关注
Mohammadreza Abbasi
Mohammadreza Abbasi
在 sbu.ac.ir 的电子邮件经过验证
标题
引用次数
引用次数
年份
A new hybrid method for multi-objective fuel management optimization using parallel PSO-SA
F Khoshahval, A Zolfaghari, H Minuchehr, MR Abbasi
Progress in Nuclear Energy 76, 112-121, 2014
442014
Implementation of strength pareto evolutionary algorithm ii in the multiobjective burnable poison placement optimization of kwu pressurized water reactor
R Gharari, N Poursalehi, M Abbasi, M Aghaie
Nuclear Engineering and Technology 48 (5), 1126-1139, 2016
372016
Neutronic and thermal-hydraulic aspects of loading pattern optimization during the first cycle of VVER-1000 reactor using Polar Bear Optimization method
MA Nasr, M Zangian, M Abbasi, A Zolfaghari
Annals of Nuclear Energy 133, 538-548, 2019
262019
A novel multi-objective optimization method, imperialist competitive algorithm, for fuel loading pattern of nuclear reactors
R Akbari, M Abbasi, F Faghihi, SM Mirvakili, J Mokhtari
Progress in Nuclear Energy 108, 391-397, 2018
242018
An adaptive finite element approach for neutron transport equation
M Abbassi, A Zolfaghari, A Minuchehr, M Yousefi
Nuclear engineering and design 241 (6), 2143-2154, 2011
232011
ENTRANS: A platform for finite elements modeling of 3D neutron transport equation, Part II. Multidimensional implementation
M Yousefi, A Zolfaghari, A Minuchehr, MR Abbassi
Annals of Nuclear Energy 101, 534-551, 2017
112017
Spatially adaptive hp refinement approach for PN neutron transport equation using spectral element method
N Nahavandi, A Minuchehr, A Zolfaghari, M Abbasi
Annals of Nuclear Energy 85, 1066-1076, 2015
112015
Modeling of boiling flow in a channel under static along rolling and heaving motions
M Behzadi, A Zolfaghari, MR Abbassi, A Norouzi, MM Mirzaeegoudarzi
Annals of Nuclear Energy 162, 108528, 2021
92021
An extended half-range spherical harmonics method for first-order neutron transport equation based on variational treatment
SH Ghazaie, A Zolfaghari, M Abbasi
Progress in Nuclear Energy 100, 389-405, 2017
92017
The Multi-PN approximation to neutron transport equation
SH Ghazaie, M Abbasi, A Zolfaghari
Progress in Nuclear Energy 110, 64-74, 2019
82019
A PN-based approach along PSO scheme for PWR core reloading patterns optimization
M Abbassi, A Zolfaghari, A Minuchehr, F Khoshahval
Nuclear engineering and design 248, 206-215, 2012
82012
Sub-channels thermal-hydraulic analysis of rod bundle nuclear fuel elements under rolling motions
M Behzadi, A Zolfaghari, MR Abbassi, A Norouzi, MM Mirzaeegoudarzi
Annals of Nuclear Energy 168, 108874, 2022
72022
Adaptive refinement for PN neutron transport equation based on conjoint variational formulation and discontinuous finite element method
KH Sadeghi, M Abbasi, A Zolfaghari
Progress in Nuclear Energy 104, 16-31, 2018
62018
An arbitrary geometry finite element method for the adjoint neutron transport equation
M Yousefi, A Zolfaghari, A Minuchehr, MR Abbassi
Annals of nuclear energy 110, 511-525, 2017
62017
Quantifying the impact of risk mitigation measures using SPAR-H and RCM Approaches: Case study based on VVER-1000 systems
S Kordalivand, R Akbari, M Abbasi
Nuclear Engineering and Design 423, 113174, 2024
42024
Multi-physics core analysis and verification of NuScale reactor with coupling PARCS/RELAP
P Kakaei, M Zangian, M Abbasi
Annals of Nuclear Energy 193, 110021, 2023
42023
Modeling and simulation of neutron noise triggered by fuel assembly vibrations in 3D hexagonal geometry
A Kamkar, M Abbasi, O Safarzadeh
Nuclear Engineering and Design 414, 112532, 2023
32023
CFD investigation of PWR channel shapes effects during rolling motion under normal and accident condition
M Movaffagh, M Abbasi, A Zolfaghari
Annals of Nuclear Energy 181, 109574, 2023
32023
Simulation and analysis of core barrel vibrational modes associated with neutron noise phenomena in WWER-type reactors
A Kamkar, O Safarzadeh, M Abbasi
Nuclear Engineering and Design 420, 113047, 2024
22024
Simplified-DPN treatment of the neutron transport equation
M Nazari, A Zolfaghari, M Abbasi
Progress in Nuclear Energy 166, 104933, 2023
22023
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