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1.
通过无人机遥感、岸滩监测剖面、监测桩和沉积物粒度分析等手段研究了东海岛东北部典型岸段短期冲淤变化特征。结果表明,研究区岸线在一年半的时间内呈现后退趋势,侵蚀严重区域岸线平均后退约10m;岸滩夏季年度变化以侵蚀为主,侵蚀严重部位主要位于低滩,最大下蚀可达1m以上;半年度剖面监测结果显示,岸滩季节性变化明显,存在冬淤夏冲的特征;受风暴潮的影响,岸滩在2014-06—09发生严重侵蚀,部分区域后滨沙丘后退约20m;沉积物平均粒径分布的区域差异表明,沉积物有沿岸向北和向陆一侧运移的趋势。风暴潮、虾池排污和灯塔是影响东海岛典型岸段冲淤的主要因素。  相似文献   

2.
泉州市砂质海岸侵蚀特征及原因分析   总被引:2,自引:1,他引:1  
基于泉州市沿岸岸滩侵蚀状况调查,结合海岸动力地貌学知识研究,分析泉州市沿岸岸滩侵蚀状况.调查岸段有32个,对其进行采样拍照及侵蚀现状描述,对7个岸段进行了剖面调查及沉积物分析.研究表明泉州市沙质海岸以岬控岸和沙坝--泻湖为主,岬控岸的沉积物和剖面表现为中细粒沉积和岸坡由近岸向海变平缓,而沙坝--泻湖岸则以粗粒沉积和岸坡起伏不平为特征,沉积物特征、沿岸输沙、平衡剖面及动力地貌均反映了泉州砂质海岸的侵蚀状况.在全球海平面上升的大背景下,除特大自然灾害影响,泉州近海域的人为活动恶化了海岸侵蚀的程度,其中以海砂开采最为严重.  相似文献   

3.
琼州海峡南岸海岸动力地貌研究   总被引:6,自引:0,他引:6  
陈沈良 《热带海洋》1998,17(3):34-42
岬湾相间的琼州海峡南岸在海岸动力条件作用下,岸滩发生侵蚀或堆积,特别是南岸中部的南渡江三角洲沿岸岸滩演变剧烈。该文从海岸动力地貌的角度,对琼州海峡南岸的海岸动力特征、泥沙运动以及岸滩演变进行分析。根据海峡南部三维潮流场数值模拟结果,结合经验公式初步分析潮流引起的泥沙运移速率和方向,得到岸外水域总的泥沙运移趋势为从西向东。根据波浪动力计算分析沿岸泥沙运移,探讨沙质岸滩的地貌演变之间的关系,得出海峡南  相似文献   

4.
基于海阳近岸海域的水深地形、表层沉积物粒度以及遥感影像等资料,利用泥沙起动流速和沿岸输沙数理公式以及岸滩演化数学模型,探讨了海阳近岸海域岸滩演化特征及主要控制因素。研究结果表明,研究区总体处于动态平衡状态,潮流很难使泥沙发生直接起动,波浪造成的沿岸输沙总体向ENE方向运移。影响研究区冲淤变化的因素主要有河流来沙、波浪以及人工构筑物。河流径流量减小,导致研究区泥沙来源减少,加剧了局部海岸侵蚀;近岸人工构筑物的建设,改变了泥沙输运趋势,并导致局部冲淤环境发生变化;波浪是控制研究区泥沙运移、沉降的关键因素,控制着研究区冲淤演化的整体格局。  相似文献   

5.
岬湾相间的琼州海峡南岸在海岸动力条件作用下,岸滩发生侵蚀或堆积,特别是南岸中部的南渡江三角洲沿岸岸滩演变剧烈。该文从海岸动力地貌的角度,对琼州海峡南岸的海岸动力特征、泥沙运动以及岸滩演变进行分析。根据海峡南部三维潮流场数值模拟结果,结合经验公式初步分析潮流引起的泥沙运移速率和方向,得到岸外水域总的泥沙运移趋势为从西向东。根据波浪动力计算分析沿岸泥沙运移,探讨沙质岸滩的动态与地貌演变之间的关系,得出海峡南岸海岸地貌演变与盛行的NE和NNE向风浪有密切关系,岸滩的演变过程主要受制于这两个方向的风浪及其引起的泥沙沿岸运移。  相似文献   

6.
以北戴河西海滩为例,通过对海滩养护后近岸地形以及表层沉积物的变化进行研究,分析海滩人工喂养后的演化特征:明显遭受侵蚀,平均单宽侵蚀量为44.8 m3/m,滩肩平均蚀退距离15m,东部侵蚀速率大于西部;新海滩沉积物整体细化,分选变好,喂养4个月后沉积物净输移趋势以沿岸搬运为主,运移方向NE—SW向;离岸潜堤形成的波影区以外海滩明显受到侵蚀,形成侵蚀热点.喂养1年后,填沙保存76%,海滩形态与预期形态较为相近,养滩效果良好.  相似文献   

7.
分析了南澳岛海滩资源储量、空间分布及其开发利用现状,开展海岛海滩侵蚀风险评价,选择青澳海滩开展岸滩及其海湾海床地形、沉积物、动力泥沙调查,分析探讨了青澳海滩泥沙动力沉积特征,灾变退化过程机制,并从海滩稳定性和游客安全角度给出安全调控建议。结果表明:1)南澳岛海滩资源储量与侵蚀风险区域分异特征明显,其中青澳海滩旅游活动频繁、开发强度大,侵蚀退化风险等级高,人为破坏干扰抑制滩海泥沙交换,无序无度占滩开发与利用破坏了海滩自然演化进程,短期过量旅游活动加速海滩侵蚀退化进程;2)青澳湾沉积物以粗粒砂为主,沙源供给不足,不同岸段岸线进退与岸滩蚀淤与海滩方位、波浪动力强度强弱关系密切,具有明显的纵向沉积地貌分带特征。湾内落潮优势流(SE)优于涨潮(NW),对泥沙输运进入湾内具有抑制作用,潮周期海湾泥沙自湾内向湾外输运,泥沙以外输为主单宽输沙为3 400 t;3)青澳海滩存在严重的"无序占滩建筑,污水肆意排放,管理不规范"等问题,监测评价亦表明侵蚀退化风险巨大,游客安全面临着风险隐患,建议青澳海滩实行以生态化养护开发和"游客为中心"为理念的安全调控措施,设立红线及安全标示。该研究为岛礁生态建设、海岛保护及修复提供科学依据。  相似文献   

8.
近岸过程与海岸侵蚀机制研究进展   总被引:1,自引:0,他引:1       下载免费PDF全文
首先简单介绍了砂质海岸近岸地形动力过程的时空多尺度特征及其复杂性,海岸系统相互依存的3个方面和近岸带地形动力基本特征;进而从5个方面论述了国内外对砂质海岸侵蚀地形动力过程与机制研究的进展:1)长重力波运动与海岸侵蚀;2)近岸环流、波增水、底流运动与岸滩侵蚀;3)海滩-碎波带地形动力状态与岸滩侵蚀方式;4)波生沿岸流、沿岸输沙与海岸长期变化;5)海岸侵蚀终极平衡形态规律。最后概括了未来需优先探索的地形动力学问题和研究策略。  相似文献   

9.
基于日照万平口海区三期水深地形调查资料、水动力及海底沉积物调查数据,研究了日照石臼港海域人工岬湾海滩建设前后波浪场的变化、沉积物在波浪作用下沿岸输运变化及海岸侵蚀冲淤特征,并模拟验证了人工沙滩建设后的平衡岸线,明确了不同长度防波堤建设后海滩的稳定性及其设计的合理性。结果表明:防波堤建设前研究区入射波浪与岸线有一定夹角,导致波浪作用下沉积物有由南向北输移的趋势;人工岬湾的建设可改变近岸波浪场,继而影响沿岸泥沙输运,对岸滩稳定有重要影响;海岸工程、波浪场及泥沙输运三者相互作用,是人工岬湾海岸稳定性的关键因素。  相似文献   

10.
为了研究蓬莱西庄海岸侵蚀原因、揭示泥沙运移规律,利用萤光示踪砂和染色砾石进行侵蚀岸段的泥沙示踪研究.其主要结果如下:1.海滩泥沙运动完全由波浪控制,泥沙运移的速度和方向取决于破波的大小和方向.2.海滩泥沙以群体形式沿岸输移.3.在平直海岸上,泥沙可超越粘土质海蚀平台进入另一砂质海滩。  相似文献   

11.
广西北海银滩侵蚀动力研究   总被引:1,自引:0,他引:1  
刘涛  王增军  张建兵 《海洋学报》2020,42(7):147-154
广西北海银滩是一处典型的强潮海滩,以滩面宽阔、砂质纯白为特征,为当地的一处著名旅游景点。近年来银滩也出现了岸线后退、滩肩消失、沉积粗化等侵蚀迹象。为了研究银滩侵蚀的动力机制,本文对银滩海水浴场当前的滩面高程、坡度以及滩面后退距离特征进行了调查和分析。并基于2016?2018年间的滩面高程动态变化,分析了冬、春季风浪和台风期间水位、波浪特征与滩面侵蚀之间的关系,并进而探讨了最有可能造成银滩侵蚀的台风路径。研究表明,1985年以来的滩面最大后退距离为80 m,侵蚀造成海滩上部滩面坡度降低,使得海滩上部的剖面形态向上凸状转化。冬、春季节的风浪叠加高水位可能会造成一定程度的滩面侵蚀,并在海滩上部形成脊槽地貌,但是这种侵蚀会被夏季西南向涌浪导致的回淤所恢复。造成银滩侵蚀后退的主要原因是2003年以来风暴潮重现频率增加。发源于西太平洋,经海南岛北部或雷州半岛进入北部湾的台风可以导致显著的海岸增水,最易于引起强烈的海滩侵蚀事件。银滩东侧的渔港码头阻断了自东向西的泥沙沿岸净输运,也是加剧银滩侵蚀的重要因素。  相似文献   

12.
人工岛建设在缓解滨海人地矛盾的同时带来新的环境问题。本研究聚焦人工岛建设引起的岸滩侵蚀与泥沙分配失衡问题,以海口西海岸为例,建立GENESIS岸线演变模型,探讨人工岛影响下的海滩地貌演化机制,并在此基础上提出“循环养护”的海滩修复对策。主要研究结论为:①海口湾南海明珠人工岛对邻近海滩的影响以“岛后方淤积、两侧侵蚀”为显著特征,且两侧侵蚀热点区的响应幅度存在明显差异。五源河口至新国宾馆岸段侵蚀更为强烈的主导因素为物源匮乏与岸线形态外凸。②通过人工补沙与循环养护相结合的生态修复措施,可实现岸滩泥沙的合理分配与地貌的动态平衡,有效缓解人工岛引起的海岸侵蚀问题。本研究成果可为国内相似类型海岸的岸滩修复提供良好的借鉴意义。  相似文献   

13.
海南岛东南浅海表层沉积物粒度特征及沉积环境   总被引:1,自引:0,他引:1  
对海南岛东南浅海377组表层沉积物样品(平均水深112.3 m)开展粒度测定及沉积物类型划分,并运用统计规律及沉积输运趋势分析,探讨了底质沉积物分布格局与物质来源及沉积动力环境关系。结果表明,海南岛东南浅海沉积物类型复杂,共分布13种沉积物类型,粒度组成以粉砂和砂为主,平均粒径均值为5.73Φ,优势粒级为细粉砂级(6~8Φ),分选差。不同海域沉积物粒径差异明显,北部近岸以含砾沉积为主,中部呈NE-SW向的砂质沉积区(水深80~120 m),西南近岸滨海、北中部海域以及东南部海域多为粉砂、黏土沉积。结合地理位置、沉积物源及水动力条件差异,研究区划分为3个沉积区:I区主要以含砾粗颗粒沉积为主,受控于海南岛上径流及强风浪作用,物质来源以万泉河等河流输运及岸线侵蚀物质为主,强动力(高能)沉积环境;II区以砂沉积为主,受到表层流及风浪等共同影响,可能主要是残留滨海沉积混入了海南岛径流及岸线侵蚀、少量珠江流域及外海复杂来源等现代细粒物质的混合沉积,中等动力沉积环境;III区以细粒沉积为主,主要受华南近岸流、风浪作用及南海暖流影响,推测物质来源主要为海南岛河流输入、岸线侵蚀及复杂外海来源细粒物质的加入,弱动力(低能)沉积环境。  相似文献   

14.
根据2011年在海阳万米海滩岸段与威海国际海水浴场岸段调查获得的夏、冬两季海岸实测地形剖面与沉积物粒度数据,并收集相关水文资料,对南北两海岸地貌与沉积差异性进行分析,探讨了半岛东部南北岸典型砂质海岸动力环境的差异。研究结果表明,南部海岸宽广平缓,发育滩脊、滩肩、沙波纹等地貌,沉积物在水下岸坡上段以中粗砂、中细砂为主,水下岸坡以下段以粉砂、黏土质粉砂为主;北部海岸地形陡,发育滩肩陡坎、水下沙坝等地貌,沉积物以砾质砂为主。导致这些差异的动力为风、波浪、潮汐及沿岸流堆积。  相似文献   

15.
于2013年11月、2014年1月及3月在青岛市灵山湾海水浴场进行了3次表层沉积物采样,对粒度组分和粒度参数平面分布的变化进行了分析。结果表明,本区沉积物整体有变粗的趋势,细砂组分特别是极细砂和粉砂组分含量下降明显,分选性变好,正偏态及高峰度分布区扩大,粒度参数高值分布区被消除。粒径趋势分析表明,在涨潮流与强盛的冬季风驱动的风浪、沿岸流的综合作用下,研究区沉积物总体呈北东-南西向沿岸输运,运移趋势变化受到波浪、潮流水动力条件与地形相互作用的影响。短期的波能变化足以改变沙滩地貌,从而影响表层沉积物的分布。可为浴场维护提供理论依据。  相似文献   

16.
广西北海涠洲岛海岸侵蚀特征   总被引:2,自引:0,他引:2  
通过对2006-2013年布设在涠洲岛的15条岸滩剖面3次重复测量和数据对比分析,发现涠洲岛岸线整体遭受侵蚀.岸滩剖面长期变化特征表明,涠洲岛东部与西南部海岸侵蚀较为严重,西南部岸段年均下蚀可达0.18 m;正北部岸滩海岸侵蚀程度相对较轻,南湾段海岸整体变化较小,呈现弱侵蚀弱淤积变化.在短期强热带风暴影响下,冬季至夏季岸滩下蚀明显.  相似文献   

17.
The UNEP in its regional seas program in 1989 has included Pakistan in a group of countries which are vulnerable to the impact of rising sea level. If the present trend of sea level rise (SLR) at Karachi continues, in the next 50 years the sea level rise along the Pakistan Coast will be 50 mm (5 cm). Since the rising rates of sea level at Karachi are within the global range of 1-2 mm/year, the trends may be treated as eustatic SLR. Historical air temperature and sea surface temperature (SST) data of Karachi also show an increasing pattern and an increasing trend of about 0.67°C has been registered in the air temperature over the last 35 years, whereas the mean SST in the coastal waters of Karachi has also registered an increasing trend of about 0.3°C in a decade. Sindh coastal zone is more vulnerable to sea level rise than Baluchistan coast, as uplifting of the coast by about 1-2 mm/year due to subduction of Indian Ocean plate is a characteristic of Baluchistan coast. Within the Indus deltaic creek system, the area nearby Karachi is more vulnerable to coastal erosion and accretion than the other deltaic region, mainly due to human activities together with natural phenomena such as wave action, strong tidal currents, and rise in sea level. Therefore, The present article deals mainly with the study of dynamical processes such as erosion and accretion associated with sea level variations along the Karachi coast and surrounding Indus deltaic coastline. The probable beach erosion in a decade along the sandy beaches of Karachi has been estimated. The estimates show that 1.1 mm/year rise in sea level causes a horizontal beach loss of 110 mm per year. Therefore, coast eroded with rise in sea level at Karachi and surrounding sandy beaches would be 1.1 m during a period of next 10 years. The northwestern part of Indus delta, especially the Gizri and Phitti creeks and surrounding islands, are most unstable. Historical satellite images are used to analyze the complex pattern of sediment movements, the change in shape of coastline, and associated erosion and accretion patterns in Bundal and Buddo Islands. The significant changes in land erosion and accretion areas at Bundal and Buddo Islands are evident and appear prominently in the images. A very high rate of accretion of sediments in the northwestern part of Buddo Island has been noticed. In the southwest monsoon season the wave breaking direction in both these islands is such that the movement of littoral drift is towards west. Erosion is also taking place in the northeastern and southern part of Bundal Island. The erosion in the south is probably due to strong wave activities and in the northeast is due to strong tidal currents and seawater intrusion. Accretion takes place at the northwest and western parts of Bundal Island. By using the slope of Indus delta, sea encroachment and the land area inundation with rising sea level of 1 m and 2 m have also been estimated.  相似文献   

18.
The UNEP in its regional seas program in 1989 has included Pakistan in a group of countries which are vulnerable to the impact of rising sea level. If the present trend of sea level rise (SLR) at Karachi continues, in the next 50 years the sea level rise along the Pakistan Coast will be 50 mm (5 cm). Since the rising rates of sea level at Karachi are within the global range of 1-2 mm/year, the trends may be treated as eustatic SLR. Historical air temperature and sea surface temperature (SST) data of Karachi also show an increasing pattern and an increasing trend of about 0.67°C has been registered in the air temperature over the last 35 years, whereas the mean SST in the coastal waters of Karachi has also registered an increasing trend of about 0.3°C in a decade. Sindh coastal zone is more vulnerable to sea level rise than Baluchistan coast, as uplifting of the coast by about 1-2 mm/year due to subduction of Indian Ocean plate is a characteristic of Baluchistan coast. Within the Indus deltaic creek system, the area nearby Karachi is more vulnerable to coastal erosion and accretion than the other deltaic region, mainly due to human activities together with natural phenomena such as wave action, strong tidal currents, and rise in sea level. Therefore, The present article deals mainly with the study of dynamical processes such as erosion and accretion associated with sea level variations along the Karachi coast and surrounding Indus deltaic coastline. The probable beach erosion in a decade along the sandy beaches of Karachi has been estimated. The estimates show that 1.1 mm/year rise in sea level causes a horizontal beach loss of 110 mm per year. Therefore, coast eroded with rise in sea level at Karachi and surrounding sandy beaches would be 1.1 m during a period of next 10 years. The northwestern part of Indus delta, especially the Gizri and Phitti creeks and surrounding islands, are most unstable. Historical satellite images are used to analyze the complex pattern of sediment movements, the change in shape of coastline, and associated erosion and accretion patterns in Bundal and Buddo Islands. The significant changes in land erosion and accretion areas at Bundal and Buddo Islands are evident and appear prominently in the images. A very high rate of accretion of sediments in the northwestern part of Buddo Island has been noticed. In the southwest monsoon season the wave breaking direction in both these islands is such that the movement of littoral drift is towards west. Erosion is also taking place in the northeastern and southern part of Bundal Island. The erosion in the south is probably due to strong wave activities and in the northeast is due to strong tidal currents and seawater intrusion. Accretion takes place at the northwest and western parts of Bundal Island. By using the slope of Indus delta, sea encroachment and the land area inundation with rising sea level of 1 m and 2 m have also been estimated.  相似文献   

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