Items where Author is "Munir, S."

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Number of items: 8.

El Adawy, M. and Heikal, M.R. and Aziz, A.R.A. and Munir, S. and Siddiqui, M.I. (2018) Effect of boost pressure on the in-cylinder tumble- motion of GDI engine under steady-state conditions using Stereoscopic-PIV. Journal of Applied Fluid Mechanics, 11 (3). pp. 733-742.

El Adawy, M. and Heikal, M.R. and Aziz, A.R.A. and Munir, S. and Siddiqui, M.I. (2018) Effect of boost pressure on the in-cylinder tumble- motion of GDI engine under steady-state conditions using Stereoscopic-PIV. Journal of Applied Fluid Mechanics, 11 (3). pp. 733-742.

Siddiqui, M.I. and Munir, S. and Heikal, M.R. and de Sercey, G. and Aziz, A.R.A. and Dass, S.C. (2016) Simultaneous velocity measurements and the coupling effect of the liquid and gas phases in slug flow using PIV�LIF technique. Journal of Visualization, 19 (1). pp. 103-114.

Siddiqui, M.I. and Munir, S. and Heikal, M.R. and de Sercey, G. and Aziz, A.R.A. and Dass, S.C. (2016) Simultaneous velocity measurements and the coupling effect of the liquid and gas phases in slug flow using PIV�LIF technique. Journal of Visualization, 19 (1). pp. 103-114.

Munir, S. and Siddiqui, M.I. and Heikal, M. and Abdul Aziz, A.R. and de Sercey, G. (2015) Identification of dominant structures and their flow dynamics in the turbulent two-phase flow using POD technique. Journal of Mechanical Science and Technology, 29 (11). pp. 4701-4710.

Munir, S. and Siddiqui, M.I. and Heikal, M. and Abdul Aziz, A.R. and de Sercey, G. (2015) Identification of dominant structures and their flow dynamics in the turbulent two-phase flow using POD technique. Journal of Mechanical Science and Technology, 29 (11). pp. 4701-4710.

Munir, S. and Heikal, M.R. and Aziz, A.R.A. and Muthuvalu, M.S. and Siddiqui, M.I. (2015) Temporal and spatial characterization of turbulent structures in liquid phase using POD technique. In: UNSPECIFIED.

Munir, S. and Heikal, M.R. and Rashid, A. and Aziz, A. and Muthuvalu, M.S. and Jaafar, A. and Israr, M. (2014) Dynamical analysis of turbulent liquid phase in two-phase pipe flow. ScienceAsia, 40. pp. 63-68.

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