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CONTRIBUTION OF THE YANGTZE RIVER TO ECOSYSTEM OF THE EAST CHINA SEA

机译:长江对东海生态系统的贡献

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The Yangtze River of the China main land has recorded the decrease of sediment load in these 10 years because of construction of dams in the upstream region. The Three Gorgeous Dam, partly started its operation since July of 2003, has a significant contribution to reduce the sediment load with sedimentation. According to the Yangtze River hydrological report, the amount of discharge and the sediment concentration exhibit a clear migration in season and temporal changes. The seasonal and annual variations of discharge and sediment concentration are expected to have a strong contribution to the ecosystem in the East China Sea. In this study, a primary productivity in the East China Sea, especially over the offshore region of the Yangtze River mouth, is estimated with satellite monitoring of chlorophyll-a concentration, sea surface temperature, photo-synthetically available radiation, which are observed by MODIS on the polar orbiting satellite AQUA. The depth resolved primary productivity model was implemented to estimate the primary productivity where sufficient amount of nutrients are supplied and the variation of environments by the river compounds. In-situ measurements are also conducted at the entrance of the Kuroshio into the East China Sea, at one exit of the Kuroshio into the Pacific and at another exit of the Kuroshio into the Japan Sea to monitor effects of the Yangtze River. The in-situ measurements were conducted to evaluate the extensions of diluted water into the Kuroshio in the spring, when the discharge exhibits lower value, and in the summer, when the discharge exhibits the maximum value through the year. This paper discusses the contribution of the Yangtze River to the ecosystem of the East China Sea through the primary productivity and the effects of the diluted water into the Kuroshio.
机译:中国主要土地的长江历史记录了这10年的沉积物负荷减少,因为上游地区的水坝建造。这三大华丽大坝自2003年7月以来部分开始运营,对减少沉积物的沉积物负荷有重大贡献。根据长江水文报告,放电量和沉积物浓度在季节和季节性变化中表现出清晰的迁移。预计季节性和沉积物浓度的季节性和年度变化对东海生态系统具有强烈贡献。在这项研究中,据植物监测叶绿素-A浓度,海表面温度,光合成可用辐射,估计,东海初级生产力,特别是在长江口的近海地区估计。在极性轨道卫星水色上。实施深度解决的初级生产力模型以估计提供足够量的营养素的初级生产力以及河流化合物的环境变化。原位测量也在Kuroshio进入东海进入东海,在Kuroshio进入太平洋的一个出口,并在Kuroshio进入日本海的另一个出口,以监测长江的影响。进行原位测量以评估稀释水在弹簧中稀释水的延伸,当放电表现出较低的值,并且在夏季,当放电呈现最大值时。本文讨论了长江对东海生态系统的贡献,通过初级生产力和稀释水进入库鲁什的影响。

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