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Conference/Symposium Proceedings and Poster Presentations
  • Rahman, S. M., Tafreshi, H. V., & Pourdeyhimi, B. (2022, 2023). Poster presentation on "Simulation and Experimental Characterization of Nanofibrous Materials". In Research, innovation & science for engineered (RISE) fabrics conference by IND. North Carolina State University

  • Ahmed, S., Rahman, S. M., San, O. & Rasheed, A. (2019). LSTM based nonintrusive ROM of convective flows. In Bulletin of the American Physical Society, Seattle, WA, USA: APS. [conference]

  • Rahman, S. M. & San, O. (2019). On the Development of Robust Reduced Order Model Frameworks for Partial Differential Equation Systems: Current Status and Future Prospects. In 39th annual Oklahoma AIAA–ASME symposium, Tulsa, OK, USA: University of Tulsa. [Symposium] [Symposium catalog]

  • Rahman, S. M., San, O. & Rasheed, A. (2019). A hybrid approach for model order reduction of barotropic quasi-geostrophic turbulence. In Siam conference on computational science and engineering (cse19), Spokane, WA, USA: SIAM. [conference]

  • Rahman, S. M., Rasheed, A. & San, O. (2018). A Hybrid Analytics Paradigm Combining Physics-Based Modeling and Data-Driven Modeling to Accelerate Incompressible Flow Solvers. In Bulletin of the American Physical Society, Atlanta, GA, USA: APS. [conference]

  • Rahman, S. M. & San, O. (2018). An optimized discrete filtering framework for large-eddy simulations. In 38th Oklahoma AIAA–ASME symposium, Oklahoma City, OK, USA: Oklahoma Christian University. [Symposium catalog​]

  • Rahman, S. M. & San, O. (2018). Poster presentation on “Hybrid analytics paradigm in fluid dynamics”. In 2nd MAE graduate research symposium, Stillwater, OK, USA: Oklahoma State University. [poster]

  • Rahman, S. M. & San, O. (2018). Poster presentation on “MPI implementation of Navier-Stokes equations”. In Coalition for advancing digital research and education (cadre) conference, Stillwater, OK, USA: Oklahoma State University. [poster]

Publications

*Find my recent research and publications on my Google Scholar, ResearchGate, Scopus, and Orcid profile
  Peer-reviewed Journal Articles
  • Rahman, S. M., Gautam, S., Tafreshi, H. V., & Pourdeyhimi, B. (2024). The role of 3D electrostatic field in modeling the electrospinning process. Journal of Applied Physics, 135(1). (Featured Article) [read article]

  • Rahman, S. M., Tafreshi, H. V., Pourdeyhimi, B., Physics-based deep neural network model to guide electrospinning polyurethane fibers, J. Appl. Polym. Sci. 2022, e53108. [read article]

  • Rahman, S. M., Pawar, S., San, O., Rasheed, A. & Iliescu, T. (2019). Nonintrusive reduced order modeling framework for quasigeostrophic turbulence. Physical Review E, 100 (5), 053306. [read article]

  • Ahmed, S. E., Rahman, S. M., San, O., Rasheed, A. & Navon, I. (2019). Memory embedded non-intrusive reduced order modeling of non-ergodic flows. Physics of Fluids, 31(12), 126602. [read article]

  • Pawar, S., Rahman, S. M., Vaddireddy, H., San, O., Rasheed, A. & Vedula, P. (2019). A deep learning enabler for nonintrusive reduced order modeling of fluid flows. Physics of Fluids, 31(8), 085101. (Featured Article) [read article]

  • Rahman, S. M., Ahmed, S. E. & San, O. (2019). A dynamic closure modeling framework for model order reduction of geophysical flows. Physics of Fluids, 31(4), 046602. [read article]

  • Rahman, S. M. & San, O. (2019). A relaxation filtering approach for two-dimensional Rayleigh–Taylor instability-induced flows. Fluids, 4(2), 78. [read article]

  • Rahman, S. M. & San, O. (2019). A localized dynamic closure model for Euler turbulence. International Journal of Computational Fluid Dynamics, 32(8-9), 326–378. [read article]

  • Rahman, S. M., Rasheed, A. & San, O. (2018). A Hybrid Analytics Paradigm Combining Physics-Based Modeling and Data-Driven Modeling to Accelerate Incompressible Flow Solvers. Fluids, 3(3), 50. [read article]

  • Rahman, S. M., San, O. & Rasheed, A. (2018). A hybrid approach for model order reduction of barotropic quasi-geostrophic turbulence. Fluids, 3(4), 86. [read article]

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