Surface circulation in the Gulf of Thailand from remotely sensed observations: seasonal and interannual timescales

IF 4.1 3区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES Ocean Science Pub Date : 2023-03-30 DOI:10.5194/os-19-335-2023
A. Anutaliya
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引用次数: 1

Abstract

Abstract. The Gulf of Thailand (GoT), a shallow semi-enclosed basin located in the western equatorial Pacific, undergoes much wind variabilities on both seasonal and interannual timescales that produce complex surface circulation. The local Ekman pumping modifies sea level in the northern GoT, while remote wind forcing influences sea level variability at the GoT western boundary, potentially through the coastal trapped Kelvin waves. The importance of the Ekman current on ageostrophic current is also important; the stronger influence of the Ekman current is found toward the southern part of the GoT. The GoT circulation reverses its direction seasonally following the monsoon wind reversal which is well-captured by the most dominant complex empirical orthogonal function explaining 28 % of the total circulation variance. During the monsoon transition, a strong meridional current along the western boundary that connects to the flow at the GoT southeastern entrance is observed. This implies high exchange between the GoT and the South China Sea and thus modification of the GoT water. On the interannual timescale, the GoT circulation is directly impacted by both the El Niño–Southern Oscillation (ENSO) and the Indian Ocean Dipole (IOD). Interestingly, the two climate modes have different spatial influences on the GoT circulation. The IOD dominates the interannual current along the GoT western boundary and the southern boundary of the observing domain (8∘ N), while the ENSO correlates with that in the interior. The results highlight the complex circulation pattern as being contributed by different dynamics over each region of the GoT.
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来自遥感观测的泰国湾地面环流:季节和年际时间尺度
摘要泰国湾(GoT)是位于赤道西太平洋的一个浅半封闭盆地,在季节和年际时间尺度上都经历了很多风的变化,产生了复杂的地面环流。局地的Ekman泵送改变了北半球的海平面,而遥远的风强迫可能通过沿海被困的开尔文波影响北半球西部边界的海平面变化。埃克曼流对地转流的重要性也很重要;埃克曼海流的影响更强的方向是赤道以南。随着季风的反转,GoT环流的方向发生了季节性的反转,这被最主要的复杂经验正交函数很好地捕获,解释了总环流方差的28%。在季风过渡期间,观察到沿西部边界有一股强经向气流,与东南入口气流相连。这意味着GoT和南海之间的高交换,从而改变了GoT水。在年际尺度上,大气环流受到El Niño-Southern涛动(ENSO)和印度洋偶极子(IOD)的直接影响。有趣的是,两种气候模态对GoT环流有不同的空间影响。观测区(8°N)西边界和南边界的年际流主要由IOD主导,而内部的年际流主要由ENSO主导。结果表明,复杂的环流模式是由GoT各区域的不同动力所造成的。
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来源期刊
Ocean Science
Ocean Science 地学-海洋学
CiteScore
5.90
自引率
6.20%
发文量
78
审稿时长
6-12 weeks
期刊介绍: Ocean Science (OS) is a not-for-profit international open-access scientific journal dedicated to the publication and discussion of research articles, short communications, and review papers on all aspects of ocean science: experimental, theoretical, and laboratory. The primary objective is to publish a very high-quality scientific journal with free Internet-based access for researchers and other interested people throughout the world. Electronic submission of articles is used to keep publication costs to a minimum. The costs will be covered by a moderate per-page charge paid by the authors. The peer-review process also makes use of the Internet. It includes an 8-week online discussion period with the original submitted manuscript and all comments. If accepted, the final revised paper will be published online. Ocean Science covers the following fields: ocean physics (i.e. ocean structure, circulation, tides, and internal waves); ocean chemistry; biological oceanography; air–sea interactions; ocean models – physical, chemical, biological, and biochemical; coastal and shelf edge processes; paleooceanography.
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