于80 μm的孔隙占比随渗流时长的增加而减少。结果证明周期性渗透作用会影响滑带内孔隙结构的分布特征, 细观上表现为大孔隙被小颗粒充填, 导致渗流通道变得细长而弯曲, 孔隙的有效连通性被削弱, 宏观上表现为渗透系数随渗流时长的增加而降低。   相似文献   

17.
渗流理论中现有的潜水面边界条件表达式是针对特定方向的一类潜水渗流问题而给出的。随着与地下水有关的工程活动的逐步复杂化,任意直角坐标系下潜水渗流问题日渐多见。因此给出描述这类渗流问题潜水面边界条件的最一般表达式,将使建立任意座标方向下的潜水三维流或倾斜平面二维流问题的数学模型成为可能,这是对渗流基本理论的一种完善。  相似文献   

18.
滑坡是水库库区主要地质灾害类型之一,开展水库滑坡成因机制研究具有重要理论意义和工程应用价值.利用WebofScience(WoS)数据库和VOSviewer文献计量工具对1999-2018年已发表的969篇以水库滑坡为主题的相关论文进行研究趋势分析.文献计量分析表明三峡库区滑坡稳定性和变形研究是未来水库滑坡成因机制研究主要趋势.从库水对滑坡的宏观力学作用方式、库水作用下岩土体渗流应力耦合机理和库水对岩土体劣化作用过程等方面,对国内外水库滑坡成因机制研究的主要成果与进展进行了综述.综合现有的研究成果指出水库滑坡在精细化地质建模、岩土体多场耦合特征参数获取和岸坡长期演化评价等方面尚存在不足.基于上述问题,提出水库滑坡成因机制研究应以多场信息监测为重要手段,立足多学科交叉,采用大数据融合与挖掘和人工智能技术等解决水库滑坡长期演化趋势难题.考虑水库滑坡所处地质环境的复杂性,建议未来应在水库滑坡立体精细地质建模、多场关联监测、地质结构多场多尺度演变过程、基于监测数据大数据分析的滑坡预警阈值确定和原位试验综合平台构建等方面进一步深入研究.  相似文献   

19.
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20.
东平湖是黄河下游的重要分滞洪工程,二级湖堤是东平湖的隔堤,将东平湖滞洪区分隔为新老湖区,2级运用。根据新湖区情况的变化和老湖功能作用的变化,可以看出二级湖堤现堤防级别与东平湖现状及规划不相符,需重新确定,应由4级堤防提高到1级堤防。同时,南水北调远期规划利用东平湖老湖作为调蓄水库,对其二级湖堤功能的变化进行了分析,提高了远期二级湖堤将成为水库围坝,为1级建筑物。  相似文献   

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