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1.
采用海洋再分析结果,研究了海洋涡旋和锋面波动对台湾以东黑潮锋的影响,结果表明,Rossby波第一斜压模态形成的冷涡(暖涡),减弱(增强)台湾以东黑潮温度锋强度,减小(加大)锋的宽度.在再分析结果中,捕获到1991年1-2月台湾以东的一次黑潮锋面波动.锋面波动的波槽(波脊)到达时,该温度锋强度减弱(增强),宽度和厚度减小...  相似文献   

2.
海洋锋是典型的海洋中尺度现象之一。目前卫星遥感主要利用海表温度数据分析海洋锋,但由于西北太平洋海域夏季海表温度的趋同特性,不能进行有效的锋面监测;而不同水团所具有的生物光学特性往往是不同的,且不具有太阳辐射引起的显著性季节变化,因此海色资料也成为检测海洋锋的有效数据源。文中以东海黑潮为例,详细说明了基于叶绿素a浓度融合数据,采用梯度法进行海洋锋面检测的过程,通过比较不同季节不同梯度阈值得到的东海黑潮锋结果,从保持锋面的完整性及对零碎锋区的剔除效应方面,选取了不同季节较优的梯度阈值。总体来说,文中检测出的东海黑潮区域海色锋与海流黑潮强流区较吻合,12月至4月东海黑潮海色锋检测结果不如海温锋,而5-11月东海黑潮海色锋检测结果优于海温锋,特别是台湾以东黑潮区域,不论什么季节海温锋都没有体现,而海色锋始终很明显。利用文中提出的海洋锋检测算法、分析方法及选择的梯度阈值可以有效地检测东海黑潮区域的海洋锋面,结合海色锋和海温锋,可以监测分析东海黑潮强流区的时空变化。  相似文献   

3.
海洋锋是重要的海洋现象,具有重要的研究意义.尽管台湾以东与黑潮之间表层无明显的锋区,但在水下却常年存在较强的海洋锋,这一现象的研究至今尚少见,本研究采用再分析手段,系统分析了温度锋时空变化规律及其形成变化机制.  相似文献   

4.
海洋锋是重要的海洋现象,具有重要的研究意义。尽管台湾以东与黑潮之间表层无明显的锋区,但在水下却常年存在较强的海洋锋,这一现象的研究至今尚少见,本研究采用再分析手段,系统分析了温度锋时空变化规律及其形成变化机制。  相似文献   

5.
温娜  刘秦玉 《海洋与湖沼》2006,37(3):264-270
通过对历史资料进行奇异值分解、合成分析及相关分析,揭示了对应冬季台湾以东黑潮流量增强(减弱)时,西北太平洋海区异常失热(得热),北太平洋(北纬20°N以北)上空500hPa位势高度负异常(正异常);进一步证实了冬季西北太平洋海洋-大气相互作用是一个正反馈过程;发现了冬季台湾以东黑潮的暖平流作用可能是维持该正反馈过程进行的一个必要条件;通过超前和滞后相关及合成分析,提出从10月开始,台湾以东黑潮流量异常形成的暖平流作用会对冬季西北太平洋海区海洋-大气相互作用有贡献。  相似文献   

6.
利用卫星观测的海面高度资料、海表温度资料和再分析大气资料,考察了冬季黑潮延伸体海域云水含量的年际变化。结果表明:尽管大气环流有明显的年际变化,海洋锋对其上云水含量的"锚定"作用(锋面南侧云水含量多,北侧少)始终存在,同时云水量值有明显的年际变化,该变化主要受背景大气环流的影响,当西北风加强(减弱)带来偏冷(暖)偏干(湿)的空气团时,锋面南侧云水少(多)。按照云水含量多少进行合成分析的结果表明:来自大陆的冬季西北风南下,在遇到海洋锋锋南侧的暖水面时,空气抬升导致的大气跨锋面的次级环流和对应锋面南(北)辐合(辐散)在一定程度上(约25%)受背景大气环流变化的影响。在背景大尺度的西北风强(弱)时,大气中水汽含量较少(多),凝结放热较弱(强),黑潮延伸体海洋锋南侧南侧上升,北侧下沉的次级环流偏弱(强)。  相似文献   

7.
本文利用近十年来获得的NOAA卫星红外影像,较为系统地分析了东海海洋锋(黑潮锋、对马暖流锋和浙江沿岸锋)的波动谱特征以及形态的演变。同时还利用浮标测流结果分析了锋面波动中的流态。分析结果表明:东海黑潮锋通常存在4~5个折叠波形,其波长平均约200km,波动随黑潮流向东北方向传播,速度约16cm/s。浙江沿岸锋的波动多呈锯齿形,其波长较短,波数多。在浙江沿岸锋波动发展过程中,其波长从开始的20~40km发展成30~60km,它们约以18cm/s的速度向东北方向传播。东海海洋锋波动演变形态复杂,其中黑潮锋的波动可能演变成锋面涡旋、暖丝和暖环。  相似文献   

8.
基于ROMS (regional ocean modelling system)模式模拟出2019年春季东海以及临近海域的环流结构和温盐分布。利用拉格朗日方法定量地研究了2019年春季黑潮近岸分支流在台湾以东起源的深度在100—450 m范围内,平均深度约260 m。通过针对台湾海峡流和台湾以东黑潮强度的敏感性实验,进一步得出结论,增大(减小)的台湾以东黑潮流速会减小(增大)黑潮近岸分支流的强度。而增大(减小)的台湾海峡流流速会增大(减小)黑潮近岸分支流的强度。同时,增大(减小)的台湾以东黑潮流会减小(增大)黑潮近岸分支流起源的平均深度。增大(减小)的台湾海峡流流速也会减小(增大)黑潮近岸分支流起源的平均深度。相关结论可为台湾东北黑潮入侵东海变化规律的研究提供参考。  相似文献   

9.
台湾海峡及其邻近海域海面温度锋的卫星遥感观测   总被引:4,自引:1,他引:4  
使用1989~2001年的NOAA AVHRR图像,研究了我国台湾海峡及其邻近海域的海面温度锋.卫星遥感观测表明,该海域海面温度锋终年存在,锋面沿50~100 m等深线分布,西段呈西南西-东北东走向,东段以舌状向北突出,长约470 km.给出了该海域海面温度锋的多年月平均、季平均和年平均特征值.统计结果显示,锋的平均强度、平均最大强度和平均宽度分别为0.147,0.281℃/km和15.15 km.锋的各种特征存在明显的季节和年际变化.锋的不稳定性普遍存在,沿锋面常形成半环状的锋波,使锋面呈半环状波动分布.锋波形成的时间尺度约为1~7 d,锋的波长约为35~133 km,年平均波长为63 km,波幅为25~70 km.锋面的波动向北东北方向传播,并存在锋面整体向北东北的平移现象.  相似文献   

10.
何源首  胡珀  侯一筠 《海洋与湖沼》2019,50(6):1201-1208
本文利用台湾东北陆坡附近海域持续一年的多普勒流速剖面仪(AcousticDopplerCurrent Profilers,ADCP)定点深水测流数据提取了观测站点处黑潮跨陆坡入侵强度的时间序列,并与美国海军混合坐标海洋模式(HybridCoordinateOceanModel,HYCOM)分析数据中提取的观测站点处以及台湾东北陆坡东西区段黑潮入侵强度的时间序列进行了对比研究。研究结果显示黑潮在观测站点处的跨陆坡入侵强度存在显著的季节和季节内变化特征,并且与台湾东北黑潮主轴位置的摆动有较好的对应关系,黑潮主轴东(西)移,则黑潮在台湾东北陆坡西段及观测站点处的入侵显著减弱(增强),而在台湾东北陆坡东段的入侵显著增强(减弱)。此外,观测站点处黑潮跨陆坡入侵强度的时间序列还显示出较强的10d和20d左右的短周期信号,其中10d的周期信号对应着东海黑潮斜压不稳定波动的特征周期,而20d的周期信号则体现了台湾东北附近海域局地涡旋的短期变化。  相似文献   

11.
The effect of stratification on very long-period waves trapped on a straight continental shelf of constant depth is examined for a two-layer model. There are 4 modes in this system. The characteristics of the mode with the largest phase velocity can be approximated by the barotropic mode. The mode corresponding to the barotropic shelf-wave mode is modified by the baroclinic motions significantly, and in the limit of very narrow shelf width, the mode characteristics are transformed from those of the barotropic shelf-wave to the baroclinic Kelvin wave if the long-shore wave length is larger than the internal deformation radius. In this case, the stratification has an apparent effect of increasing phase velocity of barotropic shelf-waves. The remaining two modes are dominated by baroclinic motions with significant contribution from barotropic motions: among which the one has a shelf-wave characteristics for small values of the shelf width and approaches the mode corresponding to the baroclinic Kelvin wave in shallower water for large shelf width and the other is a stationary mode. If the long-shore wave length is much shorter than the internal deformation radius, the motions in the upper and lower layers are decoupled: the surface and bottom modes analogous to those discussed byRhines (1970) appears.If the interface is deeper than the shelf depth, the stationary mode is absent and the characteristics of the third mode approaches those of the baroclinic double Kelvin wave mode as the shelf width increases.  相似文献   

12.
黑潮延伸体上游中尺度涡场的年代际振荡及其相关机制   总被引:1,自引:1,他引:0  
黑潮延伸体上游区域的中尺度涡场的涡动能和涡特征尺度存在显著地年代际振荡,和黑潮延伸体路径的年代际变化有很好的相关性。当黑潮延伸体路径比较稳定时,其上游区域涡动能比较高,涡特征尺度比较大,反之相反。通过对黑潮延伸体上游区域的中尺度涡场进行集合分析发现:当黑潮延伸体处于稳定状态时,上游涡场几乎是各向均匀地,有轻微的径向伸长;而当黑潮延伸体处于不稳定状态时,上游的中尺度涡场有显著地纬向伸长。对与中尺度涡场的产生相关的线性斜压不稳定和正压不稳定进行了计算分析,结果显示,线性斜压不稳定不是控制中尺度涡场年代际变化的机制,而正压不稳定对中尺度涡场的年代际变化有积极的贡献。不稳定产生的中尺度涡之间存在非线性涡-涡相互作用。  相似文献   

13.
The co-variation of surface wind speed and sea surface temperature (SST) over the Gulf Stream frontal region is investigated using high-resolution satellite measurements and atmospheric reanalysis data. Results show that the pattern of positive SST-surface wind speed correlations is anchored by strong SST gradient and marine atmospheric boundary layer (MABL) height front, with active warm and cold-ocean eddies around. The MABL has an obvious transitional structure along the strong SST front, with greater (lesser) heights over the north (south) side. The significant positive SST-surface wind-speed perturbation correlations are mostly found over both strong warm and cold eddies. The surface wind speed increases (decreases) about 0.32 (0.41) m/s and the MABL elevates (drops) approximate 55 (54) m per 1℃ of SST perturbation induced by warm (cold) eddies. The response of the surface wind speed to SST perturbations over the mesoscale eddies is mainly attributed to the momentum vertical mixing in the MABL, which is confirmed by the linear relationships between the downwind (crosswind) SST gradient and wind divergence (curl).  相似文献   

14.
The satellite altimeter data reveal that intraseasonal long Rossby wave is amplified in the western part of subtropical ocean. Based on a two and half layer ocean model we infer that the intraseasonal long Rossby wave may be amplified by the baroclinic instability. According to the baroclinic instability criterion derived from the two and half layer model, we calculate the baroclinic instability area of the Subtropical North Pacific Ocean based on Levitus98 data. The baroclinic instability area is well in accord with the amplification area of the intraseasonal long Rossby wave, and this also proves that the baroclinic instability is the main amplification mechanism of the intraseasonal long Rossby wave in the subtropical ocean. The consistency between the baroclinic instability area and potential vorticity (PV) pool is further proved in this paper, therefore, we have confidence that the intraseasonal long Rossby wave is amplified in the PV pool. Due to the relatively large ocean basin and weak ventilation, the PV pool is much larger in the North Pacific Ocean than in the North Atlantic Ocean, and this is the reason for the difference of wave amplification areas of these two Oceans.  相似文献   

15.
Using the mesoscale eddy trajectory atlas product derived from satellite altimeter data from 1993 to 2016, this study analyzes statistical characteristics and seasonal variability of mesoscale eddies in the Banda Sea of the Indonesian seas. The results show that there were 147 mesoscale eddies that occurred in the Banda Sea, of which 137 eddies were locally generated and 10 originated from outside. The total numbers of cyclonic eddies (CEs, clockwise) and anticyclonic eddies (AEs, anticlockwise) are 76 and 71, respectively. Seasonally, the number of CEs (AEs) is twice larger than the number of AEs (CEs) in winter (summer). In winter, CEs are distributed in the southern and AEs in the northern basins, respectively, but the opposite thing occurs in summer, i.e., the polarities of mesoscale eddies observed at the same location reverse seasonally. The mechanisms of polarity distribution reversal (PDR) of mesoscale eddies are examined with reanalysis data of ocean currents and winds. The results indicate that the basin-scale vorticity, wind stress curl, and the meridional shear of zonal current reverse seasonally, which are favorable to the PDR of mesoscale eddies. The possible generation mechanisms of mesoscale eddies include direct wind forcing, barotropic and baroclinic instabilities, of which the direct wind forcing should play the dominant role.  相似文献   

16.
《Ocean Modelling》2011,36(4):277-303
We investigate the influence of bottom topography on the formation and trapping of long upwelling filaments using a 2-layer shallow water model on the f-plane. A wind forced along-shore current, associated with coastal upwelling along a vertical wall, encounters a promontory of finite width and length, perpendicular to the coast.In the lower layer, topographic eddies form, which are shown to drive the formation of a filament on the front. Indeed, as the upwelling current and front develop along the coast, the along shore flow crosses the promontory, re-arranging the potential vorticity structure and generating intense vortical structures: water columns with high potential vorticity initially localized upon the promontory are advected into the deep ocean, forming cyclonic eddies, while water columns from the deep ocean with low potential vorticity climb on the topography forming a trapped anticyclonic circulation. These topographic eddies interact with the upper layer upwelling front and form an elongated, trapped and narrow filament.Sensitivity tests are then carried out and it is shown that:
  • •baroclinic instability of the front does not play a major role on the formation of long trapped filaments;
  • •increasing the duration of the wind forcing increases the upwelling current and limits the offshore growth of the filament;
  • •modifying the promontory characteristics (width, length, height and slopes) has strong impact on the filament evolution, sometimes leading to a multipolarisation of the potential vorticity anomaly structure which results in much more complicated patterns in the upper layer (numerous shorter and less coherent filaments). This shows that only specific promontory shapes can lead to the formation of well defined filaments;
  • •adding bottom friction introduces a slight generation of potential vorticity in the bottom layer over the promontory, but does not significantly alter significantly the formation of the filament along the outcropped front in the present configuration;
  • •modifying the stratification characteristics, in particular the density jump between the layers, has only a weak influence on the dynamics of topographic eddies and on filament formation;
  • •the influence of capes is also modest in our simulations, showing that topography plays the major role in the formation of long and trapped upwelling filaments.
  相似文献   

17.
《Ocean Modelling》2002,4(2):121-135
Numerical studies of surface ocean fronts forced by inhomogeneous buoyancy loss show nonhydrostatic convective plumes coexisting with baroclinic eddies. The character of the vertical overturning depends sensitively on the treatment of the vertical momentum equation in the model. It is less well known how the frontal evolution over scales of O(10 km) is affected by these dynamics. Here, we compare highly resolved numerical experiments using nonhydrostatic and hydrostatic models and the convective-adjustment parametrization. The impact of nonhydrostatic processes on average cross-frontal transfer is weak compared to the effect of the O(1 km) scale baroclinic motions. For water-mass distribution and formation rate nonhydrostatic dynamics have similar influence to the baroclinic eddies although adequate resolution of the gradients in forcing fluxes is more important. The overall implication is that including nonhydrostatic surface frontal dynamics in ocean general circulation models will have only a minor effect on scales of O(1 km) and greater.  相似文献   

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