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Eric Deleersnijder

Université Catholique de Louvain

Place Montesquieu, 3

Louvain-la-Neuve, 1348

Belgium

SCHOLARLY PAPERS

5

DOWNLOADS

168

TOTAL CITATIONS

0

Scholarly Papers (5)

1.

Application of the Implicit Discontinuous Galerkin Method to Shallow Water Flows in River Systems

Number of pages: 25 Posted: 10 Mar 2024
affiliation not provided to SSRN, Catholic University of Louvain (UCL) - Institute of Mechanics, Materials and Civil Engineering, UCLouvain and Université Catholique de Louvain
Downloads 83 (783,685)

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River system, Open-channel network, 1D-2D connection, Subcritical flow, DG method, complex river cross-section.

2.

Numerical Modelling of the Transport and Impact of 137cs and 131i on the Meuse-Campine Canals after a Potential Nuclear Accident

Number of pages: 37 Posted: 26 Sep 2024
affiliation not provided to SSRN, affiliation not provided to SSRN, Catholic University of Louvain (UCL) - Institute of Mechanics, Materials and Civil Engineering and Université Catholique de Louvain
Downloads 38 (1,209,354)

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Radiological impact assessment, Meuse River-Campine Canal, Nuclear Accident, radionuclide transport model, water ingestion doses

3.

Numerical Modelling for the Distribution of 137cs and 131i in the Scheldt Basin after a Potential Nuclear Accident

Number of pages: 29 Posted: 12 Jun 2024
affiliation not provided to SSRN, affiliation not provided to SSRN, Catholic University of Louvain (UCL) - Institute of Mechanics, Materials and Civil Engineering, affiliation not provided to SSRN and Université Catholique de Louvain
Downloads 25 (1,385,945)

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Scheldt, Radionuclide transport, river-sea continium, Hydrodynamics, Numerical Modelling

4.

An Multi-Scale Imex Second Order Runge-Kutta Method for the 3d Hydrodynamic Equationsp, Li { White-Space: Pre-Wrap; }

Number of pages: 25 Posted: 16 Apr 2024
UCLouvain, Université Catholique de Louvain, UCLouvain and Catholic University of Louvain (UCL) - Institute of Mechanics, Materials and Civil Engineering
Downloads 22 (1,424,331)

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split implicit-explicit Runge-Kuttatimestep methodshydrodynamic equationshigh order temporal scheme

5.

A Fractional-Order Diffusion Model to Predict Transgenic Pollen Dispersal

Proceedings of International Conference on Fractional Differentiation and its Applications (ICFDA) 2018
Posted: 20 Dec 2018
Catholic University of Louvain (UCL), Université Catholique de Louvain, University of British Columbia Okanagan and Université Catholique de Louvain

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bee-mediated pollen dispersal, genetically modified crops, isolation distances, truncated Lévy flights, anomalous diffusion