Effect of Salinity and Currents on Sea Level Variation Along the Indian Coast: A Numerical Study

IF 1.4 4区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS Marine Geodesy Pub Date : 2002-02-01 DOI:10.1080/014904102753516796
A. Rao, S. Babu, S. Dube
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引用次数: 3

Abstract

The process of upwelling/sinking and associated sea level variations are seen as a response of coastal ocean to pure wind stress forcing. Further,precipitation and monsoonal floods, apart from the marine meteorological parameters, are expected to influence the sea level fluctuations along the coast. This study comprises determining the sea level from the various parameters together with the pure wind stress forcing, which is compared with the observed cycle. However, it is found that there is considerable difference between the computations and observations. This suggests that the sea level is dependent not just on the local forcing alone, but also on the induced background circulation as well. For example, the sea level changes along the east coast of India, particularly the northern region, are more sensitive to freshwater discharge from various rivers joining the Bay of Bengal. This is due to more frequently occurring pre- and postmonsoon cyclonic storms and the associated surges in the Bay of Bengal as compared to the Arabian Sea. Hence the salinity effects are particularly important in the coastal waters off the east coast of India during monsoon months (June-September). For the west coast of India, however, it is expected that the large-scale coastal circulation may play a role in determining sea level changes in addition to other forcings. The salinity effects are negligible along the west coast in the absence of any major river systems that join the Arabian Sea. The local advection currents caused by the offshore directed freshwater discharge from various estuaries joining the coastal bay also seemed to influence the sea level. In order to elucidate the essential dynamics involved and to study the effect of the remote forcing, a three-dimensional baroclinic, nonlinear numerical model is used with appropriate open boundary conditions. The local effect of the current has been incorporated in the west coast model by means of opening a channel at Cochin through which the rainwater is carried away to the model ocean. The low saline plume, cascading from north along the east cost of India, has been incorporated in the east coast model through a proper forcing applied at the northern boundary of the model. With the inclusion of these remote forcings in the models, the disagreement between the simulations and the observations is minimized.
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盐度和洋流对印度海岸海平面变化的影响:一个数值研究
上升流/下沉过程及其相关的海平面变化被认为是沿海海洋对纯粹风应力强迫的响应。此外,除海洋气象参数外,预计降水和季风洪水也会影响沿海地区的海平面波动。该研究包括根据各种参数确定海平面,并将纯风应力强迫与观测到的周期进行比较。然而,我们发现计算结果与观测结果有相当大的差异。这表明海平面不仅依赖于局部强迫,而且还依赖于诱发的背景环流。例如,印度东海岸的海平面变化,特别是北部地区,对加入孟加拉湾的各种河流的淡水排放更为敏感。这是由于与阿拉伯海相比,孟加拉湾更频繁地发生季风前和季风后的气旋风暴和相关的浪涌。因此,在季风月份(6 - 9月),盐度对印度东海岸沿海水域的影响尤为重要。然而,对于印度西海岸,除了其他强迫外,预计大尺度沿海环流可能在决定海平面变化方面发挥作用。在没有任何主要河流系统汇入阿拉伯海的西海岸,盐度的影响可以忽略不计。各河口的淡水流入海岸海湾,形成的近海定向平流也对海平面产生影响。为了阐明所涉及的基本动力学和研究远程强迫的影响,采用了三维斜压非线性数值模型,并适当地设置了开放边界条件。洋流的局部影响已被纳入西海岸模型,方法是在科钦打开一条通道,雨水通过该通道被带到模型海洋。低盐羽流从北沿印度东部沿海层叠而来,通过在模式北部边界施加适当的强迫已被纳入东海岸模式。由于在模式中包含了这些远程强迫,模拟与观测之间的分歧被最小化了。
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来源期刊
Marine Geodesy
Marine Geodesy 地学-地球化学与地球物理
CiteScore
4.10
自引率
6.20%
发文量
27
审稿时长
>12 weeks
期刊介绍: The aim of Marine Geodesy is to stimulate progress in ocean surveys, mapping, and remote sensing by promoting problem-oriented research in the marine and coastal environment. The journal will consider articles on the following topics: topography and mapping; satellite altimetry; bathymetry; positioning; precise navigation; boundary demarcation and determination; tsunamis; plate/tectonics; geoid determination; hydrographic and oceanographic observations; acoustics and space instrumentation; ground truth; system calibration and validation; geographic information systems.
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