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Chinese Journal of Applied Ecology ›› 2011, Vol. 22 ›› Issue (02): 467-472.

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Evolution process and related driving mechanisms of Yellow River Delta since the diversion of Yellow River.

HAN Guang-xuan1, LI Yun-zhao1,2, YU Jun-bao1, XU Jing-wei3, WANG Guang-mei1, ZHANG Zhi-dong1, MAO Pei-li1, LIU Yu-hong1   

  1. 1Laboratory of Coastal Wetland Ecology/Shandong Province Key Laboratory of Coastal Zone Environment Processes, Yantai Institute of Coastal Zone Research, Chinese Academy of Sciences, Yantai 264003, Shandong, China|2Graduate University of Chinese Academy of Sciences, Beijing 100049, China|3Shandong Academy of Forestry, Ji’nan 250014, China
  • Online:2011-02-18 Published:2011-02-18

Abstract: Based on the 23 sheets of remote sensing images from 1976 to 2009, in combining with the water and sediment data from Lijin station and the annual precipitation data of Yellow River Basin from 1976 to 2008, this paper quantitatively analyzed the features of water and sediment discharge from Yellow River, and the evolution process of Yellow River Delta and related driving mechanisms. In 1976-2008, the annual runoff and the annual sediment discharge into sea changed largely and frequently, but overall, presented a decreasing trend. Since the course of the Yellow River changed its direction to Qingshui channel in 1976, the Delta coastline and area were generally in a silting-up state. The evolution process of the Delta could be approximately divided into three stages, i.e., 1976-1985, 1986-1995, and 1996-2009, and the increasing rate of the Delta decreased with the stages. The coastline and area of the Delta were significantly exponentially correlated to the sediment accumulated at Lijin station, and the inter-annual variation of the precipitation of the Yellow River Basin had a strong correlation with that of the sediment at Lijin station, suggesting that the annual variation of the precipitation in Yellow River Basin was the main factor affecting the runoff and sediment discharge into sea.

Key words: Yellow River Delta, coastline, evolution, driving mechanism