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1.
利用不同年份的水深地形资料进行冲淤计算,结合实测水文泥沙、现场岸滩沉积地貌观察、新老海堤分布位置及以往浅地层探测和考古等资料综合分析发现,岸滩地貌形态从大约距今7 000 a前的一个古基岩港湾经受细颗粒泥沙长期不断地充填、淤积转化为近乎平直的岸段.在自然和人类活动的共同作用下,近370 a来海岸线以5.3 m/a的速度向海推移,潮滩以0.25 cm/a的速率沉积.近40余年来水下岸坡平均冲淤速率为-3.8~2.4 cm/a,横向冲淤调整有类似砂质海岸剖面塑造的特性,泥沙经受了在横向剖面"上部微淤、下部微冲"和纵向总体"东侧微冲、中西部微淤"的交替重复调整过程,目前朝着"上部微淤、下部微冲"的均衡剖面调整方向发展.  相似文献   

2.
采用不同年代的水深图和物质来源测量资料,研究了青岛港外航道开挖区的海床演变情况。分别利用等深线、区域地形及海底地形剖面来对比水深地形变化,研究开挖区的地形冲淤变化,结果表明拟开挖航道区近70 a来,其海床演变主趋势为轻微侵蚀,而其南北两侧的邻近海域海底地形变化则既有局部侵蚀又有局部淤积;通过外航道开挖区域11个观测点测量的有关水流、底沙粒径等数据计算分析,得到其开挖后淤积厚度在0.453~4.149 cm/a之间。青岛港外航道开挖区年平均回淤速率不大,适合扩建。  相似文献   

3.
为研究珠海市海域地形演变,基于2005~2014年海图资料提取了两期水深点和等深线,对比选取最优插值方法,构建珠海市海域水下地形变化图,分析研究区的冲淤变化。结果表明:(1)2005~2014年珠海市海域的0m和2m等深线比10m等深线变化剧烈,变化集中在近岸区域,说明人类改造活动占主导地位;(2)经不同区域冲淤统计和代表性断面分析可得,9年间海底淤积量大于冲刷量,淤积区域集中在澳门港至淇澳岛附近,港珠澳大桥建设为主导因素;冲刷区域集中在崖门水道、进海航道和高栏港附近,港口清淤及航道疏浚为主导因素。  相似文献   

4.
海床冲淤变化对港口与航道工程建设非常重要。由于泥沙供给、人类活动和其他等因素的影响,海床冲淤变化非常复杂。洋山深水港是一个新兴的深水港口,是上海国际航运中心重要的组成部分,它的建设引起了各方的广泛关注。目前,洋山水深港一、二、三期港区在潮流运动和定期疏浚下保持着良好的水深。四期港区工程是世界上最大的全自动化深水码头,2017年12月以开港运行。本论文基于大量的地形资料、水文泥沙资料,分析了整个洋山深水港多年来的海床冲淤变化和近期四期工程海域海床冲淤变化。结果显示:1998-2010年整个洋山港区海床冲淤变化表现为较大幅度的冲淤,在洋山主通道内呈现为"南淤北冲"的格局,但是颗珠山汊道一直以来均表现冲刷的趋势;四期港区水域近一些年来也表现为一个冲刷的趋势,多年年均冲刷幅度0.7m左右;讨论了外界泥沙供给、港口工程陆域边界封堵、港池疏浚和由此带来的水流的变化以及泥沙水力特性等因素的对洋山港海域海床冲淤变化的影响,在众多因素中,颗珠山汊道的存在(或保留)对洋山西部水域或四期港区水域冲刷有着积极的作用,它的存在所产生的落潮作用对四期港区的水深维护起到重要的正面影响。  相似文献   

5.
基于水文气象,水深地形等实测资料,运用水动力和泥沙输运数学模型,分析了潍坊港3.5万吨级航道工程对周边海域冲淤环境的影响,预测了淤积趋势。研究结果表明,工程建成后研究区流场变化较小,变化主要集中在口门附近。航道骤淤的淤积厚度最大为0.81m。口门内、外平均淤积厚度分别约为0.26m和0.27m。大风淤积量约为290万m3。口门内、外淤积量分别约为41万m3和249m3。  相似文献   

6.
利用表层沉积物及水深地形等实测资料,结合泥沙起动流速公式、潮流场数值模拟等方法,对滨州北部近岸海域的冲淤特征进行了初步探讨。研究结果表明,1983—2001年研究区的侵蚀区域主要分布在4m等深线以内,侵蚀量一般为0.2m左右,套尔河河口及河口西侧侵蚀量较大,而河口以东则表现为淤积;4m等深线以外淤积现象明显,淤积量一般为0.3m,向海方向淤积量有变大的趋势。2001—2016年,0m等深线以内主要以淤积为主,淤积量的高值区出现在滨州港防波堤西侧、马颊河河口附近;0~4m等深线之间以侵蚀为主,侵蚀量平均约0.6m;4m等深线外侧海域则主要为轻微的淤积状态,仅在滨州港防波堤堤头附近区域为侵蚀状态。港口工程对潮流场和波浪场的影响显著,是控制研究区冲淤变化的重要因素。  相似文献   

7.
利用表层沉积物及水深地形等实测资料,结合泥沙起动流速公式、潮流场数值模拟等方法,对滨州北部近岸海域的冲淤特征进行了初步探讨。研究结果表明,1983—2001年研究区的侵蚀区域主要分布在4m等深线以内,侵蚀量一般为0.2m左右,套尔河河口及河口西侧侵蚀量较大,而河口以东则表现为淤积;4m等深线以外淤积现象明显,淤积量一般为0.3m,向海方向淤积量有变大的趋势。2001—2016年,0m等深线以内主要以淤积为主,淤积量的高值区出现在滨州港防波堤西侧、马颊河河口附近;0~4m等深线之间以侵蚀为主,侵蚀量平均约0.6m;4m等深线外侧海域则主要为轻微的淤积状态,仅在滨州港防波堤堤头附近区域为侵蚀状态。港口工程对潮流场和波浪场的影响显著,是控制研究区冲淤变化的重要因素。  相似文献   

8.
为了明确黄河水下三角洲北部区域海洋动力对海底地形变化的影响,采用2009年黄河水下三角洲北部区域高精度水深地形资料,与2004年水深地形资料进行对比分析。同时,利用2009年对表层沉积物的粒度分析,结合该区域的水文潮流特征,对该海区悬移质泥砂引起的冲淤变化进行了预测。研究结果表明该区域经过多年的冲淤调整正逐渐达到冲淤平衡,形成稳定的粉砂淤泥质海岸,但在大风大浪引起的恶劣海洋作用下,本区仍然经历着缓慢的冲刷过程。埕北海域在CB151平台附近形成一个冲刷中心,冲刷深度超过1 m;孤东海堤外侧海域,自陆地向等深线12 m区域均发生轻微冲刷作用,尤其是海堤根部,由于波浪的累加作用,冲刷最为明显,最大冲刷深度可达1.5 m以上。  相似文献   

9.
通过统计分析、空间分析、三维分析等方法,本文重现了50年担子岛及其周围海域的冲淤变化过程。得出如下结论:(1)近50年来,研究区内淤积面积大于侵蚀面积,但侵蚀强度大于淤积强度;侵蚀区主要分布在担子岛岸滩的-2m以浅区域,侵蚀呈明显的带状分布;冲淤速率呈加剧趋势,冲淤演变呈现明显的周期变化。(2)担子岛岸滩有4条剖面的冲淤形态以"整体侵蚀后退"居多,其他剖面呈"上冲下淤"的形态,剖面冲淤转换不同的剖面水深不同,在-2m以浅的岸滩,冲淤转换一般在-1.2m左右。剖面上下部位冲淤强度的不同,造成不同剖面具有不同的冲淤平衡点。本文研究成果为控制担子岛岸滩侵蚀的速率,减缓担子岛侵蚀程度提供一定的理论依据。  相似文献   

10.
以杭州湾北岸金山咀—龙泉港岸段边滩及海床为研究区域,利用1989—2014年实测及海图资料分析岸滩断面地形变化和岸段冲淤变化。结果表明:在该研究时段,岸段存在长期稳定的冲刷深槽;近岸海床的冲淤表现出“波动性”,5 m等深线(2014年)以浅区以淤积为主,5 m等深线以深冲淤更迭,1989年以来总体呈现冲刷态势。长江入海泥沙量变化为该岸段发生侵蚀/淤积的影响因子之一,台风大浪及海床侵蚀/淤积波的移动导致海床冲淤复杂化。  相似文献   

11.
辽河油田太—葵管道路由区位于辽东湾顶潮汐水道区。通过不同时期实测水深对比,得出该区海底冲淤变化趋势:海区总体呈微淤态势,潮汐水道两侧浅滩淤积,两侧边坡一侧侵蚀另一侧淤积,发生平面迁移。管道路由一线蚀淤幅度较小,一般不超过0.5 m,最大侵蚀区发生在水道底和两侧边坡,是海底输油管道容易冲刷悬空的潜在危险区,需采取深埋措施提高安全性。  相似文献   

12.
根据1979,1996和2009年3个时期水深地形数据,利用GIS软件分析了岱山水道西部潮滩、水下岸坡和深槽区2个时段的冲淤变化。结果显示:1979-1996年的17 a间,研究区大部分区域冲淤幅度-般在±1 m以内,只有深槽局部区域冲刷大于2 m;1996-2009年的13 a间,潮滩区冲淤变化与1979-1996年间类似,有±1 m冲淤变化,而水下岸坡和深槽区的冲刷幅度明显加大,水下岸坡平均冲刷幅度达2 m,深槽区平均冲刷幅度达3 m。据分析, 1996年以后,水下岸坡和深槽区冲刷幅度明显加大的主要原因有两个:-是岱山水道水流流速较快,粘土质的底质容易遭受冲刷;另-个是在潮滩区至水下岸坡间建设了码头和栈桥,浅水区水流部分受阻,导致深水区域流速加大,从而加剧了水下岸坡和深槽区域的冲刷幅度。  相似文献   

13.
基于湛江湾口外海图地形资料,采用GIS与动力地貌分析的方法,研究了近50年来湛江湾口外落潮三角洲的冲淤变化特征,对湛江湾口外落潮三角洲的演变机制进行了探讨。湛江口外落潮三角洲体系包括口外东北浅滩、西南边滩及口门通道深槽。近50年来,东北浅滩东缘及滩顶出现了侵蚀后退,浅滩西缘和南缘呈淤积趋势,东北浅滩整体有西移南扩趋势;西南边滩有不同程度的侵蚀后退;口门通道深槽有所淤积。湛江湾口外落潮三角洲侵蚀与沿岸泥沙供给不足及人类活动影响有关,口门通道深槽淤积除与落潮三角洲侵蚀泥沙向西搬运有关外,还可能与湛江湾内围垦导致口门通道潮汐动力减弱有关。航道北侧东北浅滩变化对航道回淤的可能影响值得关注。  相似文献   

14.
湛江湾填海工程对海床冲淤的影响预测   总被引:2,自引:0,他引:2  
建立了湛江湾泥沙数学模型,模拟了湛江湾海床冲淤演变,模拟结果表明,湛江湾海床较为稳定,年冲淤强度小,模拟冲淤分布与历史海图资料得出的长期演变趋势符合。模型用于湛江湾围填工程对海床冲淤变化的影响预测,结果表明工程后海床冲淤强度没有明显的改变。另外,优选了围填方案,估计了港池的淤积强度。  相似文献   

15.
Side-scan sonar investigations in the eastern part of the macrotidal Bay of Seine have revealed the presence of numerous rippled scour depressions (RSDs) at water depths of 5–9 m. The sediments in these depressions consist essentially of coarse-grained shell hash derived from underlying Holocene sediments dated at roughly 6,500 years BP, and arranged in large wave-generated ripples. The shallow marine area where these features occur consists of a wave-generated ravinement surface produced during the marine flooding of the late Holocene transgression. It can be shown that, during the last 20 years at least, erosion of the muddy sand and sandy seabed has exposed underlying relict sediments. These consist of stiff clays, silts and a layer of shell debris which, when exposed, cover the bottom of large scour depressions which appear to be in equilibrium with the local hydrodynamic regime. Morphological and hydrodynamic data suggest that the RSDs are generated by strong cross-shore bottom currents flowing parallel to the features in the direction of the prevailing waves, and probably associated with storm-induced downwelling events.  相似文献   

16.
El Zeit Bay is a semi-closed area with a rectangular shape which south side is connected witu northwestern side of Red Sea. The study was done to detect the characteristics of the bottom facies at El Zeit Bay. Single-beam seabed echoes combined with diving survey and sediments analyses were used to detect sea bed characteristics. The seabed floor of the study area is characterized by three physiographical distinct bottom facies; sand facies: floral facies and coral patches facies. Sand facies lies at very shallow water it extended from shore line to depth about 2 m. It has very fine sand size intercalated by mud sediments. It is characterized by very poor benthos. Floral bottom facies has medium sand which characterized by rich floral vegetation this flora appear in scattered and irregular forms. It is observed at an average depth from 4 m to 6 m. Coral patches facies is characterized by the presence of coarse sediments. The coral reef covers about 40% of the study area (29.5% hard corals and 10.5% is soft ones) while the rest of the area (60%) is characterized by different benthos. In communities general, his area characterized by high biodiversity.  相似文献   

17.
Mid-fan areas in the Bay of Bengal to the west of the Andaman-Nicobar Islands and to the east of the 90 E ridge display remarkable channel-levee and interlevee characteristics over the seabed. These subsea channels at 3,000 m or more water depth have specific orientations along NNE or NNW. Most of these major and minor channels are at present inactive, except one running along the eastern part of the area following the reported subduction suture (Currey et al., 1979). The other channels in the western part retain the configuration of a floor-bank combination but are covered with a thin deposition of pelagic organisms without any significant terrigenous inputs to a depth of around 25 cm below the seabed. On the other hand, the active channel to the east is filled with continuous hemipelagic to terrigenous inputs up to at least 1.5 m bsf. The pelagic organisms of the upper 25 cm of seabed over the inactive channels as well as in their banks and interlevee areas are mainly represented by foraminiferal tests and thus constitute foraminiferal ooze. Most of the seafloor is covered by such ooze except in the easternmost part, where the active channel brings a terrigenous influx in the form of turbidites. The fan deposition has been restricted to the easternmost active channel since the early Holocene. The age of the pelagites that constitute the 25-cm top sediment slice is assumed to represent about 8,000 years, calculated at the rate of deposition of 3 cm 1,000 years (Kennet, 1982). Thus, most of the western seabed has not experienced any fan deposition during the last 8,000 years. However, below 25 cm, the entire area is seen to have experienced fan deposition as evidenced by occurrence of terrigenous silt and clay. Significantly, incidence of thermogenic hydrocarbons is proved in the levee-in terlevee complexes of the central part. Being closer to the subduction zone, gas seepages through pervasive fissures are perhaps more pronounced here.  相似文献   

18.
近岸海床冲淤变化直接反映海区地貌稳定状态,由此影响海区物质迁移及水运资源可持续利用。基于此,本研究通过选择苍南海域不同时期的海图资料,基于ArcGIS平台探讨该海域多尺度海床冲淤过程,为研究区海岸港工建筑规划与评估提供理论指导。主要研究结果包括:苍南海域海床冲淤变化大致分为四个阶段,即1931—1970年大幅淤积,海床净淤积量达到169.47×106m3,淤积强度为5.18 cm/a;1971—2005年海床淤积幅度减弱,海床净淤积量为12.24×106m3,淤积强度为0.41 cm/a;2006—2009年海床由淤转冲,海床净冲刷量为14.70×106m3,冲刷强度为3.60 cm/a;2010—2017年海床持续冲刷,海床净冲刷量为10.17×106m3,冲刷强度为1.33 cm/a。除1931—1970年10 m等深线向海大幅扩张以及1971—2005年10 m等深线有部分向海扩张外,1971—2017年5 m与10 m等深线普遍向陆后退。2006—2017年,位于北关港内的2 m等深线也向陆后退。冲淤结果显示,苍南海域海床未来可能呈现弱侵蚀态势。其中,风暴潮频发导致海床经常性失稳加之长江入海泥沙的减少导致该区域泥沙补给不足,二者共同作用可能是该区域海床由淤积逐渐转为侵蚀的主导因素。  相似文献   

19.
The present study is the first to directly address the issue of gas hydrates offshore West Greenland, where numerous occurrences of shallow hydrocarbons have been documented in the vicinity of Disko Bugt (Bay). Furthermore, decomposing gas hydrate has been implied to explain seabed features in this climate-sensitive area. The study is based on archive data and new (2011, 2012) shallow seismic and sediment core data. Archive seismic records crossing an elongated depression (20×35 km large, 575 m deep) on the inner shelf west of Disko Bugt (Bay) show a bottom simulating reflector (BSR) within faulted Mesozoic strata, consistent with the occurrence of gas hydrates. Moreover, the more recently acquired shallow seismic data reveal gas/fluid-related features in the overlying sediments, and geochemical data point to methane migration from a deeper-lying petroleum system. By contrast, hydrocarbon signatures within faulted Mesozoic strata below the strait known as the Vaigat can be inferred on archive seismics, but no BSR was visible. New seismic data provide evidence of various gas/fluid-releasing features in the overlying sediments. Flares were detected by the echo-sounder in July 2012, and cores contained ikaite and showed gas-releasing cracks and bubbles, all pointing to ongoing methane seepage in the strait. Observed seabed mounds also sustain gas seepages. For areas where crystalline bedrock is covered only by Pleistocene–Holocene deposits, methane was found only in the Egedesminde Dyb (Trough). There was a strong increase in methane concentration with depth, but no free gas. This is likely due to the formation of gas hydrate and the limited thickness of the sediment infill. Seabed depressions off Ilulissat Isfjord (Icefjord) previously inferred to express ongoing gas release from decomposing gas hydrate show no evidence of gas seepage, and are more likely a result of neo-tectonism.  相似文献   

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