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Expertise related to UN Sustainable Development Goals
In 2015, UN member states agreed to 17 global Sustainable Development Goals (SDGs) to end poverty, protect the planet and ensure prosperity for all. This person’s work contributes towards the following SDG(s):
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SDG 6 Clean Water and Sanitation
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SDG 7 Affordable and Clean Energy
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SDG 9 Industry, Innovation, and Infrastructure
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SDG 11 Sustainable Cities and Communities
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SDG 14 Life Below Water
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SDG 15 Life on Land
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Dive into the research topics where Azzeddine Soulaïmani is active. These topics are generated from this person's research output (titles and abstracts), as well as their research interests, awards, and organizations associated with them. Together, they form a unique digital fingerprint.
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Collaborations and top research areas from the last five years
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Research output
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A semi-implicit, second-order time-integration scheme for surface tension modeling in two-dimensional capillary-dominated two-phase flows
Fahsi, A. & Soulaïmani, A., 15 Jan 2026, In: Computers and Fluids. 304, 106889.Research output: Contribution to journal › Journal Article › peer-review
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A semi-implicit finite element method for modeling fertilizer transport through soils with root water and nutrient uptake
Toutlini, N. E., Beljadid, A. & Soulaïmani, A., Oct 2026, In: Mathematics and Computers in Simulation. 248, p. 514-538 25 p.Research output: Contribution to journal › Journal Article › peer-review
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Calibration of Manning's roughness coefficients for shallow-water flows on complex bathymetries using optimization algorithms and surrogate neural network models
Metcheka Kengne, I. G., Delmas, V. & Soulaïmani, A., 15 Jan 2026, In: Computers and Fluids. 304, 106884.Research output: Contribution to journal › Journal Article › peer-review
Open Access1 Citation (Scopus) -
JAX-WSPM: A GPU-accelerated parallel framework based on the JAX library for modeling water flow and solute transport in unsaturated porous media using an implicit finite element method
Toutlini, N. E., Soulaïmani, A. & Beljadid, A., Jan 2026, In: Computer Physics Communications. 318, 109866.Research output: Contribution to journal › Journal Article › peer-review
1 Citation (Scopus) -
On Finite Element Approximations and Stabilization Methods for Compressible Viscous Flows
Fortin, M., Soulaimani, A. & Manouzi, H., 1 Jan 2026, Computational Fluid Dynamics Techniques. CRC Press, p. 579-588 10 p.Research output: Contribution to Book/Report types › Book Chapter › peer-review