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南海北部陆架区两个台风过境时近惯性运动的若干特征
引用本文:CHEN Shengli,HU Jianyu,POLTON Jeff A.. 南海北部陆架区两个台风过境时近惯性运动的若干特征[J]. 海洋学报(英文版), 2015, 34(1): 38-43. DOI: 10.1007/s13131-015-0594-y
作者姓名:CHEN Shengli  HU Jianyu  POLTON Jeff A.
作者单位:State Key Laboratory of Marine Environmental Science, College of Ocean & Earth Sciences, Xiamen University, Xiamen 361102, China;National Oceanography Centre, Liverpool L3 5dA, UK,State Key Laboratory of Marine Environmental Science, College of Ocean & Earth Sciences, Xiamen University, Xiamen 361102, China,National Oceanography Centre, Liverpool L3 5dA, UK
基金项目:The National Natural Science Foundation of China under contract Nos 41276006, 40976013 and 41121091; the China Scholarship Council; the UK Natural Environment Research Council Programme FASTNEt under contract No. NE/I030259/1.
摘    要:Features of near-inertial motions on the shelf(60 m deep) of the northern South China Sea were observed under the passage of two typhoons during the summer of 2009. There are two peaks in spectra at both sub-inertial and super-inertial frequencies. The super-inertial energy maximizes near the surface, while the sub-inertial energy maximizes at a deeper layer of 15 m. The sub-inertial shift of frequency is induced by the negative background vorticity. The super-inertial shift is probably attributed to the near-inertial wave propagating from higher latitudes. The near-inertial currents exhibit a two-layer pattern being separated at mid-depth(25–30 m), with the phase in the upper layer being nearly opposite to that in the lower layer. The vertical propagation of phase implies that the near-inertial energy is not dominantly downward. The upward flux of the near-inertial energy is more evident at the surface layer(17 m). There exist two boundaries at 17 and 40 m, where the near-inertial energy is reflected upward and downward. The near-inertial motion is intermittent and can reach a peak of as much as 30 cm/s. The passage of Typhoon Nangka generates an intensive near-inertial event, but Typhoon Linfa does not. This difference is attributed to the relative mooring locations, which is on the right hand side of Nangka's path(leading to a wind pattern rotating clockwise with time) and is on the left hand side of Linfa's path(leading to a wind pattern rotating anti-clockwise with time).

关 键 词:near-inertial motions  typhoon  South China Sea
收稿时间:2014-04-08
修稿时间:2014-06-13

Features of near-inertial motions observed on the northern South China Sea shelf during the passage of two typhoons
CHEN Shengli,HU Jianyu and POLTON Jeff A.. Features of near-inertial motions observed on the northern South China Sea shelf during the passage of two typhoons[J]. Acta Oceanologica Sinica, 2015, 34(1): 38-43. DOI: 10.1007/s13131-015-0594-y
Authors:CHEN Shengli  HU Jianyu  POLTON Jeff A.
Affiliation:1.State Key Laboratory of Marine Environmental Science, College of Ocean & Earth Sciences, Xiamen University, Xiamen 361102, China;National Oceanography Centre, Liverpool L3 5dA, UK2.State Key Laboratory of Marine Environmental Science, College of Ocean & Earth Sciences, Xiamen University, Xiamen 361102, China3.National Oceanography Centre, Liverpool L3 5dA, UK
Abstract:Features of near-inertial motions on the shelf (60 m deep) of the northern South China Sea were observed under the passage of two typhoons during the summer of 2009. There are two peaks in spectra at both sub-inertial and super-inertial frequencies. The super-inertial energy maximizes near the surface, while the sub-inertial energy maximizes at a deeper layer of 15 m. The sub-inertial shift of frequency is induced by the negative background vorticity. The super-inertial shift is probably attributed to the near-inertial wave propagating from higher latitudes. The near-inertial currents exhibit a two-layer pattern being separated at mid-depth (25-30 m), with the phase in the upper layer being nearly opposite to that in the lower layer. The vertical propagation of phase implies that the near-inertial energy is not dominantly downward. The upward flux of the near-inertial energy is more evident at the surface layer (<17 m). There exist two boundaries at 17 and 40 m, where the near-inertial energy is reflected upward and downward. The near-inertial motion is intermittent and can reach a peak of as much as 30 cm/s. The passage of Typhoon Nangka generates an intensive near-inertial event, but Typhoon Linfa does not. This difference is attributed to the relative mooring locations, which is on the right hand side of Nangka's path (leading to a wind pattern rotating clockwise with time) and is on the left hand side of Linfa's path (leading to a wind pattern rotating anti-clockwise with time).
Keywords:near-inertial motions  typhoon  South China Sea
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