Items where Author is "Afrooz, I.E."
Article
Afrooz, I.E. and Rostami, A. and Mustaffa, Z. and Gebretsadik, H.T. (2024) Synergistic effects of electric and magnetic nanoparticles with electromagnetic energy in enhanced oil recovery. Alexandria Engineering Journal, 98. pp. 177-186.
Afrooz, I.E. and Chuan Ching, D.L. (2019) Effect of novel swirl distributor plate on hydrodynamics of fluidized bed gasifier. International Journal of Engineering, Transactions A: Basics, 32 (10). pp. 1358-1365. ISSN 17281431
Afrooz, I.E. and Ching, D.L.C. (2019) A Modified Model for Kinetic Analysis of Petroleum Coke. International Journal of Chemical Engineering, 2019. ISSN 1687806X
Afrooz, I.E. and Sinnathambi, C.M. and Chuang, D.L. and Karuppanan, S. (2017) CFD simulation of bubbling fluidized bed: Effects of bed column geometry on hydrodynamics of gas�solid mixing: Numerische Strömungssimulation einer blasenbildenden Wirbelschicht: Einfluss der Reaktorgeometrie auf die hydrodynamischen Eigenschaften einer Gas-Feststoff Mischung. Materialwissenschaft und Werkstofftechnik, 48 (3). pp. 226-234. ISSN 09335137
Afrooz, I.E. and Sinnathambi, C.M. and Karuppanan, S. and Ching, D.L.C. (2016) CFD simulation of bubbling fluidized bed: Effect of distributor plate orifice pattern configuration on hydrodynamics of gas-solid mixing. ARPN Journal of Engineering and Applied Sciences, 11 (20). pp. 11954-11959. ISSN 18196608
Afrooz, I.E. and �chsner, A. (2015) Effect of the carbon nanotube distribution on the thermal conductivity of composite materials. Journal of Heat Transfer, 137 (3). ISSN 00221481
Conference or Workshop Item
Ching, D.L.C. and Afrooz, I.E. (2021) CFD Simulation of Petcoke Gasification in an Updraft Gasifier. In: UNSPECIFIED.
Afrooz, I.E. and Ling Chuan Ching, D. (2019) Eulerian-Lagrangian Approach Evaluation for Numerically Prediction of Fluidized Bed Hydrodynamics. In: UNSPECIFIED.
Muhsan, A.S. and Ahmad, F. and Mohamed, N.M. and Yusoff, P.S.M.M. and Raza, M.R. and Afrooz, I.E. (2014) Experimental preparation and numerical simulation of high thermal conductive Cu/CNTs Nanocomposites. In: UNSPECIFIED.