Modelling nitrogen loads at the catchment scale under the influence of land use
Land use data are essential for water quality models. Pollutant inputs to streams are indeed a direct function of human activities that can be represented, at least approximately, in terms of land use. Remote sensing is a valuable data source to determine the land use on a catchment. However the lan...
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Published in | Physics and chemistry of the earth. Parts A/B/C Vol. 29; no. 11; pp. 811 - 819 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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2004
Elsevier [2002-....] |
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Abstract | Land use data are essential for water quality models. Pollutant inputs to streams are indeed a direct function of human activities that can be represented, at least approximately, in terms of land use. Remote sensing is a valuable data source to determine the land use on a catchment. However the land use data obtained by this kind of information are subject to significant uncertainties, including misclassification or categorical uncertainty. This paper presents a method to analyse the impact of the land use categorical uncertainty on the responses of a nitrogen load model at the outlet of a catchment. We use the POL model, a semi-distributed event-based model on a French Mediterranean rural catchment and we focus on agricultural land use. First, the sensitivity analysis realised by simulations considering a uniform land use on the catchment, shows a great sensitivity of the estimated load to the land use change. Second, the categorical land use uncertainty is analysed on a total nitrogen load prediction set calculated with randomly generated land use maps consistent with the confusion matrix that characterizes misclassification of land use. Thus, from 1% to 10% of misclassified agricultural area results in a variation of almost 40% on nitrogen loads for the three studied events. Misclassified areas explain from 46% to 75% of the variance of the estimated nitrogen load. These first results illustrate the importance of sensitivity and uncertainty analyses to improve the confidence of a water quality model and need to be extended to other input data sets. |
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AbstractList | Land use data are essential for water quality models. Pollutant inputs to streams are indeed a direct function of human activities that can be represented, at least approximately, in terms of land use. Remote sensing is a valuable data source to determine the land use on a catchment. However the land use data obtained by this kind of information are subject to significant uncertainties, including misclassification or categorical uncertainty. This paper presents a method to analyse the impact of the land use categorical uncertainty on the responses of a nitrogen load model at the outlet of a catchment. We use the POL model, a semi-distributed event-based model on a French Mediterranean rural catchment and we focus on agricultural land use. First, the sensitivity analysis realised by simulations considering a uniform land use on the catchment, shows a great sensitivity of the estimated load to the land use change. Second, the categorical land use uncertainty is analysed on a total nitrogen load prediction set calculated with randomly generated land use maps consistent with the confusion matrix that characterizes misclassification of land use. Thus, from 1% to 10% of misclassified agricultural area results in a variation of almost 40% on nitrogen loads for the three studied events. Misclassified areas explain from 46% to 75% of the variance of the estimated nitrogen load. These first results illustrate the importance of sensitivity and uncertainty analyses to improve the confidence of a water quality model and need to be extended to other input data sets. |
Author | Cernesson, F Tournoud, M.G Beven, K.J Payraudeau, S |
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Cites_doi | 10.1016/S0022-1694(02)00395-5 10.1016/0951-8320(93)90097-I 10.1016/S0273-1177(99)01128-X 10.1002/hyp.343 10.1006/jema.1998.0257 10.1016/S0167-8809(00)00169-9 10.1016/S0022-1694(01)00421-8 10.1016/S0034-4257(00)00165-6 10.2166/wst.2001.0785 10.1016/S0022-1694(96)03106-X 10.1016/S1474-7065(03)00035-4 10.1007/BF01581617 10.1111/j.1752-1688.2003.tb04420.x |
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Title | Modelling nitrogen loads at the catchment scale under the influence of land use |
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