11. Effects of step configuration on hydrodynamic performance of one- and doubled-stepped planing flat plates: A numerical simulation. (February 2020) Authors: Dashtimanesh, Abbas; Roshan, Fatemeh; Tavakoli, Sasan; Kohansal, Ahmadreza; Barmala, Bahare Journal: Proceedings of the Institution of Mechanical Engineers Issue: Volume 234:Number 1(2020:Feb.) Page Start: 181 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
12. Hydrodynamic study of heeled double-stepped planing hulls using CFD and 2D+T method. (15th January 2020) Authors: Bilandi, Rasul Niazmand; Dashtimanesh, Abbas; Tavakoli, Sasan Journal: Ocean engineering Issue: Volume 196(2020) Page Start: Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
13. Initiating a Mathematical Model for Prediction of 6-DOF Motion of Planing Crafts in Regular Waves. (18th August 2013) Authors: Ghadimi, Parviz; Dashtimanesh, Abbas; Faghfoor Maghrebi, Yaser Other Names: Popov Viktor Academic Editor. Journal: International journal of engineering mathematics Issue: Volume 2013(2013) Page Start: Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
14. Introducing a new flap form to reduce the transom waves using a 3-D numerical analysis. (2016) Authors: Ghadimi, Parviz; Dashtimanesh, Abbas; Chekab, Mohammad A. Feizi Journal: International journal of computational science and engineering Issue: Volume 12:Number 4(2016) Page Start: 265 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
15. Investigation of free surface flow generated by a planing flat plate using smoothed particle hydrodynamics method and FLOW3D simulations. (May 2013) Authors: Ghadimi, Parviz; Dashtimanesh, Abbas; Farsi, Mohammad; Najafi, Saeed Journal: Proceedings of the Institution of Mechanical Engineers Issue: Volume 227:Number 2(2013) Page Start: 125 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
16. Mathematical simulation of planar motion mechanism test for planing hulls by using 2D+T theory. (1st December 2018) Authors: Tavakoli, Sasan; Dashtimanesh, Abbas Journal: Ocean engineering Issue: Volume 169(2018) Page Start: 651 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
17. Numerical analysis of shipping water impacting a step structure. (1st August 2020) Authors: Khojasteh, Danial; Tavakoli, Sasan; Dashtimanesh, Abbas; Dolatshah, Azam; Huang, Luofeng; Glamore, William; Sadat-Noori, Mahmood; Iglesias, Gregorio Journal: Ocean engineering Issue: Volume 209(2020) Page Start: Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
18. Numerical study on a heeled one-stepped boat moving forward in planing regime. (March 2020) Authors: Dashtimanesh, Abbas; Tavakoli, Sasan; Kohansal, Ahmadreza; Khosravani, Reza; Ghassemzadeh, Abbas Journal: Applied ocean research Issue: Volume 96(2020) Page Start: Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
19. Performance of high-speed planing hulls accelerating from rest under the action of a surface piercing propeller and an outboard engine. (August 2018) Authors: Tavakoli, Sasan; Najafi, Saeed; Amini, Ebrahim; Dashtimanesh, Abbas Journal: Applied ocean research Issue: Volume 77(2018) Page Start: 45 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
20. Running attitudes of yawed planing hulls in calm water: development of an oblique 2D+T approach. (17th November 2017) Authors: Tavakoli, Sasan; Dashtimanesh, Abbas Journal: Ships and offshore structures Issue: Volume 12:Number 8(2017) Page Start: 1086 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗