首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到18条相似文献,搜索用时 140 毫秒
1.
水流冲刷过程中河岸崩塌问题研究   总被引:4,自引:0,他引:4  
沈婷  李国英  张幸农 《岩土力学》2005,26(Z1):260-263
采用土工数值分析方法,对水流冲刷过程中的河岸崩塌问题进行了分析。分析了水流冲刷引起的河岸后退距离及后退过程中坡内的渗流情况与坡体的稳定性;探讨了水流冲刷过程中岸坡崩塌的发生机理;指出了坡内的渗流作用与坡前水流的冲刷作用是岸坡发生崩塌的主要动力因素,而岸坡土体的物质组成和分布、岸坡坡度等则是岸坡发生崩塌的主要内在因素;并提出了相应的工程防护措施。  相似文献   

2.
在弯道水槽中展开系列试验,研究水力冲刷过程中均质土岸坡冲刷崩塌输移与河床冲淤过程及其影响因素。该过程及变化特征可描述为:水下坡面侵蚀及坡脚淘刷导致岸坡失稳崩塌;暂时堆积在凹岸坡脚处的崩塌体加剧附近水流紊动程度利于其输运与分解;分解后较粗的颗粒随弯道螺旋流以推移质形式被输移至下游凸岸落淤,较细的颗粒大部分都随水流以悬移质形式被携带至下游出口;水流结构随岸坡及河床变形而调整;如此循环往复。试验成果进一步表明:冲刷状态下,试验材料黏性越小、近岸流速越大、作用时间越长,岸坡冲刷崩塌量及河床冲刷量都越大;同条件下岸坡冲刷崩塌总量大于河床冲刷总量,且河床相对冲刷率随岸坡冲刷崩塌量的增大而减小,数值范围为0.40~0.92。  相似文献   

3.
在弯道水槽中展开系列试验,研究水力冲刷过程中非粘性岸坡冲刷崩塌与河床冲淤交互作用过程及其影响因素,进一步分析塌岸淤床泥沙贡献率。试验成果表明,水流冲刷过程中岸坡破坏是水流淘刷岸坡坡脚、岸坡崩塌及崩塌体淤积坡脚并在河床上输移掺混的交互作用反复循环过程。塌岸淤床模式及掺混程度与近岸流速、主流贴岸程度、水位及河床边界条件等关系密切。近岸流速越大、水位越高,岸坡总冲刷坍塌量、河床总淤积量以及河床累计淤积率也越大,稳定后的岸坡越趋平缓;河床可动程度越大,岸坡总冲刷坍塌量及其在河床上的总淤积量也越大,但河床累计淤积率却越小;水位越高,在弯道段等横向输沙强度较大的地方,岸坡冲刷崩塌体与河床发生掺混的程度也越大。  相似文献   

4.
渐进坍塌型崩岸的力学机制及模拟   总被引:1,自引:0,他引:1       下载免费PDF全文
针对渐进坍塌型崩岸,从土力学和河流动力学两方面理论出发,建立了岸坡稳定的力学模式,结合室内概化模拟试验和数值计算,分析了岸坡稳定或破坏的力学机制,揭示了缓坡出现崩岸的原因。结果表明,岸坡坡脚未受水流冲失时,若坡内渗流出逸坡降小于渗透破坏的临界坡降,岸坡处于稳定状态,当坡脚被水流冲失后,渗流渗径缩短,水土结合处坡面出逸坡降增大,大于临界坡降时则出现渗透破坏,引起局部小幅度土体崩塌,其后部土体失去支撑而陆续产生失稳破坏,随着时间的延长,土体崩塌现象逐步向后发展,最终导致岸坡整体崩塌破坏。  相似文献   

5.
针对渐进坍塌型崩岸,从土力学和河流动力学两方面理论出发,建立了岸坡稳定的力学模式,结合室内概化模拟试验和数值计算,分析了岸坡稳定或破坏的力学机制,揭示了缓坡出现崩岸的原因。结果表明,岸坡坡脚未受水流冲失时,若坡内渗流出逸坡降小于渗透破坏的临界坡降,岸坡处于稳定状态,当坡脚被水流冲失后,渗流渗径缩短,水土结合处坡面出逸坡降增大,大于临界坡降时则出现渗透破坏,引起局部小幅度土体崩塌,其后部土体失去支撑而陆续产生失稳破坏,随着时间的延长,土体崩塌现象逐步向后发展,最终导致岸坡整体崩塌破坏。  相似文献   

6.
余明辉  郭晓 《水科学进展》2014,25(5):677-683
以二元结构河岸崩塌模式为研究背景,在弯道水槽中展开系列试验,研究凹岸坡脚处成型崩塌体在水力作用下输移过程及其对岸坡稳定性与河床冲淤的交互影响。试验成果表明,崩塌体经水力分解破碎呈块状、片状或颗粒状起动,部分随水流带至凸岸或下游,堆积在坡脚附近的崩塌体残留量随水力作用大小及土体特性不同而变化。崩塌体临水面周围尤其上下游端水流紊动强烈易形成较大剪切力区,临坡面上下游端附近剪切力较无崩塌体时减小;崩塌体体积越大,对剪切力区特征的改变也越明显。崩塌体的存在虽不能制止附近岸坡的再次崩塌,但可能抑制崩岸发展及附近河床淤积的程度,崩塌体的粘性或体积越大,这种抑制作用越显著;相同崩塌体抑制附近河床淤积的程度较抑制岸坡崩塌的程度大。  相似文献   

7.
在弯道水槽中开展6组试验,分别用非黏性土及黏性土填筑河床,研究相同水力作用下近岸河床组成对黏性岸坡崩塌的影响规律。研究发现,在试验给定的岸坡及河床组成情况下,非黏性河床凹冲凸淤且总体表现为淤积,近岸河床及凹岸岸坡冲刷强度大,凸岸附近床面上泥沙掺混较明显;黏性河床及凹岸岸坡均被冲刷,河床主流区冲刷强度比近岸河床及凹岸岸坡大。相较于黏性河床,非黏性河床近凹岸处较易冲刷,水流结构重新调整,凹岸坡脚处水流流速及紊动能可增至2倍左右,环流强度可增至11倍,加速了岸坡崩塌及崩塌体的分解输移;非黏性河床近凹岸坡脚处变形以及凹岸岸坡崩塌量均相对较大,岸坡崩塌强度为河床淤积强度的2~4倍,崩塌物质可充分补给河床的泥沙来源;经水力冲刷后非黏性河床组成情况下形成的河道滩槽高差相对较小,河道横断面相对宽浅。  相似文献   

8.
流滑型崩岸河岸侧蚀模式初探   总被引:1,自引:0,他引:1       下载免费PDF全文
流滑型崩岸是冲积河流河岸常见的一种崩塌形式,其发展速度快、破坏力强;该类崩岸主要取决于水流的直接冲刷,河岸崩退过程中水面与岸顶高差较小.依据此类崩岸的特征,基于水流冲刷分析,在基础层面上初步探讨并建立了流滑型崩岸的河岸侧蚀模式.结合水槽试验与土工离心模拟试验,对该模式进行了分析研究,初步率定了模式中的河岸侧蚀系数,计算...  相似文献   

9.
三峡水库蓄水后下荆江河段河床冲刷下切, 局部河段崩岸险情频繁发生。为研究下荆江二元结构河岸的土体特性及崩岸机理,结合近期该河段崩岸情况,现场查勘了6个崩岸点,并对河岸土体进行了室内土工试验。试验结果表明下荆江河岸土体的垂向组成具有典型的二元结构特征:下部非粘性土(沙土)层较厚,上部粘性土(低液限粘土)层较薄且松散。以河岸崩塌过程分析为基础,提出了二元结构河岸发生绕轴崩塌时上部土层稳定性的计算方法。结合近岸水动力条件计算及土工试验结果,定量分析了二元结构河岸的崩塌机理及其影响因素:① 下部沙土层的起动流速比近岸流速小得多,故该土层容易受水流冲刷;②上部粘性土层崩塌前抗冲强度很大,但多为低液限粘土且相对松散,崩塌后堆积在岸边容易分解并被水流带走;③ 河岸稳定安全系数在一个水文年内呈周期性变化,落水期安全系数最小,故容易引发崩岸,该计算结果与近期崩岸实际统计结果一致。  相似文献   

10.
对前文提出的平面二维混合模型进行了验证与实际工程应用.模拟了概化顺直河段在不同冲淤条件下的河岸后退过程.将混合模型应用于实际工程问题,模拟了黄河下游花园口游荡型河段的河床纵向与横向变形过程.通过对断面平均水位、流速分布、断面形态变化等计算值与原型观测值的对比,两者符合较好.表明该混合模型不仅能较好地模拟出河道内的水沙运动与河床纵向冲淤过程,而且能模拟出滩岸的后退与淤长过程,尤其能模拟滩岸的冲刷与崩塌过程.  相似文献   

11.
岸滩侧蚀崩塌现象普遍存在于冲积河流演变过程中,是河道治理需重点关注的问题之一,岸滩侧蚀崩塌速率的准确量测则是崩岸机理及其治理措施研究的关键基础。基于图像处理技术,建立了河岸侧蚀崩塌速率试验量测系统,通过图像追踪河岸模型上边缘示踪网格位置变迁,提出了一种河岸侧蚀崩塌速率测量方法。以试验水槽为例,对河岸侧蚀崩塌速率进行了量测,并与经验公式计算值进行了比对,两者基本吻合,可较好地反映流速、土体级配等岸滩侧蚀崩塌速率的影响因素及其变化规律。研究成果可为江河崩岸机理的深入研究提供技术支撑。  相似文献   

12.
季节性冰冻河流(季冻区河流)受水动力-冻胀/冻融耦合作用,岸滩崩塌机理复杂,且对河道演变具有重要影响。通过建立水动力-冻胀/冻融耦合作用岸滩崩塌力学模式,以中国东北地区松花江干流大顶子山航电枢纽下游近坝段为例,开展季冻区河流岸滩崩塌及河道演变的三维数值模拟分析。研究结果表明:岸滩坡脚侧蚀主要由水力冲刷所控制,冻胀作用使岸滩开裂深度增加,冻融过程则会使岸坡土体力学强度降低,影响岸滩稳定;岸滩崩塌对季冻区天然河流演变具有显著影响,考虑岸滩崩塌的模拟结果与天然实测结果基本吻合,可较好地模拟河床冲淤、岸滩崩塌所引起的河道演变过程。研究成果可为季冻区河流岸滩崩塌及河道演变的深入研究提供技术支撑。  相似文献   

13.
于玉贞  谢立全  孙逊 《岩土力学》2007,28(Z1):311-314
岸坡地形随河流上游来水来沙、河势变化等因素而不断变化,直接影响岸坡稳定性。江河水流、岸坡渗流均对岸坡水下地形变化有很大的影响。通过分析泥沙受力条件和冲刷特性,应用在室内水槽进行的不同泥沙粒径在多种水流条件下的冲刷率试验研究成果,在岸坡泥沙受力分析基础上推导了崩岸冲刷率公式,并以算例具体说明江河水流和岸坡渗流对其冲刷变形过程的影响。  相似文献   

14.
窝崩是冲积河流常见的一种崩岸类型,具有发展速度快、破坏力强等特点,且不易成功模拟。以长江下游扬中河段指南村窝崩为例,基于窝崩机理及其力学模式,采用考虑回流区紊动影响的挟沙力公式模拟窝塘内泥沙输移,初步建立了窝崩三维数值模拟方法。研究结果表明:窝崩发生初期窝塘内局部水流具有底层流速大于上层流速的特征,这为窝塘底部及坡脚淘刷提供了动力条件;窝塘内回流区水流挟沙力的计算对窝崩形态模拟结果存在显著影响,考虑回流区紊动影响的泥沙输移特性后,模拟结果与实测结果基本吻合,可较好地模拟窝崩的快速发展过程。研究成果可为窝崩机理的深入认识和窝崩治理提供科技支撑。  相似文献   

15.
典型窝崩三维数值模拟   总被引:1,自引:1,他引:1       下载免费PDF全文
窝崩是冲积河流常见的一种崩岸类型,具有发展速度快、破坏力强等特点,且不易成功模拟。以长江下游扬中河段指南村窝崩为例,基于窝崩机理及其力学模式,采用考虑回流区紊动影响的挟沙力公式模拟窝塘内泥沙输移,初步建立了窝崩三维数值模拟方法。研究结果表明:窝崩发生初期窝塘内局部水流具有底层流速大于上层流速的特征,这为窝塘底部及坡脚淘刷提供了动力条件;窝塘内回流区水流挟沙力的计算对窝崩形态模拟结果存在显著影响,考虑回流区紊动影响的泥沙输移特性后,模拟结果与实测结果基本吻合,可较好地模拟窝崩的快速发展过程。研究成果可为窝崩机理的深入认识和窝崩治理提供科技支撑。  相似文献   

16.
Variations in pore-water pressure determined by the groundwater table within a riverbank have been investigated and recognized as an essential factor in determining riverbank stability with respect to mass failure. However, the effect of pore-water pressure is taken into account for most of the existing riverbank stability models under some simplified assumptions, and the limitations of predicting ability may arise. To avoid the unrealistic estimation of pore-water pressure distribution, the new approach proposed here is to couple riverbank stability with groundwater flow modeling, and apply this to tackle the conjunction effect between river stage and groundwater table. Moreover, riverbank material characteristics and the influence of infiltration can be taken into consideration via groundwater flow modeling. Two hypothetical examples, stage rising and stage falling, are used to investigate the capabilities of the present study and two representative methods. The simulated results show that riverbank failure is triggered particularly during the falling stage, which has been pointed out by other researchers as well. Furthermore, the riverbank material characteristics predominantly control the occurrence of failure and should be considered regarding assessment of riverbank stability. Additionally, the effects of parameters indicate that riverbanks with soil properties of low permeability or high specific yield with great infiltration intensity during the falling stage have a tendency to riverbank failure.  相似文献   

17.
A failure occurred between December 14 and 17, 2008 in the upper part of a 45-m high, northwest facing bank of the Nelson River in northern Manitoba (56.687°N, 93.777°W). The slope failure occurred at a spring site in a bay associated with a buried valley. The sediment input to the river from this event is roughly 20,000 to 25,000 m3. The source zone is made up of 25  m of water-bearing sand and gravel confined between ice-rich silty clay at the top of the bank and laminated to rhythmically bedded silt and clay at the base of the section. The collapse was confined to the material above the basal silts and clays and was associated with a perched groundwater flow system. A strong argument for drainage cutoff by the advancement of seasonal frost has been demonstrated through the correlation of the bank collapse with the timing of a significant cold snap recorded at two nearby weather stations. The failure illustrates the importance of stratigraphy in controlling bank erosion in this area. Previously, fluvial erosion was seen as an important control on mass wasting in Horseshoe Bay. However, surface information suggests that no toe erosion except to remove the slide deposit has occurred at this site since 2004.  相似文献   

18.
Review of River Bank Erosion Research   总被引:1,自引:0,他引:1  
Riverbank erosion is a critical style of lateral channel change. It threatens the arable land, ecological environment, as well as the people’s lives and properties along the river. Through review on the research process of riverbank erosion globally, four aspects were classified and described: ①Riverbank erosion processes and mechanisms. The occurence and development of riverbank erosion is quite complicated, composed by multiple processes, which are hard to separate with each other. Therefore, the scholars have proposed a lot of theories to describe the processes. Among the theories, “Riverbank Stability Theory” has been widely recognized and developed. ②Factors of riverbank erosion. The key factors that affect riverbank erosion include hydrology conditions of the river, soil properties, geomorphology, vegetation of the river bank and meteorology. However, it should be noted that the importance of different factors in the collapse process is not equivalent and effects of the same factor on different rivers are various. ③Riverbank erosion estimation. With the tremendous improvement of quantification recently, time interval of erosion measurement is shortening continuously, while spatial scale is larger and larger. At the same time, resolution is becoming increasingly high. Erosion pin was commonly used in early studies because of its easy use and low cost, whereas remote sensing and digital photogrammetry have more advantages in modern measurement. ④Modeling of riverbank erosion. At present, the models are mainly based on the fundamental theories of hydraulics and soil mechanics, to study river bank stability. According to the review of the four aspects above, problems of recent researches and prospects of possible development in the future were discussed. The researchers should pay much attention to temporal spatial distribution of riverbank erosion first before further research. The study would be greatly helpful to the researchers for the specific river reach when choosing the proper theories as well as technologies for measurement and quantification, study the riverbank erosion through both macroscopic and microscopic views, and predict the erosion for management purpose.  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