节点文献

An Efficient Method on Deriving Topographic Index from DEM for Land Surface Hydrological Model Simulations

An Effcient Method on Deriving Topographic Index from DEM for Land Surface Hydrological Model Simulations

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 徐精文张万昌孙成武符淙斌

【Author】 XU Jingwen1,2,3,ZHANG Wanchang1,SUN Chengwu4,and FU Congbin1 1 Key Laboratory of Regional Climate-Environment Research for Temperate East Asia,Institute of Atmospheric Physics,Chinese Academy of Sciences,Beijing 100029 2 College of Resource and Environment,Sichuan Agricultural University,Yaan 625014 3 Graduate School of the Chinese Academy of Sciences,Beijing 100039 4 Linyi Bureau of Meteorology,Linyi 276004

【机构】 Key Laboratory of Regional Climate-Environment Research for Temperate East Asia,Institute of Atmospheric Physics,Chinese Academy of SciencesCollege of Resource and Environment,Sichuan Agricultural UniversityGraduate School of the Chinese Academy of SciencesLinyi Bureau of Meteorology

【摘要】 As a kernel parameter of the TOPMODEL-concept-based land surface model (LSM),topographic in-dex (TI) is commonly derived from high resolution digital elevation model (DEM).Various approaches to compute TI by using different algorithms have been developed in previous literature.However,flat areas and pits in DEMs of real watershed sometimes impose an arbitrary and spatially constant drainage density which may cause conventional retrieval methods to be very computer-intensive,especially for regional or global climate simulations where rugged mountainous areas are mixed with flat terrains in the DEM.In this paper,we propose a new approach to overcome this shortcoming by introducing a quantile classifica-tion to sort the DEM into eight categories at first and then using a fast and simple algorithm to process the flat areas,fill up pits in the DEM,and make it undulating.Thereafter,the algorithm can be directly applied to assigning flow directions of each cell of the processed DEM rather than taking the complicated approach of Jenson and Domingue.This approach dramatically promotes the computing effciency with a much easier and faster processing.In addition,the effects of different TI computing approaches on the TOPMODEL-concept-based hydrological simulations are investigated based on experimental simulations over a small-scale watershed gauged by the Youshuijie hydrological station and a large-scale watershed con-trolled by the Hanzhong hydrological station,respectively.The results show that the new approach is 13 times faster than the conventional one in TI retrieving,and no evident differences are found in rainfall-runoff simulations when using different algorithms in TI computations.These suggest that the proposed new approach for TI computation can be taken as an alternative and used in the TOPMODEL-concept-based hydrological simulations owning to its simplicity and high effciency,especially for relevant regional and global studies.

【Abstract】 As a kernel parameter of the TOPMODEL-concept-based land surface model (LSM),topographic index (TI) is commonly derived from high resolution digital elevation model (DEM).Various approaches to compute TI by using different algorithms have been developed in previous literature.However,flat areas and pits in DEMs of real watershed sometimes impose an arbitrary and spatially constant drainage density which may cause conventional retrieval methods to be very computer-intensive,especially for regional or global climate simulations where rugged mountainous areas are mixed with flat terrains in the DEM.In this paper,we propose a new approach to overcome this shortcoming by introducing a quantile classifica-tion to sort the DEM into eight categories at first and then using a fast and simple algorithm to process the flat areas,fill up pits in the DEM,and make it undulating.Thereafter,the algorithm can be directly applied to assigning flow directions of each cell of the processed DEM rather than taking the complicated approach of Jenson and Domingue.This approach dramatically promotes the computing effciency with a much easier and faster processing.In addition,the effects of different TI computing approaches on the TOPMODEL-concept-based hydrological simulations are investigated based on experimental simulations over a small-scale watershed gauged by the Youshuijie hydrological station and a large-scale watershed con-trolled by the Hanzhong hydrological station,respectively.The results show that the new approach is 13 times faster than the conventional one in TI retrieving,and no evident differences are found in rainfall-runoff simulations when using different algorithms in TI computations.These suggest that the proposed new approach for TI computation can be taken as an alternative and used in the TOPMODEL-concept-based hydrological simulations owning to its simplicity and high effciency,especially for relevant regional and global studies.

【基金】 Supported by the National Key Development Program for Basic Sciences of China under Grant No.2006CB400502;the 100 Young Talent Project of Chinese Academy of Sciences under Grant No.8-057493;the Special Meteorology Project of China Meteorological Administration under Grant No.GYHY200706001
  • 【文献出处】 Acta Meteorologica Sinica ,气象学报(英文版) , 编辑部邮箱 ,2009年05期
  • 【分类号】P339
  • 【下载频次】108
节点文献中: 

本文链接的文献网络图示:

本文的引文网络