Assessing rainfall global products reliability for water resource management in a tropical volcanic mountainous catchment

Water resource management relies fundamentally on our ability to monitor climate forcing variability, especially in tropical mountainous environment where the temporal and spatial variability of rainfall strongly controls the dynamics of the water resource. In West Java Island, rainfall temporal and...

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Published inJournal of hydrology. Regional studies Vol. 40; p. 101037
Main Authors Dumont, M., Saadi, M., Oudin, L., Lachassagne, P., Nugraha, B., Fadillah, A., Bonjour, J.-L., Muhammad, A., Hendarmawan, Dörfliger, N., Plagnes, V.
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Published Elsevier B.V 01.04.2022
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Abstract Water resource management relies fundamentally on our ability to monitor climate forcing variability, especially in tropical mountainous environment where the temporal and spatial variability of rainfall strongly controls the dynamics of the water resource. In West Java Island, rainfall temporal and spatial distribution significantly varies in function of regional climatology and volcanoes morphology while accessibility issues and the complexity of climatic phenomena notably are limitations for reliable rainfall ground instrumentation. Here, we assess the ability of climate reanalyses (CHELSA and TerraClimate) and satellite products (CHIRPS) in capturing rainfall high resolution spatial variability. The accuracy of rainfall amounts, variability and dynamics of each global product is estimated using the three component of Kling-Gupta efficiency score. As direct statistical comparison is influenced by resolution issues, our approach is completed by a process-based one. The spatial and orographic rainfall patterns of the global products are analyzed according to known climatic phenomena. It appears that, TerraClimate provides the most accurate and stable estimation for temporal monitoring. CHIRPS shows consistent rainfall patterns with atmospheric circulation and volcanoes morphology but overestimates overall rainfall amounts. This study presents a methodology for assessing global climatic products over poorly instrumented areas. The results demonstrate that high resolution global products are somewhat interesting for water resources management. However, several temporal and spatial biases still limit their integration for operational purposes. •We analyze high resolution rainfall products’ accuracy for water resources management.•The seasonal and interannual rainfall estimation accuracy are estimated.•Spatial and orographic rainfall patterns are integrated in the evaluation process.
AbstractList Water resource management relies fundamentally on our ability to monitor climate forcing variability, especially in tropical mountainous environment where the temporal and spatial variability of rainfall strongly controls the dynamics of the water resource. In West Java Island, rainfall temporal and spatial distribution significantly varies in function of regional climatology and volcanoes morphology while accessibility issues and the complexity of climatic phenomena notably are limitations for reliable rainfall ground instrumentation. Here, we assess the ability of climate reanalyses (CHELSA and TerraClimate) and satellite products (CHIRPS) in capturing rainfall high resolution spatial variability. The accuracy of rainfall amounts, variability and dynamics of each global product is estimated using the three component of Kling-Gupta efficiency score. As direct statistical comparison is influenced by resolution issues, our approach is completed by a process-based one. The spatial and orographic rainfall patterns of the global products are analyzed according to known climatic phenomena. It appears that, TerraClimate provides the most accurate and stable estimation for temporal monitoring. CHIRPS shows consistent rainfall patterns with atmospheric circulation and volcanoes morphology but overestimates overall rainfall amounts. This study presents a methodology for assessing global climatic products over poorly instrumented areas. The results demonstrate that high resolution global products are somewhat interesting for water resources management. However, several temporal and spatial biases still limit their integration for operational purposes. •We analyze high resolution rainfall products’ accuracy for water resources management.•The seasonal and interannual rainfall estimation accuracy are estimated.•Spatial and orographic rainfall patterns are integrated in the evaluation process.
Study region: Water resource management relies fundamentally on our ability to monitor climate forcing variability, especially in tropical mountainous environment where the temporal and spatial variability of rainfall strongly controls the dynamics of the water resource. In West Java Island, rainfall temporal and spatial distribution significantly varies in function of regional climatology and volcanoes morphology while accessibility issues and the complexity of climatic phenomena notably are limitations for reliable rainfall ground instrumentation. Study focus: Here, we assess the ability of climate reanalyses (CHELSA and TerraClimate) and satellite products (CHIRPS) in capturing rainfall high resolution spatial variability. The accuracy of rainfall amounts, variability and dynamics of each global product is estimated using the three component of Kling-Gupta efficiency score. As direct statistical comparison is influenced by resolution issues, our approach is completed by a process-based one. The spatial and orographic rainfall patterns of the global products are analyzed according to known climatic phenomena. Hydrological Insights: It appears that, TerraClimate provides the most accurate and stable estimation for temporal monitoring. CHIRPS shows consistent rainfall patterns with atmospheric circulation and volcanoes morphology but overestimates overall rainfall amounts. This study presents a methodology for assessing global climatic products over poorly instrumented areas. The results demonstrate that high resolution global products are somewhat interesting for water resources management. However, several temporal and spatial biases still limit their integration for operational purposes.
ArticleNumber 101037
Author Saadi, M.
Lachassagne, P.
Nugraha, B.
Dumont, M.
Hendarmawan
Fadillah, A.
Dörfliger, N.
Bonjour, J.-L.
Plagnes, V.
Muhammad, A.
Oudin, L.
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  surname: Fadillah
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  fullname: Plagnes, V.
  organization: Sorbonne Université, CNRS, EPHE, UMR 7619 METIS, F-75005 Paris, France
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Keywords Volcanic Island
Water resource
Tropical climate
Climatic reanalysis
High resolution rainfall product
Remote sensing
Language English
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Snippet Water resource management relies fundamentally on our ability to monitor climate forcing variability, especially in tropical mountainous environment where the...
Study region: Water resource management relies fundamentally on our ability to monitor climate forcing variability, especially in tropical mountainous...
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StartPage 101037
SubjectTerms Climatic reanalysis
Climatology
Earth Sciences
High resolution rainfall product
Hydrology
Remote sensing
Sciences of the Universe
Tropical climate
Volcanic Island
Water resource
Title Assessing rainfall global products reliability for water resource management in a tropical volcanic mountainous catchment
URI https://dx.doi.org/10.1016/j.ejrh.2022.101037
https://hal.sorbonne-universite.fr/hal-03666187
https://doaj.org/article/551c079fc57146a5a4f599d737c9e034
Volume 40
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