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Water quality assessment for Ulansuhai Lake using fuzzy clustering and pattern recognition

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【作者】 任春涛李畅游贾克力张生李卫平曹有玲

【Author】 REN Chuntao,LI Changyou,JIA Keli,ZHANG Sheng,LI Weiping,CAO Youling Inner Mongolia Agricultural University,Huhhot 010018,China Inner Mongolia Power Exploration & Design Institute,Huhhot 010020,China Inner Mongolia Survey & Design Institute of Water Conservancy & Hydropower,Huhhot 010020,China

【机构】 Inner Mongolia Agricultural University,Huhhot 010018, ChinaInner Mongolia Power Exploration & Design Institute,Huhhot 010020, ChinaInner Mongolia Survey & Design Institute of Water Conservancy & Hydropower,Huhhot 010020, China

【摘要】 Water quality assessment of lakes is important to determine functional zones of water use.Considering the fuzziness during the partitioning process for lake water quality in an arid area,a multiplex model of fuzzy clustering with pattern recognition was developed by integrating transitive closure method,ISODATA algorithm in fuzzy clustering and fuzzy pattern recognition.The model was applied to partition the Ulansuhai Lake,a typical shallow lake in arid climate zone in the west part of Inner Mongolia,China and grade the condition of water quality divisions.The results showed that the partition well matched the real conditions of the lake,and the method has been proved accurate in the application.

【Abstract】 Water quality assessment of lakes is important to determine functional zones of water use.Considering the fuzziness during the partitioning process for lake water quality in an arid area,a multiplex model of fuzzy clustering with pattern recognition was developed by integrating transitive closure method,ISODATA algorithm in fuzzy clustering and fuzzy pattern recognition.The model was applied to partition the Ulansuhai Lake,a typical shallow lake in arid climate zone in the west part of Inner Mongolia,China and grade the condition of water quality divisions.The results showed that the partition well matched the real conditions of the lake,and the method has been proved accurate in the application.

【基金】 Supported by the National Natural Science Foundation of China (No.50269001, 50569002, 50669004);Natural Science Foundation of Inner Mongolia (No.200208020512, 200711020604);The Key Scientific and Technologic Project of the 10th Five-Year Plan of Inner Mongolia (No.20010103)
  • 【文献出处】 Chinese Journal of Oceanology and Limnology ,中国海洋湖沼学报(英文版) , 编辑部邮箱 ,2008年03期
  • 【分类号】X824
  • 【被引频次】12
  • 【下载频次】159
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