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1.
辐射沙脊群内潮汐水道由于没有固定的边界,其稳定性对人类活动影响更加敏感。通过收集近20年来辐射沙脊群南翼小庙洪海域实测高分辨率水下地形资料,结合数学模型分析研究人类活动对小庙洪海域水动力和地形冲淤累积影响。研究结果表明:近20年来小庙洪水域边滩匡围面积达126.09 km2,边滩匡围导致小庙洪尾部、中部及口门段断面流量分别减小14.2%、15.79%和9.13%;尾部、中部及口门段深槽区平均流速分别减小20~30 cm/s、10~20 cm/s和5~10 cm/s。小庙洪水道南侧-5 m等深线变化幅度较小,基本保持稳定状态;-10 m等深线继续向西延伸,向南拓展。近20年来小庙洪边滩匡围虽导致水道内纳潮量和水动力有所减弱,但由于目前匡围区均处于高滩区域,各匡围工程所引起的泥沙冲淤仅限于工程区附近,对小庙洪水道整体稳定性、深槽主轴南逼、口门水道整体北淤南冲的演变趋势没有产生明显影响。  相似文献   

2.
姚才华  范彦斌  张刚 《江苏地质》2023,47(3):330-338
运用Kriging插值法构建蒋家沙风电场区建设前和建设后3期(2015年、2018年和2021年)水下地形三维模型。通过年际时间尺度的对比分析发现:风电场建设后,蒋家沙区域潮滩变低,范围扩大,地形趋于平坦;潮沟淤浅并向东北退移,范围缩小。2015—2018、2018—2021、2015—2021统计数据显示,3年间平均冲淤速率由-3.77 cm/a变为21.14 cm/a,6年间平均冲淤速率为8.18 cm/a。地形变化表现为建设后初期略有冲刷,此后强势回淤,总体处于弱淤积状态,该地形变化主要与辐射沙脊群区域沉积动力相关。根据2014—2019年区域余流流向数据,总体上看,泥沙的输运方向在近潮滩区域均指向潮滩方向,离潮滩区域以向东北输运为主;6年间潮滩范围逐渐扩大,泥沙向深槽输运,东部潮沟萎缩,持续向东北退移。在物源锐减和海平面逐年上升的背景下,研究区地形将长期处于弱淤积状态且淤积呈减缓趋势,风电场建设是该区域短周期内局部地形改造的主要因素之一。  相似文献   

3.
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   

4.
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   

5.
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   

6.
为探究三峡水库持续下泄清水条件下长江中游沙卵过渡段内卵石局部冲刷、搬运和淤积现象的成因,采用近期水文、泥沙和地形观测资料,结合河道平面二维水动力模型,计算了研究河段内各级流量下的泥沙起动粒径分布,分析了上游来流、下游水位变化的影响,辨析了河床冲淤的成因。结果表明:① 45 000 m3/s以上流量时,粒径大于30 mm的卵石可沿洪水主流带连续搬运;流量低于15 000 m3/s时,大粒径卵石只能沿枯期主流在浅滩河段局部搬运;流量介于两者之间时,水流对大粒径卵石的输移动力相对较弱。②三峡建库后,洪水量级削减而枯水天数增多,不利于卵石长距离下移,而水位下降不断溯源传递,促使枯水流路上原本稳定的区域开始冲刷。③局部淤积现象由枯期水动力增强所导致,与长江中游沙卵过渡段特殊的地貌和沉积环境有关。卵石局部冲淤调整可能在河段内多个位置长期存在,需引起关注。  相似文献   

7.
为探究三峡水库持续下泄清水条件下长江中游沙卵过渡段内卵石局部冲刷、搬运和淤积现象的成因,采用近期水文、泥沙和地形观测资料,结合河道平面二维水动力模型,计算了研究河段内各级流量下的泥沙起动粒径分布,分析了上游来流、下游水位变化的影响,辨析了河床冲淤的成因。结果表明:① 45 000 m3/s以上流量时,粒径大于30 mm的卵石可沿洪水主流带连续搬运;流量低于15 000 m3/s时,大粒径卵石只能沿枯期主流在浅滩河段局部搬运;流量介于两者之间时,水流对大粒径卵石的输移动力相对较弱。② 三峡建库后,洪水量级削减而枯水天数增多,不利于卵石长距离下移,而水位下降不断溯源传递,促使枯水流路上原本稳定的区域开始冲刷。③ 局部淤积现象由枯期水动力增强所导致,与长江中游沙卵过渡段特殊的地貌和沉积环境有关。卵石局部冲淤调整可能在河段内多个位置长期存在,需引起关注。  相似文献   

8.
采用浅地层剖面测量、沉积物柱样测年和海图水深计算对比相结合的方法,探讨位于长江入海泥沙向南输送通道上的朱家尖岛海域的泥质沉积速率的历史变化,并通过水文泥沙测量和沉积物取样分析寻找长江入海泥沙向南输送的佐证。结果表明:朱家尖岛海域全新世海平面上升以来泥质沉积厚度为5~20m,相当于沉积速率0.06~0.25cm/yr;1840~1960年区域平均沉积速率为1.4cm/yr,近60年沉积速率仅为此前120年沉积速率的一半左右。据此推断:全新世后期以来该海域泥质沉积速率先后经历了一个长期(千年尺度)缓慢的增大阶段和一个短期(年代尺度)迅速的减小阶段,与长江流域人类活动和河口湾充填作用共同造成的入海泥沙通量的总体变化趋势相吻合。  相似文献   

9.
江苏如东潮滩微地貌及现代沉积速率   总被引:2,自引:0,他引:2  
在江苏如东洋口港东侧长沙镇外宽10余千米的粉砂质潮滩上进行潮滩微地貌调查,在低潮滩设置 3个沉降板,在中、低潮滩采集4个柱状样(长度92~151 cm),并对其进行垂向上的粒度和微相分析及210 Pb 测量。希望通过上述调查,揭示研究区近几十年来由于强烈的人类活动导致的潮滩冲淤调整状态。调查结果表 明,低潮滩尤其是低潮滩下部是微地貌变化最活跃的场所,表现为潮滩表面凹凸不平、多冲蚀洼槽,沉降板试 验结果显示低潮滩约2个月的沉积量向水边线方向显著减小;中潮滩表面平坦,微地貌相对比较稳定。柱状样 研究结果显示,低潮滩早期为向上变细的进积层序,但近期沉积物粗化,呈现退积层序,且该现象在低潮滩下 部尤其明显;中潮滩柱状样显示向上细化层序,反映稳定持续的加积和进积。柱状样的210 Pb测试结果表明,中 潮滩中部(米草滩中部) 沉积速率为4.40cm/a,中潮滩下部(米草滩前缘) 为1.85cm/a,低潮滩中部为1.54 cm/a,低潮滩下部无法获得沉积速率。该沉积速率结果还显示低潮滩退积层序的开始时间和研究区米草的引种 时间基本吻合。上述研究结果反映近30a来在人类活动尤其是米草的作用下,研究区中潮滩稳定淤积,但低潮 滩却因缺乏充足泥沙而加剧侵蚀。  相似文献   

10.
本文采用有限差分和随机振动合成结合的复合方法,模拟了当礼县—罗家堡断裂发生矩震级Mw7.7级大地震时,在天水盆地产生的宽频带地震动场,分析了在设定地震条件下盆地内的地震动分布特征,为该区黄土地震滑坡分析提供了地震动参数结果。结果显示:(1)有限差分法和随机振动合成法可以很好地互补,得到盆地内地表宽频带地震动;(2)地震在盆地区域产生了强烈地震动,PGA(峰值加速度)介于150~900 gal,离断层较近的区域东南角的PGA最大,随着断层距的增加,PGA逐渐减小。河谷南侧的PGA值相比北侧较大,具备诱发滑坡的强大动力条件;(3)盆地区域PGV(峰值速度)最大为120 cm/s。受第四系覆盖层放大效应和地形放大效应共同影响,水平向地震动在盆地区域东侧和中部具有较大PGV,而西侧PGV相对较小。竖向地震动在盆地区域东侧较弱,而在中部和西侧较强,特别是最西侧陡峭的山坡上,PGV达到了最大值。此外,竖向地震动明显受到覆盖层厚度的影响,譬如在盆地区域南侧的中间部位,也具有较大的PGV。  相似文献   

11.
MIS 3晚期以来江苏中部海岸的层序地层   总被引:6,自引:0,他引:6  
夏非  殷勇  王强  张永战  刘敬圃 《地质学报》2012,86(10):1696-1712
通过对苏北岸外西洋潮流通道内钻孔和地震剖面的地层沉积学、年代地层学、地震地层学和层序地层学等多学科再研究,以及区域钻孔再对比,本文确定该海域约从35kaBP(14C惯用年龄)开始经历了滨岸砂坝、淡水湖沼、河流泛滥平原、滨岸沼泽、潮流沙脊和潮流通道一系列的环境演变,主要受控于MIS3晚期以来的海平面旋回以及古河流入海沉积物供给,而构造沉降是相对次要的,由此形成了五级层序地层中的末次冰期晚间冰阶准层序和冰后期准层序,以及前者的高水位体系域和强制海退楔体系域、后者的海侵体系域和高水位体系域。海域中潮流沙脊可能开始发育于冰后期海侵淹没本区(约9calkaBP)之后,但一直只是水下暗沙且处在不断调整之中,直到1128~1855AD间黄河夺淮从苏北入黄海,大量泥沙充填潮道,部分水下暗沙出露海面成为明沙。西洋潮流通道并非是晚全新世期间通过沙脊的蚀低而形成,而在全新世高海面前后就已具雏形并持续至1128AD,1128~1855AD和1855AD至今分别经历了充填淤浅与冲刷成型的过程,且今后具有进一步展宽刷深的趋势。  相似文献   

12.
苏北海岸带潮成辐射砂脊群的形成及其古地理意义   总被引:3,自引:3,他引:3       下载免费PDF全文
南黄海潮成辐射砂脊群的面积约为20000km2,以160° 的角度从弓京港向海展开。它与以弓京港为顶点的辐聚辐散潮流场相伴而生。60余个钻孔揭示,毗邻海区辐射砂脊体系的江苏沿岸平原上存在一个面积约3000 km2潮成砂区,其顶点位于东台,同样呈扇形以130°的角度向东展开。在潮成砂区内潮成砂质沉积单元位于冰后期海侵型砂坝-湖沉积层之上,二者之间具明显的冲刷面。砂坝-湖沉积层位于晚更新世基底硬粘土层之上,二者之间有较长的沉积间断。潮成砂沉积层上覆潮坪沉积层,二者呈渐变关系。以潮成砂层底部的侵蚀面为界,其下为海侵序列,其上为海退序列。古潮流的研究揭示,潮成砂区内同样存在辐聚辐散的古潮流场,其顶点位于东台附近。由此推断,沿海平原的潮成砂区内也是辐射状潮成砂脊体系,它形成于全新世海退时期。由于长江和黄河三角洲的前展,以东台为顶点的潮成砂脊体系逐渐暴露成陆。陆上和海域潮成辐射砂脊群形成于相同的潮汐动力环境,但处在不同的发育阶段,前者形成于全新世中期,后者发育于全新世晚期。矿物分析揭示,陆上和海区的潮成辐射砂脊体系主要由长江和黄河沉积物组成,其中长江沉积物由南向北运移,且时间较早;黄河沉积物由北向南运移,时间较迟,这种泥沙的运移趋势一直延续至今。随着海平面上升趋于减缓,长江三角洲增长,江苏海岸线向外推进,苏北潮成砂区逐渐出露成陆。1128年黄河由苏北入海,大量的黄河沉积物的加入,加快了本区海岸线的推进速度。潮成辐射砂脊体系与辐聚辐散的潮流场相伴而生,全新世最大海侵以来,辐聚辐散的潮流场的位置曾经历三次变化,第一次以长江古河口湾为顶点,第二次位于现今陆上潮成砂区,第三次位于以弓京港为顶点的现代海域,代表了潮成辐射砂脊体系发育的三个阶段。只是长江古河口湾的潮成辐射砂脊体系由于河流的巨大改造作用,可能未很好保存,至今未发现典型的辐射砂脊体系。  相似文献   

13.
Systematic morphological changes of the coastline of the outer Yangtze River mouth in response to storms versus calm weather were documented by daily surveys of tidal marshes and flats between April 1999 and May 2001 and by boat surveys offshore during this and earlier periods. The largest single event during 1999 to 2001 was Typhoon Paibaian, which eroded the unvegetated tidal flat and lower marsh and led to accretion on the middle-to-upper marsh and in the subtidal channel. The greatest erosion of 21 cm occurred at the border between the marsh and the unvegetated flat due to the landward retreat of the marsh edge during the storm. Strong waves on the flats increased suspended sediment concentration by 10–20 times. On the upper marsh, where the frequency of submergence by astronomical tides is only 3%, Typhoon Paibian led to 4 cm of accretion, accounting for 57% of the net accretion observed over the 2-yr study. Typhoon Paibian led to 4 cm of accretion, accounting for 57% of the net accretion observed over the 2-yr study. Typhoon Paibian and other large storms in the 1990s caused over 50 cm of accretion along the deep axis of the river mouth outlet channel. During calm weather, when hydrodynamic energy was dominated by tides, deposition was centered on the unvegetated flats and lower, marsh with little deposition on the high marsh and erosion in the subtidal channel. Depositional recovery of the tidal flat from typhoon-induced erosion took only several days, whereas recovery of the subtidal channel by erosion took several weeks. A conceptual model for the morphological responses of tidal marshes, flats, and subtidal channels to storms and calm weather is proposed such that sediment continually moves from regions of highest near-bed energy towards areas of lower energy.  相似文献   

14.
Four bedform provinces have been identified on Georges Bank using sidescan-sonar and echo-sounding techniques: large sand waves superimposed on sand ridges, small sand waves, megaripples, and featureless seafloor. The large sand waves and sand ridges are found on the bank crest where the surface tidal currents are strongest. Areas of small sand waves and megaripples, formed where tidal currents are moderate in strength, border the area of large sand waves to the north and south. Featureless seafloor is found farthest from the bank crest where surface tidal currents are weakest. Sand-wave asymmetry and surface-sediment texture have been used to infer bedload transport paths on Georges Bank. In the large sand-wave area, bedforms indicate a clockwise transport around each of the linear north-west-striking sand ridges with slight convergence of the sand waves on the ridge crests. This transport pattern implies erosion from the troughs and accumulation on the sand ridges. The asymmetry of the small sand waves along the south side of Georges Bank indicates that sand is also transported southward away from the linear sand ridges on top of the bank. Although the asymmetry of megaripples could not be determined, the occurrence of megaripples between the small sand-wave province and areas of featureless seafloor suggests a decreasing effectiveness of sand transport away from the bank crest. This sand dispersal pattern is further supported by the surface sediments which become progessively finer to the north and SW away from the crest of Georges Bank.  相似文献   

15.
掌握滩涂演变规律是保护和开发滩涂资源的重要依据,杭州湾水沙条件复杂,人类活动强度大,滩涂演变机制复杂。基于杭州湾近60 a(1959—2019年)水文地形监测资料,结合促淤围涂进程,分析了杭州湾南岸滩涂在水沙变化和人类活动影响下的演变规律及其机制。结果表明:近60 a来,杭州湾南岸滩涂普遍淤高,1959—2003年淤积速率约6.70 cm/a,2003—2019年淤积速率加快,约12.59 cm/a;大规模围涂和潮差增大是滩坡坡度增大的主要原因;庵东浅滩平面形态的周期性演变与径流的丰枯周期有关,呈现“丰水走弯,枯水趋直”现象;长江来沙减少尚未对杭州湾南岸滩涂淤涨产生明显影响;围涂工程是杭州湾南岸滩涂近期淤涨速率加快、潮滩宽度减小的主要原因。  相似文献   

16.
Tidal flats play a tremendous role for solving the problem of land use because of the crisis of population increments. Many coastal countries have carried out reclamation projects near seas in various degrees for a long time. China currently has about 2.13?million?hm2 of tidal flats that are mainly scattered in the delta plains and coastal regions near medium- to large-sized rivers. The tidal flats in China are reserves featuring dynamic growth and a capacity for continuous expansion; the tidal flat area undergoes an annual increase of over 20,000?hm2. In recent years, countries around the world have paid much attention to the marine ecological environment and have taken measures to restrict the scale and range of sea reclamation. Although widespread reclamation of tidal flats in China has taken place, such activities have also brought some negative effect: (1) water overdraft, seawater intrusion, (2) tidal gates and channel silting, (3) environment pollution, unbalanced ecosystem, and (4) loss of wetlands and threats to the survival of species. This paper examines the mechanisms associated with tidal flat dynamic growth, and points out that artificial siltation can greatly increase the growth speed of tidal flats, and the actual measured annual siltation thickness may reach 0.5?C2.7?m. At present, this paper proposes a theory relating to the ecological exploitation of this ecosystem as follows: (1) the principle of adjustment to local conditions; (2) the principle of three-dimensional distribution; (3) the principle of ecological balance; (4) the principle of green and environmental protection. In practical terms, this dynamic growth may play a significant role in mitigating conflicts relating to land use demands in coastal areas.  相似文献   

17.
黔西纳雍煤系地层中潮汐沙脊的发现   总被引:1,自引:0,他引:1  
丁述理 《地层学杂志》1994,18(3):217-220
发现并分析了黔西纳雍县生拱地区龙潭组中段一个潮汐沙脊的沉积层序。研究了组成潮汐沙脊砂岩的沉积构造和岩石学特征,并通过主砂体图再现了潮汐沙脊的平面展布。  相似文献   

18.
A unique radial tidal sand ridge system (RTSRS) has developed under a complex tidal current field on the eastern China coast between the Yangtze River delta to the south and the abandoned Yellow River (Huanghe) delta to the north. The present study examines the sedimentary evolution of a ridge-channel pair in the central RTSRS. Three cores, with two on the ridges and one in the channel, were drilled to reveal the late Pleistocene-Holocene deposits of the system. Five sedimentary facies were distinguished, i.e. ridgeshallow subtidal facies, ridge-deep subtidal facies, nearsurface channel bottom facies, middle tidal flat facies and low tidal flat facies. The ridge-shallow subtidal facies consists of sandy strata with ripple cross beddings, horizontal lamina, and massive beddings. Bioturbation seldom occurs. The ridge-deep subtidal facies is primarily characterized by sandy and muddy interlayers with common flaser and lenticular bedding structures. Bioturbation appears abundantly. Massive and graded sediment sequences of storm origin are present as characterized by rich shell fragments. The nearsurface channel bottom facies consists of loose, soft, clayey silt deposits with deformed sedimentary layers. This facies occurs in the deeper part of the active channels. The middle tidal flat and lower tidal flat facies composed of silt-clay couplets prevailed primarily in the tidal flats. Incomplete sedimentary successions show that coastal plain deposits dominate in the study area during 12–13 ka B.P. The sandy ridge and channel facies became dominant during 4–6 ka B.P. when the sea level receded temporarily. Tidal ridge and channel in the study area became active during the last four decades. Sediment reworking due to typhoon and sandy ridge migration plays a key role in shaping the present radial ridge system.  相似文献   

19.
江苏沿海辐射沙脊群在国内潮成沙体中较为罕见,有关辐射沙脊形成的动力机制已有定论,但对其形成时间和物质来源说法不一。运用长时间尺度动力地貌过程数学模型复演了辐射沙脊群形成演变过程,结果表明:江苏岸外辐聚辐散的流场不依赖于局部海底地形而独立存在;不同初始地形下只要泥沙供给充足,经过150年左右潮流动力对地形不断塑造,辐射状"水道-沙脊"相间的地貌格局都能基本形成;辐射沙脊群是废黄河北归约150年后,随着废黄河水下三角洲不断被侵蚀,辐聚辐散的潮流对不同来源物质重新塑造的结果,是动力-泥沙-地形相互作用的产物。  相似文献   

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