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基于土壤传递函数的土壤持水特性间接估计及其空间变异性研究
作者姓名:LIAO Kai-Hu  XU Shao-Hui  WU Ji-Chun  JI Shu-Hu  LIN Qing
作者单位:Department of Hydrosciences, Nanjing University, Nanjing 210093 (China);Department of Environmental Science, Qingdao University, Qingdao 266071 (China);Department of Hydrosciences, Nanjing University, Nanjing 210093 (China);Department of Environmental Science, Qingdao University, Qingdao 266071 (China);Department of Environmental Science, Qingdao University, Qingdao 266071 (China)
基金项目:Supported by the National Natural Science Foundation of China (Nos. 40771095,40725010,and 41030746); the Water Conservancy Science & Technology Foundation of Qingdao City,China (No. 2006-003)
摘    要:A total of 107 soil samples were taken from the city of Qingdao,Shandong Province,China.Soil water retention data at 2.5,6,10,33,100,300,and 1 500 kPa matric potentials were measured using a pressure membrane apparatus.Multiple linear regression (MLR) was used to develop pedotransfer functions (PTFs) for single point estimation and van Genuchten parameter estimation based on readily measurable soil properties,i.e.,MLR-based point (MLRP) PTF and MLR-based parametric (MLRV) PTF.The double cross-validation method was used to evaluate the accuracy of PTF estimates and the stability of the PTFs developed in this study.The performance of MLRP and MLRV PTFs in estimating water contents at matric potentials of 10,33,and 1 500 kPa was compared with that of two existing PTFs,the Rawls PTF and the Vereecken PTF.In addition,geostatistical analyses were conducted to assess the capabilities of these PTFs in describing the spatial variability of soil water retention characteristics.Results showed that among all PTFs only the Vereecken PTF failed to accurately estimate water retention characteristics.Although the MLRP PTF can be used to predict retention characteristics through traditional statistical analyses,it failed to describe the spatial variability of soil water retention characteristics.Although the MLRV and Rawls PTFs failed to describe the spatial variability of water contents at a matric potential of 10 kPa,they can be used to quantify the spatial variability of water contents at matric potentials of 33 and 1 500 kPa.

关 键 词:double  cross-validation  method  multiple  linear  regression  soil  water  content  van  Genuchten  parameter

Assessing soil water retention characteristics and their spatial variability using pedotransfer functions
LIAO Kai-Hu,XU Shao-Hui,WU Ji-Chun,JI Shu-Hu,LIN Qing.Assessing soil water retention characteristics and their spatial variability using pedotransfer functions[J].Pedosphere,2011,21(4):413-422.
Authors:LIAO Kai-Hu  XU Shao-Hui  WU Ji-Chun  JI Shu-Hua and LIN Qing
Institution:Department of Hydrosciences, Nanjing University, Nanjing 210093 (China);Department of Environmental Science, Qingdao University, Qingdao 266071 (China);Department of Hydrosciences, Nanjing University, Nanjing 210093 (China);Department of Environmental Science, Qingdao University, Qingdao 266071 (China);Department of Environmental Science, Qingdao University, Qingdao 266071 (China)
Abstract:A total of 107 soil samples were taken from a site located in the city of Qingdao, Shandong Province, China. Soil water retention data at 2.5, 6, 10, 33, 100, 300, and 1 500 kPa matric potentials were measured using a pressure membrane apparatus. Multiple linear regression (MLR) was used to develop pedotransfer functions (PTFs) for single point estimation and van Genuchten parameter estimation based on readily measurable soil properties, i.e., MLR-based point (MLRP) PTF and MLR-based parametric (MLRV) PTF. The double cross-validation method was used to evaluate the accuracy of PTF estimates and the stability of the PTFs developed in this study. The performance of MLRP and MLRV PTFs in estimating water contents at matric potentials of -10, -33, and -1 500 kPa was compared with that of two existing PTFs, one developed by the Rawls PTF and the other by the Vereecken PTF. In addition, geostatistical analyses were conducted to assess the capabilities of these PTFs in describing the spatial variability of soil water retention characteristics. Results showed that among all PTFs only the Vereecken PTF failed to accurately estimate water retention characteristics. Although the MLRP PTF can be used to predict retention characteristics through traditional statistical analyses, it failed to describe the spatial variability of soil water retention characteristics. Although the MLRV and Rawls PTFs failed to describe the spatial variability of water contents at a matric potential of -10 kPa, they can be used to quantify the spatial variability of water contents at matric potentials of -33 and -1 500 kPa.
Keywords:double cross-validation method  multiple linear regression  soil water content  spatial variability  van Genuchten parameter
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