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1.
北部湾三维风生及密度流模拟   总被引:6,自引:2,他引:6  
《海洋学报》2001,23(6):11-23
将Casulli差分格式引入三维物理海洋模型计算,模拟了北部湾风生流及密度流.模拟结果表明,夏季西南季风在北部湾导致一个顺时针环流,夏季海水密度梯度导致一个逆时针方向的环流,密度流明显强于风生流;冬季东北寒潮导致一个逆时针环流.模拟结果不支持北部湾夏季为一顺时针环流、冬季为逆时针环流的传统结论,而支持终年为逆时针环流的观点.  相似文献   

2.
利用Finite Volume Coastal Ocean Model(FVCOM)三维模式以及National Centers for Environmental Prediction(NCEP)Climate Forecast System提供的北部湾的冬季风场,建立了北部湾冬季的风生环流模型。模拟得到北部湾冬季表中底层的风生环流结构。结果表明:整体上看,环流从琼州海峡流入北部湾,沿越南沿岸向南流动。从分层结构上看,冬季表层北部湾中部位置被1个大范围逆时针环流控制,南部湾口附近也存在1个不闭合的逆时针环流;而中层和底层的环流在琼州海峡西北和西南侧各形成1个小的逆时针环流,同时北部湾北部中间位置呈现1个顺时针环流。琼州海峡、广西及越南沿岸环流流速较大,有利于污染物的输移扩散,而北部湾北部中间位置,莺歌咀附近出现闭合环流且海南岛西南岸流速较小,不利于污染物的输移扩散,对冬季北部湾的海洋环境会产生不利影响。  相似文献   

3.
研究环流和沉积物输运对北部湾的环境保护和资源开发十分重要。本文使用区域海洋模型(ROMS),研究了北部湾海域的季节环流、沉积物输运以及长期的地形演变过程。展示了湾内冬季和夏季都存在逆时针环流,冬季的风生环流比夏季强的特征。悬沙浓度较大值主要分布在琼州海峡、海南岛西侧海域,以及越南沿岸、雷州半岛沿岸等近岸地区。沉积物在琼州海峡附近表现为在冬季由东向西输运,夏季则相反;在琼州海峡西口处,沉积物全年以西向输运为主。结果显示,北部湾内沉积物输运主要由潮流引起的再悬浮控制。侵蚀和淤积的分布模式为:(1)湾内大部分区域侵蚀淤积不明显,(2)琼州海峡两侧口门附近淤积比较明显,(3)琼州海峡内深槽侵蚀严重,(4)海南岛西侧海域存在侵蚀和淤积交替发生区域。  相似文献   

4.
为了研究北部湾的环流分布特征,使用数值模拟方法,模拟北部湾冬,夏季三维流场流态分布。结果表明:北部湾冬季的正压,斜压流场均由一气旋性环流控制;夏季的正压流场由一反气旋性环流控制;斜压流场未形成明显的闭合环流;北部湾夏季海水斜压性对环流的贡献比冬季的大。  相似文献   

5.
东太湖风生流套网格模式模拟   总被引:3,自引:0,他引:3  
姜加虎  黄群 《海洋与湖沼》1997,28(4):426-432
根据1984年8月水位、1993年9月湖流资料,通过建立太湖风生流模式,并在此基础上采用数值嵌套技术,设计太湖风生流套风格模式,对不同风情下的东太湖风生流进行模拟研究,结果表明:湖区风场了东太湖风生流的流型及流向,对峙方位风场形成的风生流流向几乎相反,稳定风生流流态表现为湖中若干环流区和沿岸流的有机结合风场作用初期,风生流流各与湖区风向近乎一致。偏NW风向作用,西太湖湖水流水流入东太湖,并在东太湖  相似文献   

6.
依据自适应数值模型,模拟了东中国海冬、夏季三维斜压Lagrange环流。模拟发现:台湾暖流的上层水来自台湾海峡入流和台湾东北黑潮的表层水;50m以下的深底层水主要由台湾东北黑潮的次表层水入侵陆架生成。冬季对马暖流外海一侧主要由黑潮水构成,而其近陆一侧由台湾暖流和陆架混合水构成,西朝鲜沿岸流在济州海峡汇入对马暖流;夏季它还包含转向后的长江冲淡水。冬季黄海暖流并非对马暖流的直接分支,黄海暖流水是对马暖流水和陆架水混合而成,这与传统观点相悖,而与中韩黄海水循环动力学合作调查结果一致。黄海暖流东西两侧分别为2支向南流动的滑岸流。夏季黄海环流构成基本封闭的逆时针环流。冬季渤海环流主要有一逆时针大环流,但辽东湾的环流是顺时针向的。渤海环流冬强夏弱,水流在渤海海峡北进南出。  相似文献   

7.
基于FVCOM的渤海冬季三维风生环流数值模拟   总被引:2,自引:0,他引:2  
利用FVCOM海洋模型以及MM5气象模式预报风场,对渤海冬季三维风生环流进行了数值模拟,结果显示:渤海风生环流具有显著的三维结构,表层基本沿风向运动,量值在5~10 cm/s,海峡处流速可达15 cm/s,底层有明显的补偿流,量值<3 cm/s;深度平均流环流状态明显,渤海海峡海流北进南出,渤海中部以及辽东湾为一顺时针环流,渤海湾以及莱州湾基本呈逆时针环流。文章通过对比实验,进一步讨论了海面风应力以及海底地形对渤海环流的不同影响,得出:在渤海中部风应力的切变涡度是形成顺指针流型的主要驱动力;除渤海中部以外,渤海冬季流型受地形作用的影响要大于海面风场的切变涡度。  相似文献   

8.
利用三维斜压流体动力学模型 ,通过对东海沿岸海区冬、夏季的斜压环流及其温盐结构的数值研究 ,揭示研究海区垂直环流及其温盐结构的动力过程及其成因。垂直环流的模拟结果表明 :冬季 ,沿岸海区的垂直环流以逆时针流动 ,近表层为向岸流 ,沿岸为下降流 ,近表层以下为离岸流 ,其在外海有明显的上升趋势 ,沿岸下降流自表层至底层逐渐由强变弱 ;夏季 ,沿岸海区的垂直环流以顺时针流动 ,近表层以下为向岸流 ,沿岸为上升流 ,近表层为离岸流 ,其在外海有明显的下降趋势 ,沿岸上升流自底层至表层逐渐由弱变强。就整个沿岸海区而论 ,冬季沿岸下降流和夏季沿岸上升流的强度都随着岸界地形坡度、风速及风向与岸线偏角的变化而变化。沿岸下降流形成的主要原因是由于冬季东北风与岸界地形的耦合效应及海区温盐分布不均匀所致 ,而沿岸上升流形成的主要原因则是由于夏季西南风与岸界地形的耦合效应及海区温盐分布不均匀所致。  相似文献   

9.
利用三维斜压流体动力学模型,通过对东海沿岸海区冬、夏季的斜压环流及其温盐结构的数值研究,揭示研究海区垂直环流及其温盐结构的动力过程及其成因。垂直环流的模拟结果表明:冬季,沿岸海区的垂直环流以逆时针流动,近表层为向岸流,沿岸为下降流,近表层以下为离岸流,其在外海有明显的上升趋势,沿岸下降流自表层至底层逐渐由强变弱;夏季,沿岸海区的垂直环流以顺时针流动,近表层以下为向岸流,沿岸为上升流,近表层为离岸流,其在外海有明显的下降趋势,沿岸上升流自底层至表层逐渐由弱变强。就整个沿岸海区而论,冬季沿岸下降流和夏季沿岸上升流的强度都随着岸界地形坡度、风速及风向与岸线偏角的变化而变化。沿岸下降流形成的主要原因是由于冬季东北风与岸界地形的耦合效应及海区温盐分布不均匀所致,而沿岸上升流形成的主要原因则是由于夏季西南风与岸界地形的耦合效应及海区温盐分布不均匀所致。  相似文献   

10.
渤海夏季环流和渤海海峡水体输运的数值诊断研究   总被引:7,自引:0,他引:7  
建立了一个基于POM的涵盖渤、黄、东海的海洋环流诊断模式来研究渤海夏季环流。分别进行了风海流、密度流和总环流的模拟。从模拟结果得出:渤海海峡夏季与北黄海的水交换总的来说表现为北进南出特征,但与冬季相比,其流量较小(约5×103m3s 1)且不能深入渤海。辽东湾基本上受气旋式环流控制,黄河口外至渤海湾受反气旋式环流控制。数值实验表明,渤海夏季主要属密度流性质。在渤海海峡的北岸存在一支明显的上升流,而且北部的海水垂向运动比南部要强许多。在渤海中部的纬向断面上,东部的海水垂直交换要比西部活跃得多;渤海海水的垂向运动亦主要是密度流导致的。  相似文献   

11.
The Beibu Gulf circulation plays an imPOrtant role in the long--term water rnass transportinside the gulf. It is also closely related to the Guangxi untal water mass transport and self-purification. Hence, it is of practical imPOrtance to study the circulation in the gUlf. The cir-culation in the gUlf is very comlicated, and is rnainly gOverned by wind, water density gradi-ent, the current outside the gulf and the bathpoetry. In spring, a cold water rnass generatesln the center of the gulf…  相似文献   

12.
北部湾的环流和水团对季节性强迫的响应   总被引:1,自引:1,他引:0  
In the past 20 a, the gulf-scale circulation in the Beibu Gulf has been commonly accepted to be driven by a wind stress or density gradient. However, using three sensitive experiments based on a three-dimensional baroclinic model that was verified by observations, the formation mechanisms were revealed: the circula- tion in the northern Beibu Gulf was triggered by the monsoon wind throughout a year; whereas the southern gulf circulation was driven by the monsoon wind and South China Sea (SCS) circulation in winter and sum- mer, respectively. The force of heat flux and tidal harmonics had a strong effect on the circulation strength and range, as well as the local circulation structures, but these factors did not influence the major circulation structure in the Beibu Gulf. On the other hand, the Beibu Gulf Cold Water Mass (BGCWM) would disappear without the force of heat flux because the seasonal thermocline layer was generated by the input of heat so that the vertical mixing between the upper hot water and lower cold water was blocked. In addition, the wind-induced cyclonic gyre in the northern gulf was favorable to the existence of the BGCWM. However, the coverage area of the BGCWM was increased slightly without the force of the tidal harmonics. When the model was driven by the monthly averaged surface forcing, the circulation structure was changed to some extent, and the coverage area of the BGCWM almost extended outwards 100%, implying the circulation and water mass in the Beibu Gulf had strong responses to the temporal resolution of the surface forces.  相似文献   

13.
A Study on Residual Flow in the Gulf of Tongking   总被引:2,自引:0,他引:2  
On the basis of observations of water temperature, salinity and wind during winter (December to following February) and summer (June to August) in the Gulf of Tongking, a robust diagnostic three-dimensional model has established that reveals the seasonal variation in residual flow, including wind-driven current, density-driven current and tide-induced residual current. It is shown that in the Gulf of Tongking the wind-driven current plays the most important role in the seasonal variation of residual flow field. Due to strong NE monsoon (9 m/s) during winter the residual flow (reaches 30 cm/s) is stronger than that in summer. At the surface the residual flow direction during winter is basically westward or southwestward, while during summer it is almost reversed.  相似文献   

14.
琼州海峡东部水进入北部湾对广西沿海环流的影响   总被引:1,自引:0,他引:1  
本文通过对琼州海峡东部水域温盐资料和沿岸海洋站同步观测资料的对比发现:夏季,广西涠洲岛盐度变化规律和琼州海峡东部、中部变化规律一致,广西北海略受影响,而远离琼州海峡的龙门和白龙尾两站,则更多反映夏季陆地水文规律。同时,采用琼州海峡多年海流资料和涠洲岛定点站及近期测流站的海流观测资料对比看出,琼州海峡冬夏季余流方向仍然是自东向西。结合数值模拟计算结果,同样得出琼州海峡东部水自东向西进入北部湾的事实。这些温盐分布特征和余流观测结果进一步证实:粤西沿岸流是琼州海峡水向西输运的主要来源,形成粤西沿岸流这种现象的根源在于珠江冲淡水的西向流,它们通过琼州海峡进入北部湾,加强了北部湾北部气旋式环流的形成。夏季,在强的西南风作用下,产生较强北部湾西岸北向沿岸流,促使低盐冲淡水向外海输运,然后在东部涠洲岛附近形成更大范围内气旋式环流。琼州海峡东部水进入北部湾对广西沿海环流影响的研究,直接向琼州海峡冬夏季水体输运方向的传统结论提出了新的挑战。  相似文献   

15.
北部湾潮致、风生和热盐余流的三维数值计算   总被引:7,自引:2,他引:7  
基于二阶湍流闭合模型计算涡动粘性系数的POM三维水动力模式,研究采用细网格,考虑了6个岛屿的影响,海底磨擦系数进行划片取值,把作为强迫力的潮汐、风力和热盐统一在一个模型中,诊断计算并获得了北部湾三维潮致-风生-热盐余流。用实测资料对计算结果进行了验证,显示了本研究结果的合理性。同时给出了潮致余流、风生流和热盐余流,并且对各因子的作用做了比较和分析,结果表明风生流占主要成分。  相似文献   

16.
Seasonal variation in the wind-driven circulation in the Japan Sea is studied with reference to the branching of the Tsushima Current using a two-layer model with simplified bottom and coastal topography. The system is driven by wind stress, an inflow corresponding to the Tsushima Current and by the two outflows corresponding to the Tsugaru and Soya Currents.In the first phase, an annual mean wind stress is imposed and a quasi-stationary state is obtained. In the next phase, a seasonally varying wind stress is imposed. Seasonal variation in the wind stress plays an important role in the branching system of the Tsushima Current. In winter, an intensified western boundary current with a prominent inner circulation is formed as a result of a strong wind stress of winter monsoon with negative wind stress curl. In spring to summer, the western boundary current is weak, but the topographic branch along the Japanese coast is intensified. The weak western boundary current is caused by weak wind stress with positive wind stress curl, which induces cyclonic Sverdrup flow in the Japan Sea and causes its western boundary current to flow in the opposite direction to the prescribed northward boundary inflow current. The topographic branch is strongest in late spring and moves offshore in summer, in agreement with the central branch denoted by Kawabe (1982b). Some of the observational features of the Tsushima Current are successfully simulated.  相似文献   

17.
The subsurface counter current beneath the Tsushima Warm Current is simulated using a three-dimensional circulation model. The model well reproduces the counter current beneath the Tsushima Warm Current on the shelf break. The counter current appears as nearshore parts of the subsurface clockwise circulations from spring to early winter. The clockwise circulations are separated by developed shelves such as the Oki Spur and the Noto Peninsula, thus the counter current is not a continuous flow along the Japanese coast in this model. The vertical structure of the counter current can be explained by a density structure with the thermal wind relationship. The permanent and seasonal pycnoclines form mutually opposite horizontal density gradients near the Japanese coast in summer. Such a density structure results in a speed maximum of the counter current away from the bottom. It is remarkable that the second baroclinic mode is dominant in nearshore parts of the subsurface clockwise circulations in summer, which are attributed to the density structure. Similar density structures are also found in some coastal regions of the world oceans where subsurface counter currents are expected.  相似文献   

18.
A NUMERICAL COMPUTATION OF THE WIND-DRIVEN CURRENT IN THE BOHAI SEA   总被引:1,自引:0,他引:1  
On the basis of shallow water equations, a 2-dimensional model for the wind-driven current is developed in this paper to simulate the mean wind-driven circulation and sea-surface elevation fields respectively in winter and summer, and to describe the general nature of the wind-driven current in the Bohai Sea.Numerical results show that the patterns of the wind-driven circulation in Bohai are mainly the cyclonic circulation in winter and both cyclonic and anticyclonic circulations in summer. A theoretical argument based on vorticity is put up to explain the generating-mechanism of large eddies near the strait, which are considered to be the direct results of the wind stress interaction with topography gradients.  相似文献   

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