Ehsani, M., Moghim, M.N., Shafieefar, M. (2022). Numerical and experimental study on wave interaction with a porous media of multi-layer berm breakwater. Modares Civil Engineering journal, 22 (3). |
September |
2022 |
Sharifian, M., Moghim, M.N., Chamani, M.R. (2022). Numerical simulation of waves overtopping over impermeable sloped seadikes. Ocean Engineering, 266. |
December |
2022 |
Ehsani, M., Moghim, M.N., Shafieefar, M. (2022). On Berm Design of Icelandic-Type Breakwaters with Emphasis on the Relation between Armor Damage and Berm Recession (Case study: Sirevåg berm breakwater). Maritime Engineering, 175 (1). |
January |
2022 |
Koushki, M., Chamani, M.R., and Moghim, M.N. (2022). Assessment of equilibrium pressure-flow scour depth by using jet flow theory. International Journal of Sediment Research, 38(1). |
November |
2022 |
Mostaghiman, A., Moghim, M.N. (2022). An experimental study of partly/hardly reshaping mass-armored double-berm breakwaters. Ocean Engineering, 243. |
February |
2022 |
Nasri, B., Moghim, M.N., Badri, M.A. (2021). Experimental study on trapezoidal pontoon-type floating breakwaters with attached porous plates. Journal of Ocean Engineering and Marine Energy. |
January |
2021 |
Mirzaei, H., Moghim, M.N., Asadi, M. (2021). Two-dimensional solution of steady free jet and wall jet by strip integration method and its comparison with empirical relationships and numerical modeling. Modeling Earth Systems and Environment. |
November |
2021 |
Zarabi, N., Moghim, M.N., Eftekhar, M.R. (2021). Effect of Hydraulic Parameters on Abrasion Erosion of Fiber Reinforced Concrete in Hydraulic Structures. Construction and Building Materials, Vol. (266). |
January |
2021 |
Ehsani, M., Moghim, M.N., Shafieefar, M. (2020). An experimental study on the hydraulic stability of Icelandic-Type berm breakwaters. Coastal Engineering, Vol (156). |
March |
2020 |
Nematollahi, M., Moghim, M.N. (2020). Numerical Simulation of Spatial Distribution of Wave Overtopping on Non-Reshaping Berm Breakwaters. Journal of Marine Science and Application, Vol (19). |
September |
2020 |
Bahman, E., Kabiri-Samani, A.R., Moghim, M.N. (2020). Study of Hydraulic characteristics of flow over the asymmetric hydrofoil weirs. Journal of Hydraulics, Vol (14), pp. 123-136 (In Persian). |
Winter |
2020 |
Ehsani, M., Moghim, M.N., Shafieefar, M. (2020). The Effect of Stone Class I Characteristics on Hydraulic Stability of Multi-Layer Berm. Journal of Marine Engineering, 15(30), 53-67 (In Persian). |
Fall |
2020 |
Ehsani, M., Moghim, M.N., Shafieefar, M., Mostaghiman, A. (2020). Wave Reflection of irregular waves from Multi-Layer Berm Breakwaters . International Journal of Coastal & Offshore Engineering, Vol (4). |
Spring |
2020 |
Bahman, E., Kabiri-Samani, A.R., Moghim, M.N. (2019). Discharge coefficient of hydrofoil weirs based on potential flow theory around a symmetric Joukowsky hydrofoil. Journal of Hydraulic Research, Vol. 57. |
December |
2019 |
Nikpour, A.H., Moghim, M.N., Badri, M.A. (2019). Experimental Study of Wave Attenuation in Trapezoidal Floating Breakwaters. China Ocean Engineering, Vol. 33, pp. 103-113. |
November |
2019 |
Moghim, M. N. and Botshekan, M., (2016). Analysis of performance of pontoon-type floating breakwaters. The HKIE Transactions, Vol. 24, No. 1, pp. 9-16. |
March |
2017 |
Hodaei, S.M.R., Chamani, M.R., Moghim, M.N. and Kabiri-Samani, A.R. (2016). Experimental Study on Reflection Coefficient of Curved Perforated Plate. Journal of Marine Science and Application, Vol. 15, pp. 382-387. |
August |
2016 |
Moghim, M. N. (2015). Estimation of Pressure Variation on Rubble-Mound Breakwaters by Using Wave Momentum Flux Parameter. Journal of Oceanography, 6(27), pp. 27-37 (In Persian). |
June |
2015 |
Moghim, M.N., Forouzan Boroujeni, R. and Mohammad Rezapour Tabari, M. (2015). Wave Overtopping on Reshaping Berm Breakwaters Based on Wave Momentum Flux. Applied Ocean Research, Elsevier, Vol. 53, pp. 23-30. |
November |
2015 |
Moghim, M.N. and Lykke Andersen, T. (2015). Armor Stability of Hardly (or Partly) Reshaping Berm Breakwaters. Coastal Engineering, Elsevier, Vol. 104, pp. 1-12. |
October |
2015 |
Moghim, M. N. (2015). Numerical Modeling of Water Surface and Pore Pressure Fluctuations in Conventional Rubble Mound Breakwater. Journal of Marine Engineering, 10(19), pp. 21-31. |
March |
2015 |
Moghim, M.N. and Alizadeh, F. (2014). Hydraulic stability of reshaping berm breakwaters using the wave momentum flux parameter. Coastal Engineering, Elsevier, Vol. 83, pp. 56-64. |
February |
2014 |
Moghim, M.N. and Tørum, A. (2012). Wave Induced Loading of the Reshaping Rubble Mound Breakwaters. Apllied Ocean Research, Elsevier, Vol. 37, pp. 90-97. |
February |
2012 |
Tørum, A., Moghim, M.N., Westeng, K., Hidayati, N. and Arntsen, Ø. (2012). On Berm Breakwaters: Recession, Crown Wall Wave Forces, Reliability. Coastal Engineering, Elsevier, Vol. 60, pp. 299-318 |
February |
2012 |
Moghim, M. N., Shafieefar, M., Tørum, A. and Chegini, V., (2011). A New Formula for the Sea State and Structural Parameters Influencing the Stability of Homogeneous Reshaping Berm Breakwaters. Coatsal Engineering, Elsevier, Vol. 58, pp. 706-721. |
February |
2011 |
Shafieefar, M., Moghim, M. N. and Bahreininejad, A., (2011). Prediction of Wave and Current Forces on Slender Structures. The HKIE Transactions, Vol 18., No. 1., pp. 30-35. |
February |
2011 |
Moghim, M. N., Shafieefar, M., Chegini, V. and Aghtouman, P., (2009). Berm Recession of Reshaping Berm Breakwaters with Influence of Wave Parameters. Journal of Marine Engineering, 9(1), pp. 13-28 (In Persian). |
February |
2009 |
Moghim, M. N., Chegini, V., Shafieefar, M. and Aghtouman, P., (2009). Investigation of the Reshaping Berm Breakwaters Mechanism. Journal of Oceanography, 1(1), pp. 20-32 (In Persian). |
February |
2009 |
Moghim, M. N., Shafieefar, M. and Bahreininejad, A., (2007). Prediction of Wave and Current Forces on Slender Structures Using Artificial Neural Networks. Journal of Hydraulics, pp. 37-45 (In Persian). |
February |
2007 |
Moghim, M. N. and Shafieefar, M., (2005). Prediction of Wave and Current Forces on Slender Structures in the form of Time Series Using Artificial Neural Networks. Journal of Marine Engineering, 2(1), pp. 11-21 (In Persian). |
February |
2005 |