Nikkhah, V.
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1

Thermal performance of a micro heat exchanger (MHE) working..:

Nikkhah, V. ; Nakhjavani, SH.
International Journal of Industrial Chemistry.  10 (2019)  2 - p. 193-204 , 2019
 
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2

Thermal performance of a heat sink microchannel working wit..:

Sarafraz, M.M. ; Nikkhah, V. ; Nakhjavani, M..
Experimental Thermal and Fluid Science.  91 (2018)  - p. 509-519 , 2018
 
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3

Pool boiling heat transfer to zinc oxide-ethylene glycol na..:

Sarafraz, M. M. ; Pourmehran, O. ; Nikkhah, V..
Journal of Mechanical Science and Technology.  32 (2018)  5 - p. 2309-2315 , 2018
 
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5

On the convective thermal performance of a CPU cooler worki..:

Sarafraz, M.M. ; Arya, Amir ; Hormozi, F..
Applied Thermal Engineering.  112 (2017)  - p. 1373-1381 , 2017
 
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10

Thermal performance of a counter-current double pipe heat e..:

Sarafraz, M.M. ; Hormozi, F. ; Nikkhah, V.
Experimental Thermal and Fluid Science.  78 (2016)  - p. 41-49 , 2016
 
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12

Particulate fouling of CuO–water nanofluid at isothermal di..:

Nikkhah, V. ; Sarafraz, M.M. ; Hormozi, F..
Experimental Thermal and Fluid Science.  60 (2015)  - p. 83-95 , 2015
 
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13

Cooling of high heat flux flat surface with nanofluid assis..:

Arya, A ; Shahmiry, S ; Nikkhah, V.
Archive of Mechanical Engineering, 2017; 64(4):519-531.  , 2017
 
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14

Thermal Performance and Viscosity of Biologically Produced ..:

Sarafraz, M. M ; Arya, A ; Nikkhah, V.
info:eu-repo/semantics/altIdentifier/doi/10.15255/CABEQ.2015.2203.  , 2017
 
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15

Application of spherical copper oxide (II) water nano-fluid..:

Nikkhah, V ; Sarafraz, M ; Hormozi, F
Chemical and Biochemical Engineering Quarterly, 2015; 29(3):405-415.  , 2015
 
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