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夏季长江口外低氧区的动态特征分析
引用本文:韦钦胜,于志刚,夏长水,臧家业,冉祥滨,张学雷.夏季长江口外低氧区的动态特征分析[J].海洋学报,2011,33(6):100-109.
作者姓名:韦钦胜  于志刚  夏长水  臧家业  冉祥滨  张学雷
作者单位:1.国家海洋局 第一海洋研究所 海洋生态环境科学与工程国家海洋局重点实验室,山东 青岛 266061;中国海洋大学 海洋化学理论与工程技术教育部重点实验室,山东 青岛 266100
基金项目:我国近海海洋综合调查与评价专项课题"ST03区快水体环境调查与研究"(908-01-ST03)和"近海环流变异对主要渔场形成和变迁的影响"(908-02-01-03);联合国发展计划署全球环境机构(UNDP/GEF)减少黄海大海洋生态系统压力项目(Reducing Environmental Stress in the Yellow Sea Large Marine Ecosystem)(E-I-08-sumjcchneco-2121)。
摘    要:研究长江口外海域夏季低氧区的动态特征具有重要的科学意义和应用价值.通过对长江口外低氧区典型月份历史资料以及该海域生态环境演变的分析,揭示了长江口外海域低氧区北移、氧最低值波动下降和低氧区面积扩大的年代际变化趋势,阐明了低氧区的演变与富营养化以及海洋动力环境之间的关系,并对2006年夏半年(6-10月)低氧区的位置变化过...

关 键 词:长江口  低氧区  动态特征  北移  富营养化  水文动力因素
收稿时间:2010/6/13 0:00:00
修稿时间:2010/12/29 0:00:00

A preliminary analysis on the dynamic characteristics of the hypoxic zone adjacent to the Changjiang Estuary in summer
WEI Qin-sheng,YU Zhi-gang,XIA Chang-shui,ZANG Jia-ye,RAN Xiang-bin and ZHANG Xue-lei.A preliminary analysis on the dynamic characteristics of the hypoxic zone adjacent to the Changjiang Estuary in summer[J].Acta Oceanologica Sinica (in Chinese),2011,33(6):100-109.
Authors:WEI Qin-sheng  YU Zhi-gang  XIA Chang-shui  ZANG Jia-ye  RAN Xiang-bin and ZHANG Xue-lei
Institution:Key Laboratory of Science and Engineering for Marine Ecological Environment,First Institute of Oceanography,State Oceanic Administration,Qingdao 266061,China;Key Laboratory of Marine Chemistry Theory and Technology,Ministry of Education,Ocean University of China,Qingdao 266100,China;Key Laboratory of Marine Chemistry Theory and Technology,Ministry of Education,Ocean University of China,Qingdao 266100,China;Key Laboratory of Science and Engineering for Marine Ecological Environment,First Institute of Oceanography,State Oceanic Administration,Qingdao 266061,China;Key Laboratory of Marine Science and Numerical Modeling,First Institute of Oceanography,State Oceanic Administration,Qingdao 266061,China;Key Laboratory of Science and Engineering for Marine Ecological Environment,First Institute of Oceanography,State Oceanic Administration,Qingdao 266061,China;Key Laboratory of Science and Engineering for Marine Ecological Environment,First Institute of Oceanography,State Oceanic Administration,Qingdao 266061,China;Key Laboratory of Science and Engineering for Marine Ecological Environment,First Institute of Oceanography,State Oceanic Administration,Qingdao 266061,China
Abstract:The research and analysis on the dynamic characteristics of the hypoxic zone adjacent to the Changjiang Estuary are of greatly scientific and practical significance to the sustainable development of the Changjiang River Delta.Through the analysis on the historical data in typical months of the hypoxic zone and the marine ecological environment evolution off the Changjiang Estuary,the trends that the hypoxic zone moved northward,dissolved oxygen minimum value volatility decreased and the hypoxic area was growing were fully revealed from the time scale,meanwhile,the relationships between the evolution of the hypoxic zone and the eutrophication and the hydrodynamic environment were expounded,besides,the changing process of the hypoxic zone location in different months in summer half year(June-October)of 2006 was also discussed.The results show that the trend that the hypoxic zone moved northward(that is, the hypoxic zone extended to the southwestern area of the southern Huanghai Sea)was dominated by the eutrophication and the hydrological power variation,the enhanced northward expansion trend was a result of the long-term evolution of the ecological environment adjacent to the Changjiang Estuary,the enhancement of the Taiwan Warm Current and the northward moving of the upwelling area associated to it play a crucial role in the decadal variability of the core location of the hypoxic zone;the monthly variation of the currents and the changing of the phytoplankton biomass intensive areas adjacent to the Changjiang estuary affected the hypoxic zone location in summer half year to some extent.
Keywords:Changjiang Estuary  hypoxic zone  dynamic characteristics  northward moving  eutrophication  hydrodynamics
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