首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 234 毫秒
1.
赣江下游河道在历史上曾发生过多次改道变迁。每次变迁都会改变原有的生态环境.因此了解和认识古河道的变迁,对生态环境的治理将会带来一定的帮助。对赣江下游历史上的几次河道变迁扣近期的河道演变作了较为详细的研究,认为其演变主要表现在河道洲滩冲淤的交替、河流走势以及主汉易位等,总体趋势是淤大于冲,且趋于加剧。因此,出现多数洲滩淤胀扩大扣淤积合并扩大,河槽变窄、河床变浅等现象;河道变迁对环境的影响主要表现在河道淤塞、河床抬高,引起洪水位上涨,对两岸人民生命财产造成严重威胁。  相似文献   

2.
大型水库运行改变了坝下游水沙条件,引起河床冲淤、洲滩形态等适应性调整,尤其是近坝段沙质河床的响应最为敏感。以三峡大坝下游近坝段沙质河段为研究对象,采用1955-2018年水沙数据与1975-2018年地形资料,研究了河床冲淤量及河床形态、洲滩形态演变及联动关系等。研究表明:伴随流域来沙量减少,1975-2018年河床为累积冲刷态势,枯水河槽冲刷量占总冲刷量的93.1%,同步发生洲滩面积减少、深泓下切;以2009年分界,滩槽冲淤逐渐由"低滩冲刷,高滩淤积"逐渐向"低滩、高滩均冲"转变;受来沙量锐减、河道采砂活动等影响,2013年以来河床冲刷强度显著增大,疏浚抛泥对滩槽冲淤的影响较小;航道工程实施前滩群演变关联性强,太平口心滩发育与头部下移引起腊林洲边滩上段面积减小并后退,对应腊林洲边滩尾部面积增大且淤宽,使得三八滩面积减小且右缘蚀退,金城洲逐渐由边滩演变为心滩;航道工程实施后太平口心滩与腊林洲边滩上段关联性减弱,受航道工程及疏浚抛泥等影响腊林洲边滩下段淤宽,引起三八滩维持面积持续减小、右缘后退及左移态势,促使金城洲萎缩且分散。  相似文献   

3.
大型水库运行改变了坝下游水沙条件,引起河床冲淤、洲滩形态等适应性调整,尤其是近坝段沙质河床的响应最为敏感。以三峡大坝下游近坝段沙质河段为研究对象,采用1955-2018年水沙数据与1975-2018年地形资料,研究了河床冲淤量及河床形态、洲滩形态演变及联动关系等。研究表明:伴随流域来沙量减少,1975-2018年河床为累积冲刷态势,枯水河槽冲刷量占总冲刷量的93.1%,同步发生洲滩面积减少、深泓下切;以2009年分界,滩槽冲淤逐渐由"低滩冲刷,高滩淤积"逐渐向"低滩、高滩均冲"转变;受来沙量锐减、河道采砂活动等影响,2013年以来河床冲刷强度显著增大,疏浚抛泥对滩槽冲淤的影响较小;航道工程实施前滩群演变关联性强,太平口心滩发育与头部下移引起腊林洲边滩上段面积减小并后退,对应腊林洲边滩尾部面积增大且淤宽,使得三八滩面积减小且右缘蚀退,金城洲逐渐由边滩演变为心滩;航道工程实施后太平口心滩与腊林洲边滩上段关联性减弱,受航道工程及疏浚抛泥等影响腊林洲边滩下段淤宽,引起三八滩维持面积持续减小、右缘后退及左移态势,促使金城洲萎缩且分散。  相似文献   

4.
三峡水库汛期排沙研究大多关注库区的减淤效应,对坝下游河道的冲淤影响尚需进一步研究,对优化水库调度和河道保护利用具有重要意义。以三峡水库下游荆江河段为对象,建立了荆江长河段二维水沙数学模型,并结合实测资料分析,基于三峡水库2018年7月排沙调度,通过设置不同的排沙比(7%~100%),计算分析了荆江河段冲淤对三峡水库排沙比的响应。结果表明:虽然荆江河段全年总体冲刷,但排沙比较大时汛期仍可能淤积,上荆江河段受排沙调度影响相对较大;总体而言,2018年汛期水沙条件下,30%左右的排沙比是荆江河段洪季冲淤的临界点;排沙比提高后,汛期淤积部位大部分为边滩等缓流区,以及弯曲河段凹岸等,主槽仍冲刷,对维护滩槽高差具有积极意义。  相似文献   

5.
近期黄河下游河床调整过程及特点   总被引:4,自引:0,他引:4       下载免费PDF全文
利用黄河下游1999-2005年的实测水沙及断面资料,分析了近期下游(铁谢至利津河段)河床调整过程及特点,具体表现为:小浪底水库运行后,黄河下游河道出现持续冲刷。其中,游荡型河段的冲刷量占下游总冲刷量的77%,单位河长的冲刷量在高村以上河段最大,孙口以下河段次之,高村至孙口河段最小;各河段主槽横断面形态调整均表现为向窄深方向发展;河床在冲刷过程中,主槽纵比降变化不大,其纵剖面形态自1855年以来均为下凹曲线,其凹度值随河床冲刷而略有增大;汛期深泓摆动幅度在游荡段最大,在弯曲段较小;随河床冲刷,下游平滩流量增加,但断面平滩流量与河段平滩流量的增加程度不同;因床沙显著粗化,不同河型河段的河床纵向稳定程度随冲刷均增加,而河床横向稳定程度在游荡段变化不大,在过渡段及弯曲段有所增加。  相似文献   

6.
河口延伸及流路改道的溯源影响是科学制定黄河下游河道治理与河口治理规划的关键问题之一,关系到治黄战略及策略的确定。基于沿程冲淤和溯源冲淤在时空上的传播特征,提出了平移相关分析方法,采用1950—1990年的水位数据,分析了黄河口流路演变对黄河下游河道的溯源影响过程和范围。结果表明:①黄河下游不同断面上的水位总体呈震荡上升趋势,水位变化过程在空间上并不完全同步,相同时间节点上各断面水位存在较大差别,具有扰动波的传播特征;②黄河下游沿程冲淤发展速率较快,冲淤扰动波从花园口传递到高村大约需要1 a,高村与艾山之间的冲淤变化则基本同步;③溯源冲淤发展速度较慢且存在滞后效应,泺口冲淤变化主要受利津前8 a冲淤变化的累积影响;④黄河口流路演变溯源影响主要在艾山以下,距离黄河入海口约350 km以内的河段主要受溯源冲淤影响。  相似文献   

7.
三峡水库蓄水后沙量骤减使得荆江河段河床剧烈冲刷调整,下荆江急弯段“凸冲凹淤”,部分弯道凹岸侧淤积形成水下潜洲。这种不同于弯曲河道一般性演变规律的异常现象势必给下荆江的行洪、航运及江湖关系变化等带来新的影响,其内在成因急需揭示。基于原型观测资料分析,通过研究滩槽冲淤量及分布、滩体及河道形态特征等,全面揭示了近期下荆江急弯段“凸冲凹淤”的演变特征及河道形态响应。结果表明,流量年内过程重分配、来沙量及组成突变是下荆江急弯段“凸冲凹淤”的决定性因素。  相似文献   

8.
水库下游河道冲淤调整是一个长期复杂的过程, 对防洪、航运、生态等均会产生一定影响。为探究长江中游沙市—汉口河段演变趋势并为不利变化的防控提供参考, 分析了三峡建库后悬移质分组冲淤时空变化规律: 建库后, 沙市—监利河段各粒径组泥沙均发生冲刷, 沙市流量为10 000~25 000 m3/s时, 0.125~0.250 mm粒径组泥沙冲刷量最大; 以0.125 mm为粗细颗粒分界粒径, 监利—螺山段呈现汛期、蓄水期"粗淤"而枯水期、消落期"冲细"现象; 螺山—汉口段各粒径组泥沙均发生冲刷, 且流量越大冲刷量越大。在此基础上, 通过建立流量—分组输沙量关系并根据水流挟沙力公式, 发现建库后沙市—监利、螺山—汉口河段冲淤受泥沙、水力因素共同作用, 其中泥沙因素对沙市—监利河段影响大于螺山—汉口河段; 监利—螺山河段"淤粗冲细"主要受含沙量恢复程度的影响, 与上游河床冲刷补给及本河段粗、细颗粒泥沙交换有关, 反映了冲刷条件下河道通过水流挟沙能力级配调整加大输沙能力。  相似文献   

9.
航道浅滩演变与边心滩形态调整具有强关联性,叠加河道冲淤不均衡性、上游河段冲刷供沙等综合影响,使得航道浅滩碍航机制更趋复杂。本研究以长江感潮段内落成洲河段为对象,通过1959—2021年洲滩形态、河床冲淤特征、水动力环境与浅滩碍航特性等分析,明确边心滩—浅滩演变联动关系、上游河床冲刷供沙及对浅滩演变的影响机制。研究结果表明:(1) 1981年以来落成洲河段所在的扬中河段由淤积转为1991年以来的持续冲刷,1981—2021年枯水河槽冲刷量为3.97亿m3,占洪水河槽冲刷量的95.9%;(2)三峡工程运行前嘶马弯道崩退—落成洲左缘淤积—三益桥边滩未发育,即嘶马弯道崩退是洲滩联动演变的主要诱因;(3)三峡工程运行后至航道整治工程实施前的来沙量减少引起洲滩整体冲刷,落成洲冲刷为三益桥边滩提供了发育空间,逐渐淤涨的三益桥边滩与水沙条件共同使得落成洲冲刷和右汊冲刷发展,即三益桥边滩形态变化逐渐由被动淤涨转为洲滩联动演变的主因;(4) 1981—2010年三益桥边滩淤涨、落成洲洲头与左缘冲刷等决定着三益桥浅滩碍航程度,由于流域来沙量减少引起的河床冲刷使得碍航程度减弱,2011—...  相似文献   

10.
《地下水》2015,(5)
河流断面的变化是研究河道冲淤情况及河流河床冲淤情况及河流河床演变最直观、最简洁的办法。在分析辽河下游河流输沙量变化特征的基础上,利用辽河干流具有代表性水文站的实测大断面,对河床泥沙冲淤及动态演变进行初步分析。结果表明辽河干流典型站径流输沙呈线性相关,关系相对稳定,2010-2013年显著减少,不同年代中冲淤基本交替进行,辽河干流整体是淤积的。  相似文献   

11.
A three‐dimensional numerical model of sediment transport, erosion and deposition within a network of channel belts and associated floodplain is described. Sediment and water supply are defined at the upstream entry point, and base level is defined at the downstream edge of the model. Sediment and water are transported through a network of channels according to the diffusion equation, and each channel has a channel belt with a width that increases in time. The network of channels evolves as a result of channel bifurcation and abandonment (avulsion). The timing and location of channel bifurcation is controlled stochastically as a function of the cross‐valley slope of the floodplain adjacent to the channel belt relative to the down‐valley slope, and of annual flood discharge. A bifurcation develops into an avulsion when the discharge of one of the distributaries falls below a threshold value. The floodplain aggradation rate decreases with distance from the nearest active channel belt. Channel‐belt degradation results in floodplain incision. Extrinsic (extrabasinal, allogenic) and intrinsic (intrabasinal, autogenic) controls on floodplain dynamics and alluvial architecture were modelled, and sequence stratigraphy models were assessed. Input parameters were chosen based on data from the Rhine–Meuse delta. To examine how the model responds to extrinsic controls, the model was run under conditions of changing base level and increasing sediment supply. Rises and falls in base level and increases in sediment supply occurred over 10 000 years. Rising base level caused a wave of aggradation to move up‐valley, until aggradation occurred over the entire valley. Frequency of bifurcations and avulsions increased with rate of base‐level rise and aggradation rate. Channel‐belt width varied with water discharge and the lifespan of the channel belt. Wide, connected channel belts (and high channel‐deposit proportion) occurred around the upstream inflow point because of their high discharge and longevity. Less connected, smaller channel belts occurred further down‐valley. Such alluvial behaviour and architecture is also found in the Rhine–Meuse delta. During base‐level fall, valley erosion occurred, and the incised valley contained a single wide channel belt. During subsequent base‐level rise, a wave of aggradation moved up‐valley, filling the incised valley. Bifurcation and avulsion sites progressively moved upstream. Relatively thin, narrow channel belts bordered and cut into the valley fill. These results differ substantially from existing sequence stratigraphy models. The increase in sediment supply from upstream resulted in an alluvial fan. Most bifurcations and avulsions occurred at the fan apex (nodal avulsion), and channel belts were the widest and the thickest here (giving high channel‐deposit proportion) due to their high discharge and longevity. The width and thickness of channel belts decreased down‐valley due to decreased discharge, longevity and aggradation rate. This behaviour occurs in modern alluvial fans. Intrinsic controls also affect floodplain dynamics and alluvial architecture. Variation of aggradation rate, bifurcation frequency and number of coexisting channel belts occurred over periods of 500 to 2000 years, compared with 10 000 years for extrinsic controls. This variation is partly related to local aggradation and degradation of channel belts around bifurcation points. Channel belts were preferentially clustered near floodplain margins, because of low floodplain aggradation rate and topography there.  相似文献   

12.
Channel modifications from 1968 to 1969 on the South Fork Forked Deer River in western Tennessee have caused upstream degradation, downstream aggradation, and bank failures along the altered channels, adjacent reaches, and tributaries. The result of these adjustments is a general decrease in gradient as the channel attempts to absorb the imposed increase in energy conditions created by channelization. Headward degradation at a rate of approximately 2.57 km/yr on the South Fork Forked Deer River caused from 1.52 m to about 3.14 m of incision over a 13.5 km reach from 1969 to 1981. As a consequence of substantially increased sediment supply, approximately 2.13 m of aggradation was induced downstream of this reach during the same period. This accumulation represents a 60% recovery of bed level at the downstream site since the completion of channel work in 1969. Gradient adjustment with time is described by exponential decay functions. The length of time required for adjustment to some new quasi-equilibrium condition is computed by these decay functions and is about 20 years from the completion of channel work. Adjusted slopes are less than predisturbed values, probably because straightened channels dissipate less energy by friction, allowing more energy for sediment transport. An equivalent sediment load, therefore, can be transported at a considerably gentler slope. The predisturbed slope exceeds the adjusted slope by an order of magnitude on the downstream reach of the South Fork Forked Deer River.  相似文献   

13.
长江中下游河道冲淤演变的防洪效应   总被引:3,自引:0,他引:3       下载免费PDF全文
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   

14.
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   

15.
潮流界变动段的边滩与浅滩演变关联性强,同时受径潮流水动力、供沙来源及人类活动等多重影响,是航道治理与疏浚维护的重点河段。通过对三益桥河段1976—2017年期间河床冲淤、汊道分流比、三益桥边滩及浅滩演变过程的分析,明确三益桥边滩及浅滩演变的驱动机制。2012年以来三益桥边滩12.5 m水深以浅滩体体积为增大态势,大水年份边滩以淤积为主,设计航槽及深槽以冲刷为主,中水年份边滩淤积厚度小于深槽。上游五峰山弯道河势稳定,具有阻隔上游和畅洲河段河势、汊道分流比调整等传递作用,三益桥边滩淤涨(长)与上游和畅洲河段河势及汊道分流比调整的关系不显著,主要与流域来流流量大小及过程、上游河道冲刷供沙等相关。洪季三益桥上浅区碍航程度大于枯季,汛前中水流量(大通水文站流量介于26 000~34 000 m3/s之间)持续天数长的年份碍航程度大于大洪水年份同时期;因此,流量过程决定边滩与浅滩的冲淤分布,中水流量持续时间长短及供沙量大小决定三益桥边滩淤积量及浅滩碍航淤积量。  相似文献   

16.
In August 2016, Typhoon 1610 (Lionrock) caused heavy rainfall in Hokkaido, which led to the discharge of a large volume of sediment and water from catchments on the eastern slope of the northern Hidaka Range. The eight catchments examined in this study are characterized by granitic lithology and late Pleistocene periglacial landforms with weakly cohesive, low-resistance periglacial debris thickly covering the weathered bedrocks. This characteristic of the landscape presumably provided a transport-limited condition where some debris flows were initiated by shallow landslides. As they moved, the debris flows grew larger through mobilization and erosion of sediment in channel beds and sidewalls. This sediment mobilization and erosion continued for an extensive distance along the course of the river. Morphological changes induced by channel aggradation and bank erosion were considerable and distinctive from upstream to downstream. Granitic periglacial sediments are amply present on the mountain slopes, river channels, and river banks in the area, likely due to the rarity of intensive rainfall events. These distinctive features of fossil periglacial catchments are important for disaster prevention and catchment-scale sediment management in sub-boreal areas, particularly in the context of climate change, which may generate more frequent and intensive rainfall events.  相似文献   

17.
Three unstable ephemeral-stream channels (arroyos), which drain source areas that have high sediment yields ranging from predominantly sand (Arroyo Calabasas) to a mixture of sand, silt, and clay (Sand Creek) to largely silt and clay (Sage Creek), were resurveyed to provide data on the rates and mechanics of erosion and sedimentation processes during periods ranging from 14 to 22 yr. Channel morphology changed significantly. Erosion occurred through nickpoint recession and bank collapse, but erosional reaches are separated by aggrading or stable-channel reaches. In general, sediment that is eroded, as the nickpoint recedes upstream, is trapped in the widened channel downstream. In this manner sediment is transported episodically out of these basins during a series of cut-and-fill cycles. The manner by which the channels aggrade and the morphology of the aggraded stable channels are controlled by the sediment type. The wide and shallow channel of Arroyo Calabasas is filled by vertical accretion of sand-size sediment. The narrow and deep channels of Sage Creek and Sand Creek are created by the lateral accretion of cohesive fine-grained sediment. The channel modification and the cut-and-fill episodes are dependent on high sediment yields, and therefore they are independent of subtle climatic shifts. Cut-and-fill deposits that have been created in this manner should not be equivalent in age from basin to basin, and therefore channel trenching and filling in the semiarid western United States during the Holocene need not be synchronous.  相似文献   

18.
三峡水库蓄水后城陵矶至九江段河道冲淤调整机理   总被引:1,自引:0,他引:1       下载免费PDF全文
大型水利枢纽的修建引起了下游河道的冲淤调整,对生态环境、防洪、航运等都有显著的影响。2008年三峡水库175 m试验性蓄水以来,城陵矶以下河段冲刷加剧。为探究水库影响下游河道冲淤调整特征及其驱动机制,分析了城陵矶至九江段河道冲淤分布及断面形态变化特征:2008年以来河道冲淤变化主要集中在基本河槽,其变化占整个平滩河槽的90%以上,且基本河槽冲刷加剧;断面形态表现为河槽冲刷下切、断面趋于窄深化。在此基础上,通过建立2008—2016年河段尺度的基本河槽形态参数与水流输沙能力的经验关系,发现螺山、汉口两站流量分别为29000~31000 m 3/s、31000~33000 m 3/s时,河槽形态与水流输沙能力的相关性最强、造床作用和水流冲刷强度最大,因此,可以认为是2008年以来影响城陵矶至九江段冲淤调整的特征流量。2008年以后,该流量级以下的水流累积造床作用凸显,是冲淤变化部位调整到基本河槽的主要原因;同时,受各站d>0.125 mm粒径组泥沙输沙量大幅度减小、航道整治工程的影响,河槽冲刷加剧。  相似文献   

19.
三峡水库蓄水后城陵矶至九江段河道冲淤调整机理   总被引:1,自引:2,他引:1       下载免费PDF全文
大型水利枢纽的修建引起了下游河道的冲淤调整,对生态环境、防洪、航运等都有显著的影响。2008年三峡水库175 m试验性蓄水以来,城陵矶以下河段冲刷加剧。为探究水库影响下游河道冲淤调整特征及其驱动机制,分析了城陵矶至九江段河道冲淤分布及断面形态变化特征:2008年以来河道冲淤变化主要集中在基本河槽,其变化占整个平滩河槽的90%以上,且基本河槽冲刷加剧;断面形态表现为河槽冲刷下切、断面趋于窄深化。在此基础上,通过建立2008—2016年河段尺度的基本河槽形态参数与水流输沙能力的经验关系,发现螺山、汉口两站流量分别为29 000~31 000 m3/s、31 000~33 000 m3/s时,河槽形态与水流输沙能力的相关性最强、造床作用和水流冲刷强度最大,因此,可以认为是2008年以来影响城陵矶至九江段冲淤调整的特征流量。2008年以后,该流量级以下的水流累积造床作用凸显,是冲淤变化部位调整到基本河槽的主要原因;同时,受各站d>0.125 mm粒径组泥沙输沙量大幅度减小、航道整治工程的影响,河槽冲刷加剧。  相似文献   

20.
滩地的淤积层分布记录着以往漫滩洪水的特征,即反映漫滩洪水的量级、频率和持续时间等,同时河漫滩也是预估河流泥沙、洪水灾害防治和湿地生态系统保护等的重要组成部分。根据黄河下游水文年鉴资料,分析滩地的淤积与漫滩洪水的定量关系,为未来河流泥沙预估提供依据。经分析得到大漫滩洪水在来沙系数S/Q<0.030 kg·s/m6时,主槽冲刷而滩地淤积,反之则滩槽同淤。当S/Q<0.030 kg·s/m6时,大漫滩洪水滩地的淤积量主要与漫滩系数Qmax/Qp、上滩水量W0和含沙量S有关;大漫滩洪水的主槽冲刷量则除了与洪水期水量W和沙量Ws有关外,还与滩地的淤积量有关。一般漫滩洪水,当来沙系数S/Q<0.023 kg·s/m6时,主槽冲刷而滩地淤积,反之则滩槽同淤。一般漫滩洪水主槽冲刷量与来沙系数S/Q和洪水期水量W有关,而滩地淤积量仅与含沙量S有关。黄河下游漫滩洪水滩地的淤积和主槽的冲刷主要发生在孙口以上河段,而孙口以下河段主槽冲刷和滩地淤积量均较少。  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