The relationship between surface fractal dimension and soil water content at permanent wilting point

被引:53
|
作者
Ghanbarian-Alavijeh, B. [2 ]
Millan, H. [1 ]
机构
[1] Univ Granma, Dept Chem & Phys, Bayamo 85100, Granma, Cuba
[2] Univ Tehran, Dept Irrigat & Reclamat Engn, Karaj 3157877871, Iran
关键词
Soils; Permanent wilting point; Soil water retention curve; Surface fractal dimension; Soil Quality Index; HYDRAULIC CONDUCTIVITY; PEDOTRANSFER FUNCTIONS; SIZE DISTRIBUTION; RETENTION CURVE; BULK-DENSITY; MODEL; DRAINAGE; TEXTURE;
D O I
10.1016/j.geoderma.2009.04.014
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
Permanent wilting point (PVVP) is an important soil water parameter available from the soil water retention curve. Soil water content held at 1500 kPa determines plant survival or death. Recently, the application of fractal geometry concepts has been widely used for modeling soil and its hydraulic properties (e.g. soil water retention curve and unsaturated hydraulic conductivity). The objective of this study was to investigate the relationship between surface fractal dimension (D,) and soil water content held at permanent wilting point. theta(PWP) For this purpose, we used five clatasets corresponding to Puckett et al. [Puckett, W.E., Dane, J.H.. Hajek. B.F., 1985. Physical and mineralogical data to determine soil hydraulic properties. Soil Sci. Soc. Am. J. 49, 831-836], UNSODA [Leij, F.J., Alves, W.J., van Genuchten, M.T.h., Williams, J.R., 1996. Unsaturated Soil Hydraulic Database, UNSODA 1.0 user's manual. Rep. EPA/600/R96/095. USEPA, Ada, OK], GRIZZLY [Haverkamp, R., Zammit. C, Boubkraoui, F., Rajkai, K, Arrue, J. L, Keckmann, N., 1997. GRIZZLY, Grenoble soil catalogue: Soil survey of field data and description of particle-size, soil water retention and hydraulic conductivity functions. Laboratoire d'Etude des Transferts en Hydrologie et en Environnement. Grenoble, France], Huang et al. [Huang, G., Zhang, R., Huang, Q, 2006. Modeling soil water retention curve with a fractal method. Pedosphere 16,137-146], and Fooladmand [Fooladmand, H.R., 2007. Measurement of soil specific surface area and its relation to some soil physico-chemical properties. Ph.D. Thesis. Department of Irrigation. Science and Research Unit of Islamis Azad University, Tehran]. This yielded a total of 172 soil samples. The results showed that D, was positively related to both theta(PWP) and clay content. The D-s versus theta(PWP) and D-s versus clay content relationships were well fitted by logarithmic functions (goodness of fit R-2 = 0.97 and R-2 = 0.88, respectively). Soil quality index (S-index) and D-s were also significantly correlated (R= 0.911).The water film retained at 1500 kPa (PWP) delineates the complex geometrical structure of the pore-solid interface which could be determined by the relative amount and orientation of clay particles. (C) 2009 Elsevier B.V. All rights reserved.
引用
收藏
页码:224 / 232
页数:9
相关论文
共 50 条
  • [1] Estimation of soil water content at permanent wilting point using hygroscopic water content
    Chen, Chong
    Zhou, Hu
    Shang, Jianying
    Hu, Kelin
    Ren, Tusheng
    EUROPEAN JOURNAL OF SOIL SCIENCE, 2020, 71 (03) : 392 - 398
  • [2] Pedotransfer functions to estimate soil water content at field capacity and permanent wilting point in hot Arid Western India
    Santra, Priyabrata
    Kumar, Mahesh
    Kumawat, R. N.
    Painuli, D. K.
    Hati, K. M.
    Heuvelink, G. B. M.
    Batjes, N. H.
    JOURNAL OF EARTH SYSTEM SCIENCE, 2018, 127 (03)
  • [3] Development and Evaluation of Pedotransfer Functions to Estimate Soil Moisture Content at Field Capacity and Permanent Wilting Point for South African Soils
    Myeni, Lindumusa
    Mdlambuzi, Thandile
    Paterson, David Garry
    De Nysschen, Gert
    Moeletsi, Mokhele Edmond
    WATER, 2021, 13 (19)
  • [4] Pedotransfer functions to estimate soil water content at field capacity and permanent wilting point in hot Arid Western India
    Priyabrata Santra
    Mahesh Kumar
    R N Kumawat
    D K Painuli
    K M Hati
    G B M Heuvelink
    N H Batjes
    Journal of Earth System Science, 2018, 127
  • [5] Pedotransfer Functions for Field Capacity, Permanent Wilting Point, and Available Water Capacity Based on Random Forest Models for Routine Soil Health Analysis
    Amsili, Joseph P.
    van Es, Harold M.
    Schindelbeck, Robert R.
    COMMUNICATIONS IN SOIL SCIENCE AND PLANT ANALYSIS, 2024, 55 (13) : 1967 - 1984
  • [6] Analysis of the relationship between soil particle fractal dimension and physicochemical properties
    Pan, Yongxing
    Chen, Meng
    Chen, Yudao
    ENVIRONMENTAL EARTH SCIENCES, 2025, 84 (08)
  • [7] Modelling and prediction of soil water contents at field capacity and permanent wilting point of dryland cropping soils
    Rab, M. A.
    Chandra, S.
    Fisher, P. D.
    Robinson, N. J.
    Kitching, M.
    Aumann, C. D.
    Imhof, M.
    SOIL RESEARCH, 2011, 49 (05) : 389 - 407
  • [8] Prediction of Soil Field Capacity and Permanent Wilting Point Using Accessible Parameters by Machine Learning
    Liu, Liwei
    Ma, Xingmao
    AGRIENGINEERING, 2024, 6 (03): : 2592 - 2611
  • [9] Estimating Mass Fractal Dimension of Soil Using Artificial Neural Networks for Improved Prediction of Water Retention Curve
    Ghanbarian-Alavijeh, Behzad
    Taghizadeh-Mehrjardi, Ruhollah
    Huang, Guanhua
    SOIL SCIENCE, 2012, 177 (08) : 471 - 479
  • [10] Modelling Soil Water Contents at Field Capacity and Permanent Wilting Point Using Artificial Neural Network for Indian Soils
    Mohanty, M.
    Sinha, Nishant K.
    Painuli, D. K.
    Bandyopadhyay, K. K.
    Hati, K. M.
    Reddy, K. Sammi
    Chaudhary, R. S.
    NATIONAL ACADEMY SCIENCE LETTERS-INDIA, 2015, 38 (05): : 373 - 377