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1.
利用黄河干流大型水库进行调水调沙,在短期内将大量沉积物快速输送入海,是河口泥沙异重流触发的重要窗口期。根据2010年调水调沙期间黄河口沉积动力现场观测资料,建立覆盖整个渤海海域的ROMS数学模型,以黄河利津站逐日水沙数据和海域潮汐、风场数据作为模型驱动条件,模拟调水调沙期间的河口泥沙异重流发育过程。模拟结果显示,在没有大风扰动的情况下,河流入海悬沙浓度29.0 kg/m~3时会在河口产生高密度泥沙异重流。黄河冲淡水携带大量悬浮物从河口流出后,与海水迅速混合,在潮流影响下,冲淡水舌随时间由西北向东南偏转,输运至莱州湾西侧。淡水和沉积物主要以表层羽状流和底层异重流形式输运:表层羽状流扩展范围较大,输运路径为河口西北方向-远岸(河口东北区域)-莱州湾西侧;底层异重流扩散范围较小,输运路径为河口西北方向-河口沿岸(东)-莱州湾西侧。河口泥沙异重流生消和水体垂向结构存在周期性变化特征:落潮时段异重流发育较好,水体层化增强;涨潮时段异重流逐渐消亡,水体混合增强。估算出黄河口清水沟清8叉流路主泓区内水体由河口径流、潮汐应变和潮汐搅动引起的势能变化率,其中潮汐应变和潮汐搅动起主导作用,比河口径流引起的势能变化率高出2~3个数量级(102~103)。  相似文献   

2.
长江口北港口门海域悬沙输运机制分析   总被引:1,自引:0,他引:1  
根据2012年10月24日至11月1日在长江口北港口门海域获取的沉积动力学数据,采用输运通量分解方法分析水沙输运机制。结果表明,长江口北港口门附近海域涨、落潮期间底部悬沙浓度与近底部流速呈显著线性相关,存在显著的再悬浮作用;潮周期内的悬沙输运具不对称特征,涨潮悬沙浓度大于落潮悬沙浓度,悬浮泥沙有向陆输运的趋势。拉格朗日平流输运是影响悬沙输运的主要贡献项;潮泵效应(尤其是潮汐捕捉效应)以及河口垂向环流作用是两个次要影响因素,在影响程度上前者比后者略大。观测发现,长江口北港口门海域潮流除了具有涨落潮流速、历时等不对称现象外,还具有流速结构不对称的特征,进而导致涨、落潮底部湍流混合程度不对称与输沙不对称,这可能是造成悬沙向河口内输运形成最大浑浊带的重要因素。  相似文献   

3.
黄河口最大浑浊带特征及其时空演变   总被引:6,自引:0,他引:6  
根据汛期黄河口多船同步水文泥沙实测资料,对黄河口最大浑浊特征及其时空演变进行研究,得出汛期黄河口最大浑浊带在整个潮周期始终存在,其含沙量和范围形态受潮相的控制,在落急和落平时最为发育。文中还探讨了黄河口最大浑浊带的形成机制,指出其形成主要受河流携带大量泥沙、泥沙异重流、河口密度环流及湍流的作用。  相似文献   

4.
根据汛期黄河口多船同步水文泥沙实测资料,对黄河口最大浑浊带特征及其时空演变进行研究,得出汛期黄河口最大浑浊带在整个潮周期始终存在,其含沙量和范围形态受潮相的控制,在落急和落平时最为发育.文中还探讨了黄河口最大浑浊带的形成机制,指出其形成主要受河流携带大量泥沙、泥沙异重流、河口密度环流及湍流的作用.  相似文献   

5.
黄河口滨海区冲淤演变与潮流不对称   总被引:1,自引:1,他引:0  
涨落潮不对称是河口滨海区流场的重要特征,在泥沙输运和地貌演变过程中扮演着重要的角色。本文基于实测水深地形、沉积物粒度、水文泥沙观测等资料,分析了黄河口滨海区的冲淤变化、泥沙输运和沉积物特征。同时,本文利用Delft 3D模型模拟了黄河口滨海区的流场,并计算了不同条件下涨落潮流速的不对称分布,结合上述分析,探讨了黄河口滨海区冲淤演变的动力机制。结果表明:现行黄河口至莱州湾滨海区相间分布多个淤积和侵蚀中心;黄河口滨海区存在显著的涨落潮流速不对称现象,现行河口外为涨潮优势流分布区,并呈舌状向南部莱州湾方向伸展,而近岸和莱州湾则普遍为落潮主导;黄河口滨海区的冲淤变化很大程度上受涨落潮流速不对称空间分布及涨落潮优势流转换所控制;强北风作用增强和扩展涨潮优势,促使莱州湾淤积和沉积物粗化。  相似文献   

6.
由于钓口流路行水时期普遍缺乏对河口和近海的系统观测,基于1976年黄河三角洲实测水深数据和汛期水沙数据,采用EFDC三维数值模式对钓口河口泥沙沉积动力过程进行了数值模拟研究。模型结果表明,钓口河口的羽状流和异重流的时空分布具有显著的潮周期变化特征。受与岸线平行的涨落潮流作用,表层羽状流的侧向摆动幅度较大,河口羽状流输沙主要平行于岸线方向,跨等深线的泥沙输运受到限制。汛期黄河入海的高浓度泥沙在钓口河口形成潜没的异重流,在底层沿河口轴线向北输运泥沙至三角洲前缘区域,泥沙输运通量比表层羽状流的输送通量高出一个数量级,且随着离岸距离的增大而呈指数形式快速衰减。随着水深增大,单宽泥沙通量的衰减速率逐渐减小。计算结果显示,由于汛期高浓度泥沙入海,钓口河口的异重流稳定存在,导致约75%的入海泥沙沉积在10m水深以浅的区域,25%的入海泥沙淤积在三角洲前缘外侧,异重流过程对汛期钓口河口泥沙向深水区输运和沉积具有控制作用。数值模拟结果与前人根据水深变化揭示的三角洲冲淤分布格局一致,与钻孔的沉积记录基本吻合。  相似文献   

7.
黄河口快速沉积及其动力过程   总被引:3,自引:1,他引:2  
现场观测资料和卫星遥感校准图像计算表明 ,185 5年以来 ,黄河三角洲新淤陆地 36 99km2 ,生长速率为 2 6 8km2 /a ,黄河输入三角洲 1× 10 8t泥沙形成 3 14 4km2 的陆地。进入河口区的泥沙约 88 4 %堆积在水下 8km宽的三角洲前缘。研究表明 ,这一堆积比例是河口切变锋、异重流和潮流场相互作用的结果 ,异重流在黄河汛期一直存在 ,大约搬运黄河来沙的 6 0 %沉积在三角洲前缘 ;一个潮周期内 ,切变锋出现两次 ,它能够捕获异轻羽状流中的悬浮泥沙堆积 ,也能够限制异重流的远距离扩散。切变锋消失后 ,少量悬浮泥沙才能远距离扩散 ,随潮流离开三角洲水下斜坡。  相似文献   

8.
曹妃甸老龙沟动力地貌体系及演化   总被引:3,自引:0,他引:3  
老龙沟为典型沙坝-泻湖型潮汐汊道,潮汐汊道地貌结构完整.老龙沟口门处潮流动力最强,发育-20m的深槽.口门内涨潮流三角洲上发育完整的多级水道体系.口门外落潮三角洲止于-11 m水深处.以突起的末端坝为地形标志,落潮主水道偏于落潮三角洲东侧发育,落潮三角洲西侧发育宽缓冲流平台.落潮主水道以落潮流为优势,冲流平台上潮流动力...  相似文献   

9.
现代黄河水下三角洲地质灾害现象的空间分布   总被引:6,自引:5,他引:1  
利用浅地层剖面、旁扫声纳剖面及测深资料对现代黄河水下三角洲的地质灾害现象进行了研究,发现三角洲不同的形成时期对应发育不同的地质灾害现象:①在现行河口地区,高浓度泥沙下潜海底形成了黄河口独特的浊流现象,河口泥沙的快速堆积和欠固结导致河口三角洲叶瓣以台阶状滑塌陡坎的形式向海尖灭;②由于河口物源断绝和受到冬季北风或偏北风作用,海底滑坡、冲蚀构造等大型地质灾害现象在老河口废弃三角洲叶瓣北侧大量发育;③埕北地区与孤东地区情况较为相似,经过长时间改造之后多种灾害地质现象大量分布,且在水深5~10 m的三角洲陡坡上最为发育。  相似文献   

10.
采用单宽输沙、沿岸输沙、海图对比及钻孔分析等方法,研究了乳山湾内泥沙运移趋势及蚀淤量变化两方面问题,蚀淤分析将乳山湾划分为:东汊、西汊、潮流通道和口门4部分进行讨论。研究认为乳山湾以河流来沙为主,湾内泥沙主要被落潮流带出湾外,在口门附近沉降形成落潮流三角洲,湾外两侧岸段破波带泥沙主要向口门方向运移,而悬移质泥沙主要被涨潮流带向湾顶。淤积区域集中在东西两汊及口门附近,潮流通道以侵蚀为主,东汊淤积速率为0.4~13.2 cm/a,口门附近淤积速率为6~20 cm/a,潮流通道侵蚀速率在5.7~23 cm/a之间。  相似文献   

11.
The Huanghe (Yellow River) discharges extremely high suspended sediment concentrations (25 to 220 g/l) which favor sustained hyperpycnal plumes (underflows). Observations of weakly hyperpycnal unchannelized plumes and indirect evidence of strongly hyperpycnal channelized underflows over the delta front indicate the importance of these modes of sediment dispersal. The weakly hyperpycnal plumes occupy the entire water column over the shallow (<5 m) delta top. From a pronounced front near the break in slope at about 5 m depth, they descend over the delta-front slope as wide-spread underflows. Evidence of strongly hyperpycnal underflows was shown from subaqueous valleys partly filled with low-density mud.  相似文献   

12.
黄河清水沟流路稳定性分析   总被引:6,自引:0,他引:6  
李平  王涛  高文永 《海洋与湖沼》1997,28(2):165-171
根据1989年5月和8月枯、洪水两个季节黄河拦门沙区及河口海区地质和水文调查资料,结合黄河利津水文站近几年的径流量和输沙量变化,对黄河清水沟流路稳定性及其影响因素进行综合分析研究。结果表明,近年来黄河来沙量渐少是清水沟流路稳定的重要因素之一,随着河口向南转向海动力作用较弱的莱州湾,海水沿河上溯力逐渐减弱,河流泥沙得以更顺利入海,并在口门外沉积;现流路河口海域的水动力作用虽然较弱,但涨,落潮流的分布  相似文献   

13.
传统的观点认为,河水流入大海是一种浪费。为了充分利用河水资源,在大河干流筑坝引水、发电,据美国学者Milliman(1997)统计,1950年世界上大坝的数量约为5000座,20世纪80年代疾增到40000多座。大量淡水被贮存或用在陆地,入海径流便大幅度减少,导致大河河口及其邻近海域生态环境发生重大变化,海洋生物资源遭受到重大损失。加利福尼亚湾内科罗拉多河河口三角洲及其滨海区原为美国西南部最大的沙漠湿地,湿地资源极为丰富,海湾区曾是世界上鱼类最多、捕鱼量最高的海区之一,具有海洋生物资源非常丰富的良好生态环境。然而,由于科罗拉多河多道筑坝截流、入海径流量锐减,导致部分湿地干枯、生态环境退化、水质下降,海湾内捕鱼量急剧减少,许多依赖河流冲淡水发育的生物之生存发育面临毁灭的威胁;密西西比河三角洲区的湿地、潟湖区也因该河干流上大坝的不断兴建而导致生态环境退化;埃及阿斯旺大坝兴建后,由于入海水、沙等物质通量的大幅度减少,使地中海东部海区的沙丁鱼产量下降了近83%,海岸遭受强烈侵蚀,三角洲面积不断缩小。20世纪70年代初期,印度的恒河兴建法拉卡大坝,河口三角洲西岸陆域出现了明显的海水倒灌现象,同时引起了印、孟两国20多年的分水之争。  相似文献   

14.
黄河清水沟流路水沙组合和河口三角洲发育的宏观特性   总被引:2,自引:3,他引:2  
黄河清水沟流路1976~1995年期间入海水沙偏少,年际和年内变化丰枯交替,河口三角洲的冲淤变化与入海水沙大小密切相关;分析其剖面淤积形态、洲面淤积造陆情况和泥沙淤积的空间分布,表明河口三角洲发育存在着初期迅速增长、中期快速增长、后期平缓增长的宏观特性和规律,根据水沙变化与河口三角洲增长面积的定量关系以及对未来入海水沙的预估,认为清水沟流路河口三角洲的发育将继续维持平缓增长的态势.  相似文献   

15.
黏性泥沙在黄河水下三角洲广泛分布,其在外部载荷作用下易引发泥沙淤积、冲刷、海床流化等问题,对港口、航道、海底管线等工程设施构成巨大威胁。利用黄河水下三角洲埕岛海域所取海底表层沉积物,制备不同固结时间和不同含水率的高浓度黏性泥沙样品。采用R/S流变仪,对所制备高浓度黏性泥沙样品进行全剪切速率下的流变试验,分析黄河水下三角洲高浓度黏性泥沙流变特性及含水率和固结时间对流变特性的影响。结果表明,高浓度黏性泥沙在剪切荷载作用下流化失稳,发生相态转化;屈服应力在固结120 min后增加了35%;含水率50%以上高浓度黏性泥沙在高剪切速率下表现出剪切增稠行为,且随含水率增加剪切增稠行为越明显;Power模型适用于含水率大于50%的高浓度黏性泥沙在高剪切速率下的流变行为。本研究可为海底黏性泥沙运动过程数值模拟与海底重力流等灾害预测提供参考。  相似文献   

16.
High-resolution geophysical surveys (seismic, side-scan sonar) offshore of the Eratini River, a seasonally flowing river in the NW Gulf of Corinth, Greece, revealed a small fan delta with a variety of bottom features (blocky deposits, chutes and sediment instabilities). Considering the relatively small size of this river, however, these features could not be explained as being produced solely by river flow processes. Based on morphological features, the fan delta can be subdivided into a high- and a low-energy area. Sedimentation processes in the fan delta are associated with flood-derived sediment input, hyperpycnal flows which erode the fan surface, mud settling from suspension plumes, shelf sedimentation and sediment failures. The observed blocky deposits are considered to be the result of earthquake-induced mass flows in 1965 and 1995, whereas the chutes would be produced both by erosive mass flows and by hyperpycnal currents. The bulk block sediment volume has probably resulted from the 1965 earthquake. The 1965 evacuation zone and the related chutes were buried by the prograding fan delta. The main causative factor triggering the observed sediment instabilities is considered to be liquefaction, which is caused by (1) frequent earthquake-induced cyclic loading and (2) low sediment shear strengths created by rapid deposition during floods, in both cases associated with high pore-water pressures.  相似文献   

17.
Numerical experiments in an idealized river mouth are conducted using a three-dimensional hydrodynamics model (EFDC model) to examine the impacts of suspended sediment concentration (SSC), settling velocity of sediment and tidal mixing on the formation and maintenance of estuarine hyperpycnal flows. The standard experiment presents an illustrative view of hyperpycnal flows that carry high-concentrated sediment and low-salinity water in the bottom layer (>1.0 m in thickness) along the subaqueous slope. The structure and intra-tidal variation of the simulated hyperpycnal flows are quite similar to those previously observed off the Huanghe (Yellow River) mouth. Results from the three control experiments show that SSC of river effluents is the most important parameter to the formation of hyperpycnal flows. High SSC will increase the bulk density of river effluents and thus offset the density difference between freshwater and seawater. Low SSC of river effluents will produce a surface river plume, as commonly observed in most large estuaries. Both the settling velocity of sediment particles and the tidal mixing play an important role in maintaining the hyperpycnal flows. Increasing settling velocity enhances the deposition of sediment from the hyperpycnal layer and thus accelerates the attenuation of hyperpycnal flows, whereas increasing tidal mixing destroys the stratification of water column and therefore makes the hyperpycnal flows less evident. Our results from numerical experiments are of importance to understand the initiation and maintenance of hyperpycnal flows in estuaries and provide a reference to the rapidly decaying hyperpycnal flows off the Huanghe river mouth due to climatic and anthropogenic forcing over the past several decades.  相似文献   

18.
Since 1976, the main channel of the Yellow River (Huanghe) has been on the east side of the delta complex, and the river has prograded a broad new delta lobe in Laizhou Bay of the Bohai Sea. In 2012, extensive bathymetric and high-resolution seismic profiles were conducted and sediment cores were collected off the new delta lobe. This study examined delta sedimentation and morphology along a profile across the modern subaqueous Yellow River delta and into Laizhou Bay, by analyzing sediment radionuclides (137Cs, 210Pb and 7Be), sedimentary structure, grain-size composition, organic carbon content, and morphological changes between 1976 and 2012. The change in the bathymetric profile, longitudinal to the river’s course, reveals subaqueous delta progradation during this period. The subbottom boundary between the new delta lobe sediment and the older seafloor sediment (before the 1976 course shift) was identified in terms of lithology and radionuclide distributions, and recognized as a downlap surface in the seismic record. The accumulation rate of the new delta lobe sediment is estimated to be 5–18.6 cm year–1 on the delta front slope, 2 cm year–1 at the toe of the slope, and 1–2 cm year–1 in the shelf areas of Laizhou Bay. Sediment facies also change offshore, from alternations of gray and brown sediment in the proximal area to gray bioturbated fine sediment in the distal area. Based on 7Be distribution, the shorter-term deposition rate was at least 20 cm year–1 in the delta front.  相似文献   

19.
The subaqueous delta of the modern Huanghe (Yellow River)   总被引:7,自引:0,他引:7  
The subaqueous delta of the Huanghe (Yellow River) has been studied using high-resolution acoustic systems. There are many subtle variations in sea floor morphology and sediment geometries; smooth, featureless areas are rare. The main components of the subaqueous delta include broad, shallow channels; moderately disturbed areas with near-surface cut and fill structures; heavily disturbed areas with sea floor depressions, pits, and gullies; and a smooth, gently sloping distal delta apron or rise. These features are not directly related to sediment settling from dilute surface plumes but are due to gravity-driven hyperpycnal underflows, submarine mass movements, and silt flows.  相似文献   

20.
福建九龙江口入海泥沙的扩散和河口湾的现代沉积   总被引:15,自引:1,他引:15  
本文阐述了40年来九龙江入海泥沙量增加了两倍,入海泥沙在海门岛—鸡屿一带的浅滩区,其年平均淤积8—10cm,一次洪水流域搬来悬浮泥沙,使河口湾新淤积层厚2—3cm.并指出、进入河口湾的三条汉河各有独立的扇形粗粒冲积浅滩;悬移质的粉砂、粘土粒扩散至鼓浪屿以南海域;构成三角洲沉积主体的河口浅滩区的沉积速度由入海泥沙倍增而相应地加快进行.  相似文献   

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