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基于多源融合卫星高度计观测数据的南海海浪有效波高的季节变化研究
引用本文:苏晖,魏春雷,姜绍材,李培良,翟方国. 基于多源融合卫星高度计观测数据的南海海浪有效波高的季节变化研究[J]. 海洋学报(英文版), 2017, 36(11): 38-50. DOI: 10.1007/s13131-017-1073-4
作者姓名:苏晖  魏春雷  姜绍材  李培良  翟方国
作者单位:厦门海洋环境监测中心站, 国家海洋局, 厦门, 361008,北海海洋环境监测中心站, 国家海洋局, 北海, 536007,北海海洋环境监测中心站, 国家海洋局, 北海, 536007,海洋与大气学院, 中国海洋大学, 266100,海洋与大气学院, 中国海洋大学, 266100
摘    要:The seasonal variability of the significant wave height(SWH) in the South China Sea(SCS) is investigated using the most up-to-date gridded daily altimeter data for the period of September 2009 to August 2015. The results indicate that the SWH shows a uniform seasonal variation in the whole SCS, with its maxima occurring in December/January and minima in May. Throughout the year, the SWH in the SCS is the largest around Luzon Strait(LS) and then gradually decreases southward across the basin. The surface wind speed has a similar seasonal variation, but with different spatial distributions in most months of the year. Further analysis indicates that the observed SWH variations are dominated by swell. The wind sea height, however, is much smaller. It is the the largest in two regions southwest of Taiwan Island and southeast of Vietnam Coast during the northeasterly monsoon, while the largest in the central/southern SCS during the southwesterly monsoon. The extreme wave condition also experiences a significant seasonal variation. In most regions of the northern and central SCS, the maxima of the 99 th percentile SWH that are larger than the SWH theoretically calculated with the wind speed for the fully developed seas mainly appear in August–November, closely related to strong tropical cyclone activities.Compared with previous studies, it is also implied that the wave climate in the Pacific Ocean plays an important role in the wave climate variations in the SCS.

关 键 词:有效波高  季节变化  南海  卫星观测
收稿时间:2016-03-22
修稿时间:2016-08-25

Revisiting the seasonal wave height variability in the South China Sea with merged satellite altimetry observations
SU Hui,WEI Chunlei,JIANG Shaocai,LI Peiliang and ZHAI Fangguo. Revisiting the seasonal wave height variability in the South China Sea with merged satellite altimetry observations[J]. Acta Oceanologica Sinica, 2017, 36(11): 38-50. DOI: 10.1007/s13131-017-1073-4
Authors:SU Hui  WEI Chunlei  JIANG Shaocai  LI Peiliang  ZHAI Fangguo
Affiliation:1.Central Marine Environmental Monitoring Station of Xiamen, East China Sea Branch, State Oceanic Administration, Xiamen 361008, China2.Beihai Marine Environmental Monitoring Center, South China Sea Branch, State Oceanic Administration, Beihai 536007, China3.College of Oceanic and Atmospheric Sciences, Ocean University of China, Qingdao 266100, China
Abstract:The seasonal variability of the significant wave height (SWH) in the South China Sea (SCS) is investigated using the most up-to-date gridded daily altimeter data for the period of September 2009 to August 2015. The results indicate that the SWH shows a uniform seasonal variation in the whole SCS, with its maxima occurring in December/January and minima in May. Throughout the year, the SWH in the SCS is the largest around Luzon Strait (LS) and then gradually decreases southward across the basin. The surface wind speed has a similar seasonal variation, but with different spatial distributions in most months of the year. Further analysis indicates that the observed SWH variations are dominated by swell. The wind sea height, however, is much smaller. It is the the largest in two regions southwest of Taiwan Island and southeast of Vietnam Coast during the northeasterly monsoon, while the largest in the central/southern SCS during the southwesterly monsoon. The extreme wave condition also experiences a significant seasonal variation. In most regions of the northern and central SCS, the maxima of the 99th percentile SWH that are larger than the SWH theoretically calculated with the wind speed for the fully developed seas mainly appear in August–November, closely related to strong tropical cyclone activities. Compared with previous studies, it is also implied that the wave climate in the Pacific Ocean plays an important role in the wave climate variations in the SCS.
Keywords:significant wave height  seasonal variability  South China Sea  satellite observations
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