Faculty profile
Abdolmajid Mohammadian
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Research
Latest papers
Dynamic prediction of large spherical and cylindrical microplastic deposition: a machine learning approach for transport and deposition.
Environmental science and pollution research international · 2025
A spatiotemporal CNN-LSTM deep learning model for predicting soil temperature in diverse large-scale regional climates.
The Science of the total environment · 2025
A numerical framework for modeling fate and transport of microplastics in inland and coastal waters.
Marine pollution bulletin · 2022
Latest funding
- $352,920
Efficient and well-balanced numerical methods for nonhydrostatic three-dimensional shallow flows with moving beds and boundaries
NSERC · 2020 · Principal investigator
- $120,000
Efficient and well-balanced numerical methods for nonhydrostatic three-dimensional shallow flows with moving beds and boundaries
NSERC · 2020 · Principal investigator
- $38,985
Optimization of the Two-Dimensional Hydrodynamic Model for the Ottawa River_x000d_ _x000d_
NSERC · 2019 · Principal investigator
3 publications.
Dynamic prediction of large spherical and cylindrical microplastic deposition: a machine learning approach for transport and deposition.
Bigdeli M, Mohammadian A, Pilechi A, Bonakdari H
A spatiotemporal CNN-LSTM deep learning model for predicting soil temperature in diverse large-scale regional climates.
Farhangmehr V, Imanian H, Mohammadian A, Cobo JH, Shirkhani H, Payeur P
A numerical framework for modeling fate and transport of microplastics in inland and coastal waters.
Pilechi A, Mohammadian A, Murphy E
Efficient and well-balanced numerical methods for nonhydrostatic three-dimensional shallow flows with moving beds and boundaries
Principal investigators: Mohammadian, Abdolmajid
Keywords: modeling; three dimensional; efficient; rivers; coastal flows; erosion and sedimentation; non-hydrostatic; storm sureges; scour; fully coupled
Efficient and well-balanced numerical methods for nonhydrostatic three-dimensional shallow flows with moving beds and boundaries
Principal investigators: Mohammadian, Abdolmajid
Optimization of the Two-Dimensional Hydrodynamic Model for the Ottawa River_x000d_ _x000d_
Principal investigators: Mohammadian, Abdolmajid
Numerical study of flow and mixing processes in wastewater treatment systems**
Principal investigators: Mohammadian, Abdolmajid
Development of a simplified method for hydrodynamic pressures in wall corners and roof in liquid storage tanks
Principal investigators: Mohammadian, Abdolmajid
Evaluation of liquid shipping containers (TILT- Transportable, Integrated Local Treatment) under the effects of wind and seismic loading
Principal investigators: Mohammadian, Abdolmajid
Development of a simplified procedure to predict sloshing height in liquid containing structures
Principal investigators: Mohammadian, Abdolmajid
Development of a simplified procedure to predict wind loading on structures using the Computational Fluid Dynamic (CFD)
Principal investigators: Mohammadian, Abdolmajid
Optimisation of a combined geothermal-solar energy system for a specified heat extraction rate at a predetermined discharge rate and depth
Principal investigators: Mohammadian, Abdolmajid
Performance of geothermal energy systems in the vicinity of dams and the impact of groundwater flow on energy production of such systems
Principal investigators: Mohammadian, Abdolmajid
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
- Abdolmajid Mohammadian and Pierre Payeur: 1 shared paper
- Abdolmajid Mohammadian and Hossein Bonakdari: 1 shared paper
- Civil Engineering - Génie civil
- Electrical Engineering and Computer Science , School of - science informatique et de génie électrique, École de
Co-authors at University of Ottawa, colored by department. Thicker lines mean more shared papers; select anyone to open their profile and their own map.
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