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Majid Siavashi |
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Full Name: Dr. Siavashi, Majid
Position: Associat Professor
Phone: +98 21 77240540-50 Ex: 2910
Direct Landline: +98 21 77240391
Fax: +98 21 77240488
Email: msiavashi@iust.ac.ir
Webpage: Google scholar, Researchgate
Address: Iran University of Science & Technology, Tehran, IRAN
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Research Interests
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High speed numerical methods in reservoir simulation
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Enhanced oil recovery using the streamline-based reservoir simulation technique
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Multiphase flow in porous media
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Optimization of thermal systems
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Inverse heat transfer methods
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Honor & Awards
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Ranked 2nd in the 20th international Khwarizmi festival
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Outstanding student (B.Sc. University of Tehran, Iran)
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PhD scholarship (Iran Ministry of Science and Technology)
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Design and manufacture of the first solar car ( Persian Gazelle) in the middle east
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Invitated to collaborate to design and build a new hybrid - solar, biofuel and human powered- car at the MIT (the MIT vehicle design summit)
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Journal Papers
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- Siavashi, M., Yousofvand, R., Rezanejad, S. (2018) "Nanofluid and porous fins effect on natural convection and entropy generation of flow inside a cavity". Advanced Powder Technology, Manuscript Accepted.
- Yaghoubi Emami, R., Siavashi, M., Shahriari, G.R. (2018) "The effect of inclination angle and hot wall configuration on Cu-water nanofluid natural convection inside a porous square cavity". Advanced Powder Technology, Manuscript Accepted.
- Siavashi, M., Garusi, H., Derakhshan, Sh. (2018) "Numerical simulation and optimization of steam-assisted gravity drainage with temperature, rate and well distance control using an efficient hybrid optimization technique". Numerical Heat Transfer, Part A: Applications, Manuscript Accepted.
- Doranehgard, M.H., Siavashi, M. (2017) "The effect of temperature dependent relative permeability on heavy oil recovery during hot water injection process using streamline-based simulation". Applied Thermal Engineering, Manuscript Accepted.
- Siavashi, M., Rostami, A. (2017) "Two-phase simulation of non-Newtonian nanofluid natural convection in a circular annulus partially or completely filled with porous media". International Journal of Mechanical Sciences, 133: pp. 689-703. (the free access link is available up to 18 Nov. 2017)
- Yousofvand, R., Derakhshan, Sh., Ghasemi, K., Siavashi, M. (2017) "MHD transverse mixed convection and entropy generation study of electromagnetic pump including a nanofluid using 3D LBM simulation". International Journal of Mechanical Sciences, 133: pp. 73-90.
- Ghasemi, K., Siavashi, M. (2017) "MHD nanofluid free convection and entropy generation in porous enclosures with different conductivity ratios". Journal of Magnetism and Magnetic Materials, 442: pp. 474-490.
- Siavashi, M., Jamali, M. (2017) "Optimal selection of the annulus radius ratio to enhance heat transfer with minimum entropy generation in developing laminar forced convection of water-Al2O3 nanofluid flow". Journal of Central South University, 24(8): pp. 1850-1865.
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Siavashi, M., Jamali, M. (2016) "Optimal selection of the annulus radius ratio to enhance heat transfer with minimum entropy generation in developing laminar forced convection of water-Al2O3 nanofluid flow". Journal of Central South University, Manuscript Accepted.
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Kowsary, F., Siavashi, M. (2009) "Estimation of location and size of flaws in a two-dimentional body using IHCP methods", ISME Journal, 11(2): pp. 45-63 (in Persian).
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Conference Proceedings
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Doranehgard, M.H., Siavashi, M., Ahmadpour, M. "Numerical simulation of two-phase flow in fractured heterogeneous reservoirs using streamline simulation method and comparing the results with IMPES method". Proceeding of the 4th International Conference on Electrical, Computer, Mechanical and Mechatronics Engineering (ICE2016), 2016, Dubai, UAE.
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Nakhaei, A., Tehrani, M. R., Siavashi, M. "Optimal well placement using time-of-flight parameter in streamline simulation", Proceeding of the 15th Iranian national congress of chemical engineering (ICHEC 2015), 2015, Tehran, Iran (In Persian).
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Courses Taught
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- Fluid mechanics I
- Fluid mechanics II
- Advanced Engineering Mathematics I
- Advanced Engineering Mathematics II
- Transport phenomena in porous media
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