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2024 | OriginalPaper | Buchkapitel

Effects of Univariate and Multivariate Bias Correction on Hydrological Projections in Northern Tunisia

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Abstract

The purpose of this study is to evaluate the contribution of multivariate bias correction versus univariate correction to post-process climate simulation for the case of Oued El Abid catchment, situated in northern Tunisia. A recently developed multivariate bias correction method (MBCn) was used to post-process climate simulations (daily precipitation and temperature) from the recent EURO-CORDEX experience (CMIP5). Two climate models that have shown their effectiveness in the Maghreb region were used. The results were compared to those obtained by univariate quantile mapping (QDM) over a 30-year reference period (1970–2000). Several metrics were used to compare bias-corrected climate variables by QDM and MBCn. We found that there is not much difference between QDM and MBCn to reproduce correctly the seasonality of temperature and precipitation. Hydrological projection was then performed for the period 2040–2070 under RCP 8.5, using HBV-light conceptual rainfall-runoff model. This study has little conclusive evidence that multidimensional approaches to correcting climate change are generally preferable. It clearly demonstrates that integration or ignorance of inter-variable relationships between temperature and precipitation data did not substantially influence the conclusions drawn from hydrological studies on the impacts of climate change in a semi-arid area.

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Literatur
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Zurück zum Zitat Dakhlaoui, H., Bargaoui, Z., & Bardossy, A. (2009). Comparison three ways of use of k-Nearest Neighbours technique toward improving the efficiency of SCE-UA applied to the calibration of HBV rainfall-runoff model. In I. Cluckie et al. (Eds.), IAHS Publication, pp 139–153 Dakhlaoui, H., Bargaoui, Z., & Bardossy, A. (2009). Comparison three ways of use of k-Nearest Neighbours technique toward improving the efficiency of SCE-UA applied to the calibration of HBV rainfall-runoff model. In I. Cluckie et al. (Eds.), IAHS Publication, pp 139–153
Zurück zum Zitat Fader, M., et al. (2020). Water. In W. K. Cramer et al. (Eds.), Climate and environmental change in the Mediterranean basin—Current situation and risks for the future. First Mediterranean Assessment Report. ISBN: 978-2-9577416-0-1 Fader, M., et al. (2020). Water. In W. K. Cramer et al. (Eds.), Climate and environmental change in the Mediterranean basin—Current situation and risks for the future. First Mediterranean Assessment Report. ISBN: 978-2-9577416-0-1
Zurück zum Zitat Gupta, H. V., et al. (2009). Decomposition of the mean squared error and NSE performance criteria implications for improving hydrological modelling. Journal of Hydrology, 377, 80–91.CrossRef Gupta, H. V., et al. (2009). Decomposition of the mean squared error and NSE performance criteria implications for improving hydrological modelling. Journal of Hydrology, 377, 80–91.CrossRef
Zurück zum Zitat Seibert, J., & Vis, M. (2012). Teaching hydrological modeling with a user-friendly catchment-runoff-model software package. HESS, 16(3315–3325), 2012. Seibert, J., & Vis, M. (2012). Teaching hydrological modeling with a user-friendly catchment-runoff-model software package. HESS, 16(3315–3325), 2012.
Metadaten
Titel
Effects of Univariate and Multivariate Bias Correction on Hydrological Projections in Northern Tunisia
verfasst von
Oussama Bellil
Hamouda Dakhlaoui
Copyright-Jahr
2024
DOI
https://doi.org/10.1007/978-3-031-43922-3_81