Applying the scientific method to small catchment studies: A review of the Panola Mountain experience

被引:79
作者
Hooper, RP [1 ]
机构
[1] US Geol Survey, Northborough, MA 01532 USA
关键词
hydrochemical models; mixing models; streamflow generation; hillslope hydrology;
D O I
10.1002/hyp.255
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
A hallmark of the scientific method is its iterative application to a problem to increase and refine the understanding of the underlying processes controlling it. A successful iterative application of the scientific method to catchment science (including the fields of hillslope hydrology and biogeochemistry) has been hindered by two factors. First, the scale at which controlled experiments can be performed is much smaller than the scale of the phenomenon of interest. Second, computer simulation models generally have not been used as hypothesis-testing tools as rigorously as they might have been. Model evaluation often has gone only so far as evaluation of goodness of fit, rather than a full structural analysis, which is more useful when treating the model as a hypothesis. An iterative application of a simple mixing model to the Panola Mountain Research Watershed is reviewed to illustrate the increase in understanding gained by this approach and to discern general principles that may be applicable to other studies. The lessons learned include the need for an explicitly stated conceptual model of the catchment, the definition of objective measures of its applicability, and a clear linkage between the scale of observations and the scale of predictions. Published in 2001 by John Wiley & Sons, Ltd.
引用
收藏
页码:2039 / 2050
页数:12
相关论文
共 29 条
[1]   THE FUTURE OF DISTRIBUTED MODELS - MODEL CALIBRATION AND UNCERTAINTY PREDICTION [J].
BEVEN, K ;
BINLEY, A .
HYDROLOGICAL PROCESSES, 1992, 6 (03) :279-298
[2]   ISOTOPE HYDROGRAPH SEPARATIONS AND RAPID DELIVERY OF PRE-EVENT WATER FROM DRAINAGE BASINS [J].
BUTTLE, JM .
PROGRESS IN PHYSICAL GEOGRAPHY-EARTH AND ENVIRONMENT, 1994, 18 (01) :16-41
[3]  
CARTER RF, 1983, HYDROLOGY ATLAS 9
[4]   SULFATE BUDGET AND A MODEL FOR SULFATE CONCENTRATIONS IN STREAM WATER AT BIRKENES, A SMALL FORESTED CATCHMENT IN SOUTHERNMOST NORWAY [J].
CHRISTOPHERSEN, N ;
WRIGHT, RF .
WATER RESOURCES RESEARCH, 1981, 17 (02) :377-389
[5]   MODELING STREAMWATER CHEMISTRY AS A MIXTURE OF SOILWATER END-MEMBERS - A STEP TOWARDS 2ND-GENERATION ACIDIFICATION MODELS [J].
CHRISTOPHERSEN, N ;
NEAL, C ;
HOOPER, RP ;
VOGT, RD ;
ANDERSEN, S .
JOURNAL OF HYDROLOGY, 1990, 116 (1-4) :307-320
[6]   MULTIVARIATE-ANALYSIS OF STREAM WATER CHEMICAL-DATA - THE USE OF PRINCIPAL COMPONENTS-ANALYSIS FOR THE END-MEMBER MIXING PROBLEM [J].
CHRISTOPHERSEN, N ;
HOOPER, RP .
WATER RESOURCES RESEARCH, 1992, 28 (01) :99-107
[7]   MODELING THE EFFECTS OF ACID DEPOSITION - ESTIMATION OF LONG-TERM WATER-QUALITY RESPONSES IN A SMALL FORESTED CATCHMENT [J].
COSBY, BJ ;
WRIGHT, RF ;
HORNBERGER, GM ;
GALLOWAY, JN .
WATER RESOURCES RESEARCH, 1985, 21 (11) :1591-1601
[8]   MODELING THE EFFECTS OF ACID DEPOSITION - ASSESSMENT OF A LUMPED PARAMETER MODEL OF SOIL-WATER AND STREAMWATER CHEMISTRY [J].
COSBY, BJ ;
HORNBERGER, GM ;
GALLOWAY, JN ;
WRIGHT, RF .
WATER RESOURCES RESEARCH, 1985, 21 (01) :51-63
[9]   A MULTISIGNAL AUTOMATIC CALIBRATION METHODOLOGY FOR HYDROCHEMICAL MODELS - A CASE-STUDY OF THE BIRKENES MODEL [J].
DEGROSBOIS, E ;
HOOPER, RP ;
CHRISTOPHERSEN, N .
WATER RESOURCES RESEARCH, 1988, 24 (08) :1299-1307
[10]   Bayesian estimation of uncertainty in runoff prediction and the value of data: An application of the GLUE approach [J].
Freer, J ;
Beven, K ;
Ambroise, B .
WATER RESOURCES RESEARCH, 1996, 32 (07) :2161-2173