E. Akomeah, K. Lindenschmidt, L. Morales-Marín, E. Hassanzadeh
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引用次数: 0
Abstract
Identification of integrated models is still hindered by submodels’ uncertainty propagation. In this article, a novel identifiability and identification framework is applied to screen and establish reasonable hypotheses of an integrated instream (WASP) and catchment water quality (VENSIM) model. Using the framework, the models were linked, and critical parameters and processes identified. First, an ensemble of catchment nutrient loads was simulated with randomized parameter settings of the catchment processes (e.g. nutrient decay rates). A second Monte Carlo analysis was then staged with randomized loadings and parameter values mimicking insteam processes (e.g. algae growth). The most significant parameters and their processes were identified. This coupling of models for a two-step global sensitivity analysis is a novel approach to integrated catchment-scale water quality model identification. Catchment processes were, overall, more significant to the river’s water quality than the instream processes of this Prairie river system investigated (Qu’Appelle River).
期刊介绍:
Journal of Environmental Planning and Management has already established itself as a leading forum for up-to-date scholarly but accessible papers on all aspects of environmental planning and management. With contributions from leading international authors, the Journal publishes influential, high quality papers -an essential feature whether you are a subscriber, reader, contributor or all three. The Editors and International Editorial Advisory Board are drawn from around the world and are committed to encouraging researchers and practitioners to contribute to multidisciplinary and international debate in the field. The central aim is to focus on the integrated planning and management of the environment.