2-D modelling of fluid flow and heat transfer in the Paris basin, France: an assessment of the impact of permafrost during the last glacial/interglacial cycle.

International audience Periglacial areas are usually underlain by permafrost. Its geographic and depth distribution is mainly controlled by surface temperatures and therefore, has fluctuated according to climatic variations, especially during the last glacial/interglacial cycle. Today, permafrost ex...

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Main Authors: Jost, Anne, Meigneux, Marion, Rivière, Agnès, Goncalves, Julio
Other Authors: Milieux Environnementaux, Transferts et Interactions dans les hydrosystèmes et les Sols (METIS), Université Pierre et Marie Curie - Paris 6 (UPMC)-École pratique des hautes études (EPHE), Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Centre National de la Recherche Scientifique (CNRS), Centre de Géosciences (GEOSCIENCES), Mines Paris - PSL (École nationale supérieure des mines de Paris), Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL), Structure et fonctionnement des systèmes hydriques continentaux (SISYPHE), Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Mines Paris - PSL (École nationale supérieure des mines de Paris), Université Paris sciences et lettres (PSL)-Centre National de la Recherche Scientifique (CNRS)
Format: Conference Object
Language:English
Published: HAL CCSD 2011
Subjects:
Ice
Online Access:https://hal.science/hal-01396663
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spelling ftunivnantes:oai:HAL:hal-01396663v1 2023-05-15T15:12:34+02:00 2-D modelling of fluid flow and heat transfer in the Paris basin, France: an assessment of the impact of permafrost during the last glacial/interglacial cycle. Jost, Anne Meigneux, Marion Rivière, Agnès Goncalves, Julio Milieux Environnementaux, Transferts et Interactions dans les hydrosystèmes et les Sols (METIS) Université Pierre et Marie Curie - Paris 6 (UPMC)-École pratique des hautes études (EPHE) Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Centre National de la Recherche Scientifique (CNRS) Centre de Géosciences (GEOSCIENCES) Mines Paris - PSL (École nationale supérieure des mines de Paris) Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL) Structure et fonctionnement des systèmes hydriques continentaux (SISYPHE) Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Mines Paris - PSL (École nationale supérieure des mines de Paris) Université Paris sciences et lettres (PSL)-Centre National de la Recherche Scientifique (CNRS) Berne, Switzerland 2011-07-20 https://hal.science/hal-01396663 en eng HAL CCSD hal-01396663 https://hal.science/hal-01396663 INQUA https://hal.science/hal-01396663 INQUA, Jul 2011, Berne, Switzerland Paris Basin Hydrology Cold Regions Processes last glacial/interglacial cycle simulation [SDU.STU.HY]Sciences of the Universe [physics]/Earth Sciences/Hydrology [SDU.STU.CL]Sciences of the Universe [physics]/Earth Sciences/Climatology info:eu-repo/semantics/conferenceObject Conference poster 2011 ftunivnantes 2023-02-01T01:16:17Z International audience Periglacial areas are usually underlain by permafrost. Its geographic and depth distribution is mainly controlled by surface temperatures and therefore, has fluctuated according to climatic variations, especially during the last glacial/interglacial cycle. Today, permafrost extends predominantly accross the Arctic regions but was also present at mid-latitudes during glacial periods. Indeed, paleodata indicate its presence over most of the Paris basin, south of the Fennoscandian Ice Sheet in Europe. Freezing and thawing of permafrost may alter groundwater flow, recharge and discharge patterns in large sedimentary basins but their effect on hydrogeological processes are difficult to quantify. In particular, present-day hydrogeological conditions may still reflect the impact of the last glaciation. Here we investigate the response of the Paris basin groundwater system to permafrost formation and dissipation during the last glacial/interglacial cycle, by means of a numerical study. We use a newly developed coupled groundwater flow and heat transport model with integrated freezing and thawing processes to examine the interplay between groundwater flow and subsurface ice. It includes latent heat effects and modifications of hydraulic and thermal conductivities due to ice formation. A hydrogeological section across the Paris basin serves as the basis for our simulations. Time-varying boundary conditions are derived from a paleoclimatic scenario. Our model calculations allow us to estimate changes in groundwater movement over the last climatic cycle and to explore the influence of past permafrost on present-day hydrogeological conditions. Conference Object Arctic Fennoscandian Ice Ice Sheet permafrost Université de Nantes: HAL-UNIV-NANTES Arctic
institution Open Polar
collection Université de Nantes: HAL-UNIV-NANTES
op_collection_id ftunivnantes
language English
topic Paris Basin
Hydrology
Cold Regions Processes
last glacial/interglacial cycle
simulation
[SDU.STU.HY]Sciences of the Universe [physics]/Earth Sciences/Hydrology
[SDU.STU.CL]Sciences of the Universe [physics]/Earth Sciences/Climatology
spellingShingle Paris Basin
Hydrology
Cold Regions Processes
last glacial/interglacial cycle
simulation
[SDU.STU.HY]Sciences of the Universe [physics]/Earth Sciences/Hydrology
[SDU.STU.CL]Sciences of the Universe [physics]/Earth Sciences/Climatology
Jost, Anne
Meigneux, Marion
Rivière, Agnès
Goncalves, Julio
2-D modelling of fluid flow and heat transfer in the Paris basin, France: an assessment of the impact of permafrost during the last glacial/interglacial cycle.
topic_facet Paris Basin
Hydrology
Cold Regions Processes
last glacial/interglacial cycle
simulation
[SDU.STU.HY]Sciences of the Universe [physics]/Earth Sciences/Hydrology
[SDU.STU.CL]Sciences of the Universe [physics]/Earth Sciences/Climatology
description International audience Periglacial areas are usually underlain by permafrost. Its geographic and depth distribution is mainly controlled by surface temperatures and therefore, has fluctuated according to climatic variations, especially during the last glacial/interglacial cycle. Today, permafrost extends predominantly accross the Arctic regions but was also present at mid-latitudes during glacial periods. Indeed, paleodata indicate its presence over most of the Paris basin, south of the Fennoscandian Ice Sheet in Europe. Freezing and thawing of permafrost may alter groundwater flow, recharge and discharge patterns in large sedimentary basins but their effect on hydrogeological processes are difficult to quantify. In particular, present-day hydrogeological conditions may still reflect the impact of the last glaciation. Here we investigate the response of the Paris basin groundwater system to permafrost formation and dissipation during the last glacial/interglacial cycle, by means of a numerical study. We use a newly developed coupled groundwater flow and heat transport model with integrated freezing and thawing processes to examine the interplay between groundwater flow and subsurface ice. It includes latent heat effects and modifications of hydraulic and thermal conductivities due to ice formation. A hydrogeological section across the Paris basin serves as the basis for our simulations. Time-varying boundary conditions are derived from a paleoclimatic scenario. Our model calculations allow us to estimate changes in groundwater movement over the last climatic cycle and to explore the influence of past permafrost on present-day hydrogeological conditions.
author2 Milieux Environnementaux, Transferts et Interactions dans les hydrosystèmes et les Sols (METIS)
Université Pierre et Marie Curie - Paris 6 (UPMC)-École pratique des hautes études (EPHE)
Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Centre National de la Recherche Scientifique (CNRS)
Centre de Géosciences (GEOSCIENCES)
Mines Paris - PSL (École nationale supérieure des mines de Paris)
Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)
Structure et fonctionnement des systèmes hydriques continentaux (SISYPHE)
Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Mines Paris - PSL (École nationale supérieure des mines de Paris)
Université Paris sciences et lettres (PSL)-Centre National de la Recherche Scientifique (CNRS)
format Conference Object
author Jost, Anne
Meigneux, Marion
Rivière, Agnès
Goncalves, Julio
author_facet Jost, Anne
Meigneux, Marion
Rivière, Agnès
Goncalves, Julio
author_sort Jost, Anne
title 2-D modelling of fluid flow and heat transfer in the Paris basin, France: an assessment of the impact of permafrost during the last glacial/interglacial cycle.
title_short 2-D modelling of fluid flow and heat transfer in the Paris basin, France: an assessment of the impact of permafrost during the last glacial/interglacial cycle.
title_full 2-D modelling of fluid flow and heat transfer in the Paris basin, France: an assessment of the impact of permafrost during the last glacial/interglacial cycle.
title_fullStr 2-D modelling of fluid flow and heat transfer in the Paris basin, France: an assessment of the impact of permafrost during the last glacial/interglacial cycle.
title_full_unstemmed 2-D modelling of fluid flow and heat transfer in the Paris basin, France: an assessment of the impact of permafrost during the last glacial/interglacial cycle.
title_sort 2-d modelling of fluid flow and heat transfer in the paris basin, france: an assessment of the impact of permafrost during the last glacial/interglacial cycle.
publisher HAL CCSD
publishDate 2011
url https://hal.science/hal-01396663
op_coverage Berne, Switzerland
geographic Arctic
geographic_facet Arctic
genre Arctic
Fennoscandian
Ice
Ice Sheet
permafrost
genre_facet Arctic
Fennoscandian
Ice
Ice Sheet
permafrost
op_source INQUA
https://hal.science/hal-01396663
INQUA, Jul 2011, Berne, Switzerland
op_relation hal-01396663
https://hal.science/hal-01396663
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