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1.
孤山水电站混凝土生产系统场地位于一老滑坡体上,因场地平整施工滑坡出现重大变形险情,对工程建设构成严重危害。通过对场地工程地质特征和变形机制的系统研究,认为滑坡变形的主要诱因是前缘切脚的不当施工开挖活动。场平开挖已将滑坡肢解为东区、中部区和西区3大部分,滑坡变形对西区整体稳定影响较大,对东区和中部区的整体稳定影响较小,针对各区滑坡变形特征采取了应急工程处理。险情处理后,结合开挖现状和变形特征开展滑坡不同工况下的稳定性分区评价,结果表明:在天然状态下,除了滑坡东部②号变形体区域和滑坡西区仍不稳定外,其余部位处于基本稳定-稳定状态;在暴雨或久雨条件下,滑坡欠稳定-不稳定。为保证工程安全,滑坡需要进行工程治理。  相似文献   
2.
通过对东海大桥大乌龟近岛段的施工勘察过程的介绍,总结了对于大型工程勘察项目中的施工技术与组织管理方面的经验与体会。  相似文献   
3.
《国际泥沙研究》2020,35(2):115-124
Bed-load transport plays a critical role in river morphological change and has an important impact on river ecology.Although there is good understanding of the role of the variation of river bed grain size on transport dynamics in equilibrium conditions,much less is understood for non-equilibrium conditions when the channel is either aggrading or degrading.In particular,the relative role of different grain sizes in the promotion and hindering of the transport of coarse and fine fractions in a degrading channel has yet to be investigated.The current study attempts to provide new understanding through a series of flume experiments done using uniform and graded sediment particles.The experiments revealed coarser grain-size fractions for a poorly-sorted sediment,relative to uniform-sized sediment,reduced the transport of finer grains and finer fractions enhanced the transport of coarse grains.This hinderingpromotion effect,caused by relative hiding and exposure of finer and coarse fractions,increased with bed slope and decreased with relative submergence.In particular,as relative submergence increased,the graded fractions tended towards behaving more like their unifo rm-sized counterparts.Also,the bed-load parameter of the graded fractions increased more with a rise in bed slope than observed for the uniformsized counterparts.These results revealed,for degrading channel conditions,such as downstream of a dam,bed-load equations developed for uniform bed sediment are inappropriate for use in natural river systems,particularly in mountain streams.Furthermore,changes in river bed composition due to activities that enhance the input of hill-slope sediment,such as fire,logging,and agricultural development,are likely to cause significant changes in river morphology.  相似文献   
4.
《国际泥沙研究》2020,35(6):666-678
The current paper investigates the flow and turbulence characteristics over dune bedforms by means of laboratory experiments, where spatially dense and temporally high frequency velocity measurements were done. Although similar studies are available in the literature, the focus and novelty of the current study is to assess the influence of surface roughness of the dune bedforms on the nearbed flow. For direct comparison, two different surface roughness heights over idealized, fixed-shaped, high-angled dune bedforms were tested; one with a hydraulically-smooth surface, and the other with a fully-rough surface. Spatial variation of time-averaged flow as well as turbulence statistics were examined, which was complemented by streamline plots and spectral analyses. The results are interpreted from sediment entrainment and sediment transport points of view. The results show that increased dune surface roughness reduces the nearbed flow velocity, but increases the flow velocities at upper regions. The upward directed flow near the dune crests becomes stronger in the case of smooth surface, while the re-attachment point moves further downstream compared to the rough wall case. It is concluded that the roughness of the dune surface affects the nearbed flow and turbulence characteristics qualitatively and quantitatively, which is shown to have direct consequences on sediment entrainment characteristics.  相似文献   
5.
《国际泥沙研究》2020,35(6):600-608
Accumulation of the sediment in the stream of the diversion channels adversely affects its operational systems. Diversion channels are often constructed perpendicular to the main river. In this study, the water flow and sediment transport in the diversion channel with different angles were investigated in an attempt to maximize water discharge and minimize sediment discharge. A physical model with movable bed was used to simulate water and sediment flow with five diversion angles (θ) between (30°–90°). Moreover, three bed width ratios (Br) (the relation between diversion to main channel bed width) between 30% and 50% and five total discharges between (7.25 L/s to 12.25 L/s) were considered for each case of (θ). The results showed, up to 10%, increasing in proportion discharge ratios for 30 and 45 diversion angles compared with 90° diversion angle. The results also showed that the lowest diversion sediment concentration was provided by the (θ) of 30°. Across all scenarios, the average proportion concentration reduction was 64%, compared with 90° diversion angle. Closer observation of the diversion system mechanism confirmed that decreased (θ) result in decreased sediment concentrations in the diversion channels. In conclusion, the diversion channel water and sediment discharge could be effectively managed by changing the (θ) to 30° or 45° instead of 90°.  相似文献   
6.
近年来长江中下游来沙量持续减少,河道面临长距离、长历时的冲淤调整,河道蓄泄关系发生变化,对防洪造成影响。在长江中下游河道冲淤及其蓄泄能力变化预测成果的基础上,对比计算了现状和未来河道蓄泄能力条件下,遇1954年洪水,长江上游水库防洪调度和中下游地区超额洪量的变化情况。结果表明,未来随着长江中下游河道进一步冲刷,河道槽蓄容积增加,相同防洪控制水位下的河道安全泄量增大,三峡水库在进行防洪调度时可下泄流量增大,总拦蓄洪量减小,长江中下游地区总超额洪量减小,但超额洪量在地区分布上存在从上游向下游转移的情况。  相似文献   
7.
长江口水域地形地貌研究对河道治理建设、水上交通运输等人类社会经济活动具有重要意义,而建立高精度的无缝深度基准面及其与其他垂直基准间转换模型将直接影响到水陆交界区高精度地形地貌数据的获取及统一综合管理与分析。为此着重研究了基于三维潮波运动数值模拟、海面地形和大地水准面3种手段联合的河口水域无缝深度基准面构建及其与其他垂直基准间转换模型,并在长江口南支这一典型河口水域进行了建模实验和模型精度评估分析。结果显示,垂直基准转换模型中误差为12.4 cm,与现场长期潮位站实际观测结果比对分析得垂直基准转换模型误差绝对值均值为24.2 cm,尽管大于模型中误差估值,但仍满足国际水道测量规范对测深中垂向最大不确定度的要求。  相似文献   
8.
长江三峡库区地震地形变监测研究   总被引:8,自引:4,他引:4  
三峡地壳形变监测网络结合空间大地测量(GPS、InSAR)和传统大地测量的优点,在1998年以来的三峡工程建设期间和2003年水库首次蓄水中获取了大量监测成果。结果显示库区地壳运动的基本图像:垂直形变较为显著,主要来自因蓄水荷载而产生的形变,水平形变不明显.库区主要断层的活动性在蓄水期间有明显加强迹象。水准测量反映从1998年首期观测至2003年10月首次蓄水后的库区垂直位移.沉降范围较大;GPS给出了2003年蓄水前后库区的垂直位移,形变的范围主要集中在水库近岸区域。水准测量与GPS观测反应的垂直位移的量级基本一致,沉降的最大幅度在3~4cm左右。水准监测、GPS观测与重力监测结果有一定的对应性。从地壳形变监测与研究结果分析,近期负荷改变而诱发中强地震的可能性不大。  相似文献   
9.
金沙江下段河槽地貌特征与地貌过程*   总被引:11,自引:9,他引:2       下载免费PDF全文
文章利用金沙江河谷地貌调查与水利工程选址勘察地质资料,根据河槽纵剖面与18个河谷横剖面的资料以及攀枝花金江河段、会理鱼鲊河段、元谋龙街河段、禄劝凹嘎河段的阶地调查结果,对金沙江下段河槽地貌进行了初步分析,金沙江下段的河谷为典型的深切"V"形河谷,在虎跳峡、乌东德、白鹤滩峡谷段河槽比降发生明显变化。根据河谷阶地下切幅度与形成时代,以T3阶地计算金沙江下段河槽平均下切速率达到0.71~1.18m/ka,以T2阶地计算金沙江下段河槽平均下切速率为0.75~1.36m/ka,因此,近十几万年来,金沙江下段河谷平均下切速率达到0.9~1.0m/ka。现代金沙江河槽底部均堆积了一定厚度的冲积-崩积物覆盖层,最厚的石鼓剖面河床底部冲积物盖层达到173m,一般河段堆积物盖层均达10m以上。金沙江河槽的迁移是河槽下切过程与岸坡崩塌过程综合作用的结果,形成原河槽崩塌阻塞,河槽被动迁移或原河槽改道下切,形成古河槽-离堆山-新河槽的地貌组合,以及河槽侧向迁移3种模式。  相似文献   
10.
In recent decades,a few Godunov-type,finite volume two-dimensional(2D)unstructured grid,coupled flow,and sediment models(GF2DUCM)have been developed for flows over erodible beds.These kinds of models are generally analyzed as a Vertex Model(VM)that define topography at the cell vertex,which can lead to the non-conservation of mass regarding flow,sediment,and bed evolution.Here,a full cellcantered variable storage method(Central Model or CM)is applied as the solution of the GF2DUCM.In this method,terrain elevation is defined at the cell centroids;this accurately describes the physical relations between the water depth and topography deformation.This approach can fully eliminate calculation errors in topography deformation at local cells caused by the interpolation of topography deformation at the cell vertex,and reduced uncertainty in the computation of the GF2DUCM.The model performance is systematically tested using a series of laboratory experiments,which demonstrate the mass conservation feature and high accuracy in reproducing hydrodynamic and morphological processes.  相似文献   
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