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土壤颗粒分布的单多重分形及联合多重分形分析
作者姓名:LI Yi  LI Min  R. HORTON
作者单位:Department;Agronomy;Iowa;State;University;
基金项目:Supported by the National Natural Science Foundation of China (No. 50709028); the Basic Foundation for Scientific Researchof Northwest Agriculture and Forestry Sci-Tech University,China (No. QN2009087)
摘    要:It is noted that there has been little research to compare volume-based and number-based soil particle size distributions(PSDs).Our objectives were to characterize the scaling properties and the possible connections between volume-based and number-based PSDs by applying single and joint multifractal analysis.Twelve soil samples were taken from selected sites in Northwest China and their PSDs were analyzed using laser diffractometry.The results indicated that the volume-based PSDs of all 12 samples and the number-based PSDs of 4 samples had multifractal scalings for moment order -6 < q < 6.Some empirical relationships were identified between the extreme probability values,maximum probability(P max),minimum probability(P min),and P max /P min,and the multifractal indices,the difference and the ratio of generalized dimensions at q = 0 and 1(D 0 - D 1 and D 1 /D 0),maximum and minimum singularity strength(α max and α min) and their difference(α max - α min,spectrum width),and asymmetric index(R D).An increase in P max generally resulted in corresponding increases of D 0 -D 1,α max,α max -α min,and R D,which indicated that a large P max increased the multifractality of a distribution.Joint multifractal analysis showed that there was significant correlation between the scaling indices of volume-based and number-based PSDs.The multifractality indices indicated that for a given soil,the volume-based PSD was more homogeneous than the number-based PSD,and more likely to display monofractal rather than multifractal scaling.

关 键 词:distribution  probability  generalized  dimensions  laser  diffractometry  scaling  singularity  strength

Single and joint multifractal analysis of soil particle size distributions
LI Yi,LI Min,R. HORTON.Single and joint multifractal analysis of soil particle size distributions[J].Pedosphere,2011,21(1):75-83.
Authors:LI Yi  LI Min and R HORTON
Institution:Northwest Agriculture and Forestry Sci-Tech University, Yangling 712100 (China);Department of Soil Science, University of Saskatchewan, Saskatoon, SK S7N 5A8 (Canada);Department of Agronomy, Iowa State University, Ames IA 50011 (USA)
Abstract:It is noted that there has been little research to compare volume-based and number-based soil particle size distributions(PSDs).Our objectives were to characterize the scaling properties and the possible connections between volume-based and number-based PSDs by applying single and joint multifractal analysis.Twelve soil samples were taken from selected sites in Northwest China and their PSDs were analyzed using laser diffractometry.The results indicated that the volume-based PSDs of all 12 samples and the number-based PSDs of 4 samples had multifractal scalings for moment order -6 < q < 6.Some empirical relationships were identified between the extreme probability values,maximum probability(P max),minimum probability(P min),and P max /P min,and the multifractal indices,the difference and the ratio of generalized dimensions at q = 0 and 1(D 0 - D 1 and D 1 /D 0),maximum and minimum singularity strength(α max and α min) and their difference(α max - α min,spectrum width),and asymmetric index(R D).An increase in P max generally resulted in corresponding increases of D 0 -D 1,α max,α max -α min,and R D,which indicated that a large P max increased the multifractality of a distribution.Joint multifractal analysis showed that there was significant correlation between the scaling indices of volume-based and number-based PSDs.The multifractality indices indicated that for a given soil,the volume-based PSD was more homogeneous than the number-based PSD,and more likely to display monofractal rather than multifractal scaling.
Keywords:distribution probability  generalized dimensions  laser diffractometry  scaling  singularity strength
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