SIMULATION AND AREAL INTERPOLATION OF REACTIVE SOLUTE TRANSPORT

被引:9
作者
BOSMA, WJP
MARINUSSEN, MPJC
VANDERZEE, SEATM
机构
[1] Department of Soil Science and Plant Nutrition, Agricultural University, 6700 EC Wageningen
关键词
D O I
10.1016/0016-7061(94)90037-X
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
Reactive solute transport in a spatially variable field is studied. Adsorption is assumed to be described by the nonlinear modified Freundlich isotherm with an adsorption coefficient that depends on pH and organic matter content. Assuming spatial variation of pH and organic carbon content, a chemically heterogeneous field is simulated by the generation of a random field of the Freundlich adsorption coefficient. A three-dimensional reference transport calculation is performed with the complete heterogeneous field as input. The effect of the sequence of calculations and interpolations, and of the size of the data set are examined. A CI (calculations before interpolations) and an IC (interpolation followed by calculations) procedure are defined. Attention is focused on the prediction of average solute breakthrough and on the prediction of concentrations at specific locations. The results show that the optimal procedure and data set size depend on the quantity of interest. For the prediction of average behaviour, a smaller data set is sufficient compared with the prediction of concentrations at specific locations. For the calculation of the average solute breakthrough a more efficient IC procedure can be used in combination with the smaller data set. If the concentrations at specific locations in the field are requested, the size of the data set is more significant. However, for relatively small data sets a CI procedure performs better than an IC procedure.
引用
收藏
页码:217 / 231
页数:15
相关论文
共 22 条
[1]  
Bear J., 1979, HYDRAULICS GROUNDWAT
[2]   SIMULATION OF DISPERSION IN HETEROGENEOUS POROUS FORMATIONS - STATISTICS, 1ST-ORDER THEORIES, CONVERGENCE OF COMPUTATIONS [J].
BELLIN, A ;
SALANDIN, P ;
RINALDO, A .
WATER RESOURCES RESEARCH, 1992, 28 (09) :2211-2227
[3]  
BELLIN A, 1991, NUMERICAL GENERATION
[4]   SPATIAL VARIABILITY OF LEACHING CHARACTERISTICS OF A FIELD SOIL [J].
BIGGAR, JW ;
NIELSEN, DR .
WATER RESOURCES RESEARCH, 1976, 12 (01) :78-84
[5]   STOCHASTIC MODELING OF VERTICALLY AVERAGED CONCENTRATION UNCERTAINTY IN A PERFECTLY STRATIFIED AQUIFER [J].
BLACK, TC ;
FREYBERG, DL .
WATER RESOURCES RESEARCH, 1987, 23 (06) :997-1004
[6]   SPATIAL PATTERNS OF CADMIUM CONTENTS RELATED TO SOIL HETEROGENEITY [J].
BOEKHOLD, AE ;
VANDERZEE, SEATM ;
DEHAAN, FAM .
WATER AIR AND SOIL POLLUTION, 1991, 57-8 :479-488
[7]   TRANSPORT OF REACTING SOLUTE IN A ONE-DIMENSIONAL, CHEMICALLY HETEROGENEOUS POROUS-MEDIUM [J].
BOSMA, WJP ;
VANDERZEE, SEATM .
WATER RESOURCES RESEARCH, 1993, 29 (01) :117-131
[8]  
BOUMA J, 1991, BODEM, V4, P168
[9]   SOLUTE-DISPERSION IN UNSATURATED HETEROGENEOUS SOIL AT FIELD SCALE .2. APPLICATIONS [J].
BRESLER, E ;
DAGAN, G .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1979, 43 (03) :467-472
[10]  
CHARDON WJ, 1984, THESIS AGR U WAGENIN