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1.
粤东陆架边缘水域夏季的上升流位于东沙群岛北面陆架边缘从西南向东北的带状区,以台湾浅滩西南最强烈。其年际变化较大,通常6月较弱,7月最强,可上升至近表层,8月中旬以后又逐渐减弱。上升流影响的深度范围在不同年份和月份及不同区域均不同。1982年夏季大约可上升至30-50m。上升流速度又依不同深度范围而不同。1980年7月台湾浅滩西南为1.4-9.4×10~(-4)cm/s。 粤东陆架边缘水域夏季的上升流与陆架坡折有关,而海流和季风的变化是上升流消长的主要因素。  相似文献   

2.
2008年夏季中国第3次北极科学考察期间,利用锚碇潜标对北冰洋楚科奇陆架海域进行了为期33 d的海流剖面、近底层温度与盐度连续观测。观测数据显示楚科奇陆架海域近底层海水温度出现了两次较大幅度的快速升降现象。结合此次科学考察R断面温盐深仪(CTD)观测资料、以及卫星遥感海表温度(SST)和海表风场等资料,综合分析表明:观测到的这种快速升、降温现象不仅发生在近底层;这种快速升、降温现象应该是由海水温度锋面在夏季整体缓慢北移的同时存在短暂南北摆动所导致;温度锋面的季节性北移属于北极气候特征,而温度锋面短暂的南北摆动则与短期天气过程有关。  相似文献   

3.
南海北部陆架陆坡区海流观测研究   总被引:3,自引:0,他引:3  
针对2006-2009年期间,南海北部陆架陆坡区3个站ADCP海流连续观测资料,采用功率谱分析、潮流调和分析方法,重点分析了陆架陆坡区100 m,200 m和1 200 m水深海域海流的垂向结构,探讨了环流的季节变化和空间分布特征,特别讨论了南海暖流和北陆坡流的时空变化特征。结果表明,陆架陆坡区潮流类型属于不规则日潮,深水站点中层表现为正规全日潮类型,垂向为"三层结构",甚至更加复杂。O1,K1,M2,S2等分潮总体上为顺时针旋转,在深水站点,基本表现为西北-东南走向的往复流形态。从能量角度看,表层和底层海流中,潮流所占份额较大,分别占30%~40%和40%~50%,中层较小,约为20%。对东沙群岛西南陆架陆坡区环流,观测计算结果证实了西向强流的存在,且垂向结构具有显著的季节变化,在200 m水深处没有明显的南海暖流,只是10~30 m以上层次存在逆风海流。海南岛以东海域连续15个月表层环流的结果表明,冬季明显受到南海暖流的影响,存在东北向的逆风海流,夏秋季的环流表现为西南向,流速较强,夏季也存在逆风情况,造成上述情形的原因可能是该地南海暖流的流轴具有季节性变化——冬季偏南,夏季偏北。  相似文献   

4.
南海北部陆架区夏季上升流数值研究   总被引:11,自引:1,他引:10  
采用三维斜压非线性数值模式并结合卫星遥感资料分析,对南海北部陆架区夏季上升流进行了初步研究.研究结果表明,上升流是南海北部陆架区6-9月的一个规律性现象,而不是个别年份的特殊现象;海南岛东部沿岸及雷州半岛以东广州湾东南部一带海域(琼东上升流区)、汕头沿岸直至福建沿岸南日群岛附近海域(粤东上升流区)夏季表层及次表层海水均表现出明显的低温、高盐、高密等陆架上升流特征;上升流中心主要位于海南岛以东清澜湾至七洲列岛之间111°10'E、19°45'N附近,陵水湾至陵水沿岸110°15'E、18°25'N附近,粤东汕头沿岸116°45'E、22°50'N附近及澎湖列岛以西118°E、23°40'N附近.同时通过对模拟结果与QuikSCAT风场的比较分析发现,沿岸上升流与局地风场有着密切的关系,夏季西南风及风应力旋度对琼东沿岸上升流的形成有着非常积极的作用;而粤东沿岸风应力旋度较小,但夏季西南风仍是诱生粤东沿岸上升流的重要因素之一.  相似文献   

5.
涡旋对海洋中的能量传递和物质交换有重要作用。黑海西北部陆坡边缘是长生命周期涡旋经常发生的海域,但涡旋引起的陆架和海盆之间水交换通量的季节性特征,以及海盆边缘环流对跨陆架水交换的作用等方面的研究还不是很充分。本文对黑海西北部陆架区与深海盆区间的跨陆架水交换进行了研究,利用高分辨率三维原始方程模式模拟的温、盐、流等资料,结合涡旋自动探测方法,统计了黑海西北部海域的涡旋活动,研究了涡致跨陆架水交换的季节性特征,计算对比了2002年到2010年间海盆边缘环流与涡旋对跨陆架水交换通量的各自贡献。结果表明:黑海西北部地区海盆边缘环流强度与跨陆架进、出通量的相关系数分别为0.57和0.67,海盆边缘环流位置与跨陆架交换量的相关系数为0.52;海盆边缘环流强度与位置的季节性变化导致了黑海西北部跨陆架通量的季节性变化。黑海西北部地区表层3月到8月之间涡旋所引起跨陆架交换量约占了跨陆架交换总量的16%~31%;涡致跨陆架通量也具有季节性特征。文中对单个涡旋进行了详细研究:2005年5月5日到2005年7月20日之间在黑海西北部存在一个直径最大值时达到120 km的反气旋式涡旋,涡旋存在期间完成了从陆架区向深海区的水体传输,相当于黑海西北陆架区水体积的30.9%。  相似文献   

6.
渤海、黄海、东海AVHRR海表温度场的季节变化特征   总被引:28,自引:9,他引:28  
海表温度场表征了海洋热力、动力过程和海洋与大气相互作用的综合结果.它不仅是研究海面水汽和热量交换的一个重要物理参数,也为海洋环流、水团、海洋锋、上升流和海水混合等海洋学课题的研究提供一种直观的指示量.20世纪60年代以来,我国海洋工作者在历次海上观测和台站资料的基础上,对渤海、黄海、东海表层温度的空间分布和变化进行了较为详细的分析研究[1~4],并绘制了系列的水温气候图集.这些研究成果对认识黄海、东海海域的平均海表温度场的分布、变化以及相关物理海洋现象的研究起到了重要的作用.  相似文献   

7.
2002年夏季粤东外海的海洋状况   总被引:3,自引:1,他引:3  
本文利用2002年7月22日至8月2日对粤东外海进行的水文观测资料,分析了调查海区的水温、盐度和跃层的分布状况,并对粤东沿岸的上升冷水、海洋锋等海洋现象进行了探讨.结果表明,整个粤东沿岸都存在着下层冷水的涌升现象,该现象在大亚湾外海附近和广东总来外海附近尤为明显,从而导致粤东沿岸水等温线非常密集,产生上升流锋.上升流锋随着深度的增加有向外海扩展的趋势.此外,在台湾浅潍的南部,陆架的坡析处和东沙群岛的东例以及西南部海战似乎也有下层冷水涌升的迹象.东沙群岛的北侧和西部海战有暖水中心存在,该暖水中心可能是离岸的表层水离异一定距离后发生下沉所致.珠江口的东例出现高温低盐水,其低盐水舌向东伸展,可达大亚湾口外海,等盐度线非常密集,是一个非常强的冲淡水羽状锋。  相似文献   

8.
2006年夏季粤东至闽南近岸海域上升流的特征   总被引:3,自引:0,他引:3  
利用2006年夏季粤东至闽南近岸海域海水的实测温度、盐度资料和海表温度、叶绿素0含量的卫星遥感资料,分析了该海域的上升流现象.结果表明:上升流区水体具有低温、高盐特征,其中心区域位于汕头至东山一带近岸海域.在汕头以西海域,外海深层低温高盐水沿海底地形向岸爬升形成上升流.汕头以东近岸海域的上升流为爬升至惠来近岸的外海水随沿岸流向东北方向运动,并在各地沿海底地形爬升所致.研究海域上升流区的水体属同一来源,均来自汕头西南外海.汕头以东近岸海域的上升流强度大于汕头以西,水温低于23.0℃、盐度高于34.00的外海水仅爬升至汕头以西近岸海表以下25m左右,但可出现在汕头以东近岸10m以浅海域.以研究海域海表温度低于27.5℃的沿岸低温区的面积来反映上升流的强度,通过对海表温度遥感数据的分析可知:7月初至7月中旬和7月28日至8月上旬,低温区域面积较大且较为稳定,上升流强度较大;7月19—27日期间和8月中旬以后,低温区域面积较小或短暂消失,上升流强度较弱.该上升流在2006年7—8月期间经历了强一弱-强.弱的短期变化过程.  相似文献   

9.
根据表层温、盐度的观测结果,结合相关断面的CTD调查资料和同期的卫星遥感海表温度图,分析了2000年7月10日到8月2日台湾海峡南部至珠江口附近海域的一些海洋现象,结果表明:(1)在调查期间,东山至惠来沿岸海域存在明显的低温高盐区,海丰和惠来以南近岸海域的海水也具有相对高盐的性质,说明调查期间在闽南、粤东沿岸普遍存在上升流现象;(2)调查期间在台湾海峡南部至珠江口之间陆架—陆坡区附近的多个断面上观测到了较明显的盐度锋面;(3)珠江口外的盐度锋面的位置随时间而不断变化。  相似文献   

10.
低盐透镜现象是夏季南海东北部陆架海域一种常见的中尺度现象.低盐透镜水体往往是由陆地径流入海后与河口冲淡水母体分离而形成的.它携带大量的陆源物质会对海洋生态环境造成较大的影响.通过对2002年7~8月南海东北部海域的现场CTD调查资料的分析,发现在西南季风盛行的夏季,南海东北部陆架区近岸一侧上升流现象非常明显,呈低温高盐水的特征,而在离岸约100 km处存在着相对独立的低盐透镜水体.此类水体的盐度在32.5以下,水平宽度约为80 km,仅存在于20 m以浅的海洋上层.结合同期的现场走航ADCP测流资料、珠江径流量和海面风场资料分析后认为该水体源自珠江冲淡水;海面风场、上层海流及潮汐潮流等的共同作用可能是脉冲的珠江洪峰与珠江河口冲淡水母体分离而形成低盐透镜现象的动力学原因.沿岸的上升流系统与低盐透镜水体之间形成温度和盐度锋面.  相似文献   

11.
Data on ocean temperature, currents, salinity and nutrients were obtained in an area off Algoa Bay on the south-east coast of South Africa during a ship's cruise in early November 1986. Satellite imagery provided information on the position of the Agulhas Current during the cruise period, while wind data were available from weather stations on the eastern and western sides of Algoa Bay. It is surmised that wind-forcing plays a major role in water circulation in the Bay and over the inshore continental shelf remote from the influence of the open ocean. The predominantly barotropic current flow, of the order of 0,5 m·s?1, was downwind and influenced by topographic features and coastline shape. The Agulhas Current influences the ocean structures by long-term (large episodic meanders) and short-term (upwelling forced by the Current, core upwelling in frontal eddies and warm frontal plumes at the surface) fluctuations. Temperature structures showed well mixed water in Algoa Bay and a strong thermocline over the continental shelf, and were typical of a western boundary current in the Agulhas Current itself. The presence of a thermocline at 30–50 m over the shelf prevented upward mixing of nutrients. The Current exerted a dominant effect on shelf waters north of Algoa Bay.  相似文献   

12.
Continuous observation in late April 2005 on the northwestern shelf of the South China Sea reveals vigorous strong currents, the maximum velocity of which exceeds 3.8 m/s. The strong currents occurred around spring tide period, when the internal tide waves were also expected to be vigorous. Analysis shows that the major peaks of the current power spectrum are in low frequency band. Using a numerical method applied to the actual ocean stratification, we find that the amplitude profiles of the strong current are similar to that of the currents induced by some low-mode internal waves (at diurnal or semi-diurnal frequency). It indicates that the temporal and spatial features of strong currents were possibly induced by low frequency internal waves.  相似文献   

13.
The timing and intensity of the effects of the 1997–98 El Niño on sea-surface temperature (SST) and coastal sea level along the US west coast are examined using in situ time-series measurements, and the effects on upper ocean currents on the continental shelf and slope off Oregon and northern California are examined using repeated shipborne ADCP transects, a mid-shelf mooring off Newport Oregon and an HF surface current radar. An initial transient positive anomaly was observed in both adjusted sea level and SST during May–June 1997, followed by anomalously high coastal sea levels, generally strongest during September 1997 through February 1998 and abruptly returned to normal in late February 1998, and by positive temperatures anomalies over the mid-shelf that persisted longer, into April 1998. Low-frequency coastal sea-level anomalies propagated poleward at 2.1 m/s. Poleward flow over the shelf and slope was enhanced at most depths during the El Niño, compared with following years. Northward currents in the upper 12 m over the continental shelf off Newport, Oregon averaged 13.7 cm/s stronger during August 1997 through February 1998 than during the same period the following year. Enhanced poleward flow was present at all latitudes sampled during November 1997 and February 1998, particularly over the continental slope. These transects also provided clear views of a fall/winter equatorward undercurrent, which was both strongest and had the most alongshore similarity of form, during the ENSO. Finally, subsurface-intensified anticyclonic eddies originating in the poleward undercurrent appear to be a recurrent feature of the circulation off Newport late in the upwelling season.  相似文献   

14.
The abrupt depth increase which characterises the edge of many continental shelves determines a reduced horizontal length scale and a localised transition from shelf seas to the deep ocean. Particular forms of motion which may arise from the steep slopes include topographically guided currents along the slope, shelf-break upwelling, topographic Rossby waves and internal lee waves in the tidal current. The ocean/shelf mismatch may lead to a clear separation of water types, substantial reflection (from the shelf-edge neighbourhood) of all oceanic and shelf motions with periods greater than a few hours, and interaction between barotropic and baroclinic motions. Unstable longshelf currents, interleaving water masses, strong internal tides and internal waves, and narrow canyons enhance mixing across the shelf edge.  相似文献   

15.
The response of phytoplankton to the Beaufort shelf-break eddies in the western Arctic Ocean is examined using the eddy-resolving coupled sea ice–ocean model including a lower-trophic marine ecosystem formulation. The regional model driven by the reanalysis 2003 atmospheric forcing from March to November captures the major spatial and temporal features of phytoplankton bloom following summertime sea ice retreat in the shallow Chukchi shelf and Barrow Canyon. The shelf-break warm eddies spawned north of the Barrow Canyon initially transport the Chukchi shelf water with high primary productivity toward the Canada Basin interior. In the eddy-developing period, the anti-cyclonic rotational flow along the outer edge of each eddy moving offshore occasionally traps the shelf water. The primary production inside the warm eddies is maintained by internal dynamics in the eddy-maturity period. In particular, the surface central area of an anti-cyclonic eddy acquires adequate light, nutrient, and warm environment for photosynthetic activity partly attributed to turbulent mixing with underlying nutrient-rich water. The simulated biogeochemical properties with the dominance of small-size phytoplankton inside the warm eddies are consistent with the observational findings in the western Arctic Ocean. It is also suggested that the light limitation before autumn sea ice freezing shuts down the primary production in the shelf-break eddies in spite of nutrient recovery. These results indicate that the time lag between the phytoplankton bloom in the shelf region following the summertime sea ice retreat and the eddy generation along the Beaufort shelf break is an important index to determine biological regimes in the Canada Basin.  相似文献   

16.
The coastal ocean meets the deep sea at the continental shelf edge. Questions of global change entail elucidation of the processes that determine the quantities, transformation and fate of materials transported between the shelf and ocean, the measurement and definition of exchange processes, and the development of prognostic models of exchanges.Physical processes control the large-scale movement and irreversible small-scale mixing of water and its constituents. At the shelf edge, steep bathymetry may inhibit ocean-shelf exchange, but in combination with stratification gives rise to special processes and modelling challenges.A preliminary assessment is made of coastal-trapped waves; along-slope currents, instability and meanders; eddies; upwelling, fronts and filaments; downwelling, cascading; tides, surges; internal tides and waves as potentially influential processes in ocean-shelf exchange, water-mass structure and general circulation, according to their scales and context. For this purpose, theory and previous measurements are interpreted.Future studies needed to improve this assessment are discussed.  相似文献   

17.
In 2005, 2006, 2007 and 2011, distinct Oegopsida squid egg masses were observed by scuba divers on the narrow southern KwaZulu-Natal (KZN) shelf in depths of 35–50 m off the coastal resorts of Park Rynie, Pumula and Port Edward, South Africa. In 2006, larvae in the egg balloons were sampled. DNA barcoding (i.e. cytochrome c oxidase subunit 1 sequencing) linked the larvae to the genus Lycoteuthis, a group commonly found on the continental slope of the Agulhas Bank and the west coast of South Africa. In all cases, the sightings were concomitant with low water temperatures of 14–18 °C, indicative of shelf edge upwelling. Historical ship-collected CTD data show these cooler waters to originate from a depth of 100–180 m on the KZN continental slope. Complementary satellite imagery revealed the cooler water and discoveries of the egg balloons to be coincident with cold core cyclonic eddies embedded in the shoreward boundary of the Agulhas Current. The temperature data suggest that these egg balloons, in the absence of cyclonic eddy activity, would normally be found in the current on a density surface at a depth of ~130 m where velocities are typically around 100 cm s–1.  相似文献   

18.
This paper describes the westward movement of a cyclonic eddy across the Mozambique Channel and the subsequent south-westward propagation of the eddy along the east coast of South Africa and its interaction with the shelf. A hydrographic survey on 13 September 2006 off Nine-mile Reef (NMR), Sodwana Bay, showed a well-developed Agulhas Current along the continental shelf inshore of a cyclonic eddy flanked by two anti-cyclonic eddies, further offshore. A satellite-tracked drifter and complementary altimetry data confirmed the dimensions of the eddy and tracked its movement towards the coast. Shelf-edge upwelling was measured at NMR by an underwater temperature recorder (UTR) when the cyclonic eddy first came into contact with the shelf and again when the cyclonic eddy interacted with the leading edge of the anti-cyclonic eddy moving onto the shelf. Further shelf–eddy interactions off Aliwal Shoal, south of Durban, and consequent upwelling were similarly caused by the same cyclonic eddy as it progressed south-westward along the east coast. Analysis of UTR data between 2004 and 2006 indicated that between two and five cyclonic eddies impact the shelf off NMR per year.  相似文献   

19.
Abstract

Semidiurnal variations in the depth of the thermocline observed near the shelf edge north‐west of Cape Egmont are probably caused bv an internal tide generated at around 200 m depth over the continental slope. The observations suggest that in this region an internal tide, with amplitude of about 20 m, propagates onto the shelf with a speed of approximately 0.5 m·s?1 and a wavelength of about 22 km.  相似文献   

20.
A review is presented of the ocean circulation along Australia’s southern shelves and slope. Uniquely, the long, zonal shelf is subject to an equatorward Sverdrup transport that gives rise to the Flinders Current - a small sister to the world’s major Western Boundary Currents. The Flinders Current is strongest near the 600 m isobath where the current speeds can reach 20 cm/s and the bottom boundary layer is upwelling favourable. It is larger in the west but likely intermittent in both space and time due to possibly opposing winds, thermohaline circulation and mesoscale eddies. The Flinders Current may be important to deep upwelling within the ubiquitous canyons of the region.During winter, the Leeuwin Current and local winds act to drive eastward currents that average up to 20-30 cm/s. The currents associated with the intense coastal-trapped wave-field (6-12 day band) are of order 25-30 cm/s and can peak at 80-90 cm/s. Wintertime winds and cooling also lead to downwelling to depths of 200 m or more and the formation of dense coastal water within the Great Australian Bight and the South Australian Sea. Within the Great Australian Bight, the thermohaline circulation associated with this dense water is unknown, but may enhance the eastward shelf-edge, South Australian Current. The dense salty water formed within Spencer Gulf is known to cascade as a gravity current to depths of 200 m off Kangaroo Island. This dense water outflow and meanders in the shelf circulation also fix the locations of a sequence of quasi-permanent mesoscale eddies between the Eyre Peninsula and Portland.During summer, the average coastal winds reverse and surface heating leads to the formation of warm water in the western Great Australian Bight and the South Australian Sea. No significant exchange of shelf water and gulf water appears to occur due to the presence of a dense, nutrient-rich (sub-surface) pool that is upwelled off Kangaroo Island. The winds lead to weak average coastal currents (<10 cm/s) that flow to the north-west. In the Great Australian Bight, the wind stress curl can lead to an anticyclonic circulation gyre that can result in shelf-break downwelling in the western Great Australian Bight and the formation of the eastward, South Australian Current. In the east, upwelling favourable winds and coastal-trapped waves can lead to deep upwelling events off Kangaroo Island and the Bonney Coast that occur over 3-10 days and some 2-4 times a season. The alongshore currents here can be large (∼40 cm/s) and the vertical scales of upwelling are of order 150 m (off Kangaroo Island) and 250 m (off the Bonney Coast).Increasing evidence suggests that El Nino events (4-7 year period) can have a major impact on the winter and summer circulation. These events propagate from the Pacific Ocean and around the shelf-slope wave-guide of West Australia and into the Great Australian Bight. During winter El Nino events, the average shelf currents may be largely shut-down. During summer, the thermocline may be raised by up to 150 m. The nature and role of tides and surface waves is also discussed along with uncertainties in the general circulation and future research.  相似文献   

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