Dr. Muna Sabah Kassim

Dr. Muna Sabah Kassim

Assistant Professor
Al Mustansiriya University, Iraq


Highest Degree
Ph.D. in Thermo-Fluid from University of Technology, Baghdad, Iraq

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Biography

Dr. Muna Sabah Kassim is currently working as Assistant Professor at Al Mustansiriya University, Iraq. She has completed her Ph.D. in Thermo-Fluid from University of Technology, Baghdad, Iraq. Her area of expertise includes Heat Transfer, Thermodynamic, Turbomachinery, Film Cooling, Internal combustion Engin, Fluid Flow, and Acoustic. She has 4 publications in journals as author/co-author.

Area of Interest:

Physical Science Engineering
100%
Thermo-Fluid
62%
Heat Transfer
90%
Thermodynamic
75%
Nanoengineering
55%

Selected Publications

  1. Kassim, S.M., F.A. Salah and A.O. Samarmad, 2017. Experimental and numerical study of enhancement heat transfer coefficient of TiO2/water nanofluid in spiral fluted tube equipped with twisted tape. Nanosci. Nanotechnol. Asia, 7: 162-171.
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  2. Kassim, M.S. and A.F. Hussein, 2017. Experimental study of pipes shape effect on noise reduction. Wasit J. Eng. Sci., 5: 71-86.
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  3. Kassim, M.S., S.K. Radhi and A.F.H. Al-Maliki, 2016. Effect of heat on bending behavior of composite material. Int. J. Mech. Eng., 4: 44-52.
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  4. Kassim, M.S., F.A. Salah and A.O. Samarmad, 2016. Experimental and numerical study of enhancement heat transfer coefficient of TiO2/water nanofluid in spiral fluted tube equipped with twisted tape. Nanosci. Nanotechnol. Asia, Vol. 6. 10.2174/2210681206666161021105504.
    CrossRef  |  
  5. Kassim, M.S., F. Alhimdani and I. Raheem, 2016. Experimental study of heat transfer by free convection for horizontal cylinder of composite material under the effect of vibrations. Int. J. Sci. Eng. Res., 7: 417-423.
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  6. Kassim, M.S., 2016. Investigation of the performance of submerged turbine in Euphrates river. IJSRE, Vol. 4. 10.18535/ijsre%2Fv4i03.07.
    CrossRef  |  
  7. Kassim, M.S. and H.A. Noaf, 2016. The effect of impeller design on the performance of submerged turbine. Int. J. Adv. Sci. Technical Res., 3: 1-14.
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  8. Kadhim, Z.K., M.S. Kassim and A.Y.A. Hassan, 2016. Effect of (MGO) nanofluid on heat transfer characteristics for integral finned tube heat exchanger. Int. J. Mech. Eng. Technol., 7: 11-24.
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  9. Kadhim, Z.K., M.S. Kassim and A.Y.A. Hassan, 2016. CFD study for cross flow heat exchanger with integral finned tube. Int. J. Sci. Res. Public., 6: 668-677.
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  10. Kadhim, Z.K., M.S. Kassim and A.Y. Abdul Hassan, 2016. Effect of integral finned tube on heat transfer characteristics for cross flow heat exchanger. IJCA, 139: 20-25.
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  11. Kadhim, Z.K., M.S. Kassim and A.Y. Abdul Hassan, 2016. CFD study for cross flow heat exchanger with integral finned tube. Int. J. Sci. Res. Public., 6: 668-677.
    Direct Link  |  
  12. Kassim, M.S., F.A. Saleh and M.A. Kadhum, 2015. Experimental and numerical investigation of blades slots on rotating stall phenomenon in centrifugal blower. Univ. J. Eng. Sci., 3: 24-37.
    CrossRef  |  
  13. Kassim, M.S., F.A. Salah and A.O. Samarmad, 2015. Experimental and numerical study of enhancement heat transfer coefficient in spiral fluted tube heat exchanger with nanofluid. J. Eng. Dev., 6: 166-183.
  14. Kassim, M.S., F.A. Salah and A.O. Samarmad, 2015. Experimental and numerical study of enhancement heat transfer coefficient in spiral fluted tube heat exchanger with Nanofluid. J. Eng. Sustainable Dev., 19: 165-183.
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  15. Kassim, M.S., A. Saleh and M.A. Kadhum, 2015. Experimental and numerical investigation of rotating stall phenomenon in centrifugal blower at different blade number of the impeller. J. Eng. Dev., 19: 31-49.
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  16. Saleh, M.H., M.S. Kassim and A.H. Hnaef, 2014. Experimental and theoretical investigation of noise effect in centrifugal fan impeller. J. Eng., 20: 87-105.
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  17. Kassim, M.S. and S.K. Radhi, 2014. Erosion behavior of metal powder filled polyestercomposites using ANOVA analysis. J. Mech. Eng. Photon, 124: 210-217.
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  18. M.S. Kassim, E.S. Ameen and H.M. Mohammed, 2013. Effect of orifice shape and bore-area on noise attenuation in a reactive muffler. Eng. Technol. J., 31: 2014-2029.
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  19. Kassim, M.S., 2013. Investigation the effect of the reactive muffler connections on noise attenuation. AL-Qadisiya J. Eng. Sci., 6: 177-192.
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  20. AL-Hafidh, M.H. and M.S. Kassim, 2013. Magnetohydrodynamic effect on free convection of three dimensional laminar flow in porous annulus. J. Energy Power Eng., 7: 1691-1704.
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  21. Kassim, M.S., M.K. Al-Doory and E.S.M. Al-Ameen, 2012. Experimental investigation for the effect of inlet and outlet pipe lengths on noise attenuation in a muffler. J. Eng. Dev., 16: 1-15.
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