Project Details
Modelling melt ascent through the asthenosphere-lithosphere-continental crust system: Linking melt-matrix-two-phase flow with dyke propagation
Subject Area
Geophysics
Term
from 2018 to 2022
Project identifier
Deutsche Forschungsgemeinschaft (DFG) - Project number 398946577
Final Report Year
2024
No abstract available
Publications
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Evolution of magma bodies and mush zones: Insight from two-phase flow modelling of partially molten continental crust. — German-Swiss Geodynamics Workshop 2018, 19.-22. Aug. 2018, Noer, Germany.
Schmeling, H., Marquart, G., Weinberg, R., Wallner, H. & Cruden, S.
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Special Compaction Phenomenons in a Magmatic Crust. — German-Swiss Geodynamics Workshop 2018, 19.-22. Aug. 2018, Noer, Germany.
Wallner, H., Schmeling, H. & Marquart, G.
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Evolution of magma bodies and mush zones: Insight from two-phase flow modelling of partially molten continental crust. — 16th EGU General Assembly 2019, Vienna, Austria, 7-12 April 2019. Geophysical Research Abstracts, Vol. 21, EGU2019-7614.
Schmeling, H., Marquart, G., Weinberg, R., Wallner, H. & Cruden, S.
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First steps in linking melt-matrix-two-phase flow with fast melt transport via dykes in a continental crust scenario. — GeoMünster 2019, Earth! Past, Present, Future, Münster, 22.-25. September 2019, Vortrag 5h)-5, Abstract Volume, 156-157.
Wallner, H. & Schmeling, H.
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Modelling Melt Ascent in the Continental Crust: Testing ExtractionMechanisms. — 16th EGU General Assembly 2019, Vienna, Austria, 7-12 April 2019. Geophysical Research Abstracts, Vol. 21, EGU2019- 5866.
Wallner, H., Schmeling, H., Rivalta, E. & Maccaferri, F.
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Modelling melting and melt segregation by two-phase flow: new insights into the dynamics of magmatic systems in the continental crust. Geophysical Journal International, 217(1), 422-450.
Schmeling, Harro; Marquart, Gabriele; Weinberg, Roberto & Wallner, Herbert
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Numerical modelling towards fast melt transport in magmatic continental crust via dykes. — LASI VI – The physical geology of subvolcanic systems – laccoliths, sills and dykes, Malargüe, Argentina – November 25 -29, 2019, Abstracts, 117-118.
Wallner, H. & Schmeling, H.
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On the way improving melt extraction mechanism by dyking in a two-phase flow approach for melt ascending in continental crust. — 2019 Ada Lovelace Workshop on Modelling Mantle and Lithosphere Dynamics, 25.-30. August 2019, Certosa di Pontignano, Siena, Italy. Abstracts, 133.
Wallner, H. & Schmeling, H.
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Two-phase flow modelling of partially molten continental crust: Evolution of magma bodies and mush zones for time-dependent heating modes. — 2019 Ada Lovelace Workshop on Modelling Mantle and Lithosphere Dynamics, 25.-30. August 2019, Certosa di Pontignano, Siena, Italy. Abstracts, 117.
Schmeling, H., Kumaravel, P. & Wallner, H.
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Exploring Mechanisms and Conditions for the Generation of Self-propagating Dykes.
Wallner, Herbert & Schmeling, Harro
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Melting processes at convergent plate boundaries: from melt segregation, extraction to the formation of crustal magmatic systems.
Schmeling, Harro
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Dykes in a crustal two-phase flow medium. — German-Swiss Geodynamics Workshop 2021, 29. Aug. - 1. Sep. 2021, Springbachmühle, Bad Belzig, Germany.
Wallner, H. & Schmeling, H.
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Melt transport mechanisms: from melt segregation, extraction to the formation of crustal magmatic systems. — German-Swiss Geodynamics Workshop 2021, 29. Aug. - 1. Sep. 2021, Springbachmühle, Bad Belzig, Germany.
Schmeling, H.
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Melting and melt transport mechanisms in the dynamic earth: from melt segregation, extraction to the formation of crustal magmatic systems
Schmeling, Harro
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Sill intrusions in the crust or lithospheric mantle consistent with Earth’s surface deformation in the Eifel, Central Europe, 101st Journées Luxembourgeoises de Géodynamique, Luxembourg, 5-7/09/2022.
Silverii F., L. Mantiloni, Eleonora Rivalta & T. Dahm
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Dynamic Two‐Phase Flow Modeling of Melt Segregation in Continental Crust: Batholith Emplacement Versus Crustal Convection, With Implications for Magmatism in Thickened Plateaus. Geochemistry, Geophysics, Geosystems, 24(5).
Schmeling, Harro; Marquart, Gabriele; Weinberg, Roberto & Kumaravel, Pirunthavan
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FDCON source code and input files corresponding to Dynamic twophase flow modelling of melt segregation in continental crust: batholith emplacement vs. crustal convection, with implications for magmatism in thickened plateaus. — Version 22.1a, [Software] cited in Schmeling et al. (2023)
Schmeling, H.
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Lithospheric sill intrusions and present-day ground deformation at Rhenish Massif, Central Europe, EGU General Assembly, EGU23-6119, Vienna, 23-28/04/2023.
Silverii F., L. Mantiloni, Eleonora Rivalta & T. Dahm
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Lithospheric sill intrusions and present-day ground deformation at the Rhenish Massif, Central Europe, ICDP Workshop on the Eifel volcanism, Bad Honnef, 3-6 December 2023.
Silverii F., L. Mantiloni, E. Rivalta & T. Dahm
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Lithospheric Sill Intrusions and Present‐Day Ground Deformation at Rhenish Massif, Central Europe. Geophysical Research Letters, 50(23).
Silverii, F.; Mantiloni, L.; Rivalta, E. & Dahm, T.
