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Navid Borhani
Navid Borhani
Research Scientist, Optics Laboratory, EPFL, Switzerland.
Verified email at epfl.ch
Title
Cited by
Cited by
Year
Learning to see through multimode fibers
N Borhani, E Kakkava, C Moser, D Psaltis
Optica 5 (8), 960-966, 2018
3632018
Two-phase heat transfer and high-speed visualization of refrigerant flows in 100× 100 μm 2 silicon multi-microchannels
S Szczukiewicz, N Borhani, JR Thome
International Journal of Refrigeration 36 (2), 402-413, 2013
852013
Two-phase flow operational maps for multi-microchannel evaporators
S Szczukiewicz, N Borhani, JR Thome
International Journal of Heat and Fluid Flow 42, 176-189, 2013
832013
Experimental investigation on flow boiling pressure drop and heat transfer of R1233zd (E) in a multi-microchannel evaporator
H Huang, N Borhani, JR Thome
International Journal of Heat and Mass Transfer 98, 596-610, 2016
812016
Fine-resolution two-phase flow heat transfer coefficient measurements of refrigerants in multi-microchannel evaporators
S Szczukiewicz, N Borhani, JR Thome
International Journal of Heat and Mass Transfer 67, 913-929, 2013
672013
Understanding the self-sustained oscillating two-phase flow motion in a closed loop pulsating heat pipe
G Spinato, N Borhani, JR Thome
Energy 90, 889-899, 2015
632015
A novel time strip flow visualisation technique for investigation of intermittent dewetting and dryout in elongated bubble flow in a microchannel evaporator
N Borhani, B Agostini, JR Thome
International Journal of Heat and Mass Transfer 53 (21-22), 4809-4818, 2010
622010
Controlling spatiotemporal nonlinearities in multimode fibers with deep neural networks
U Teğin, B Rahmani, E Kakkava, N Borhani, C Moser, D Psaltis
Apl Photonics 5 (3), 2020
612020
Actor neural networks for the robust control of partially measured nonlinear systems showcased for image propagation through diffuse media
B Rahmani, D Loterie, E Kakkava, N Borhani, U Teğin, D Psaltis, C Moser
Nature Machine Intelligence 2 (7), 403-410, 2020
592020
Imaging through multimode fibers using deep learning: The effects of intensity versus holographic recording of the speckle pattern
E Kakkava, B Rahmani, N Borhani, U Teğin, D Loterie, G Konstantinou, ...
Optical Fiber Technology 52, 101985, 2019
592019
Operational regimes in a closed loop pulsating heat pipe
G Spinato, N Borhani, JR Thome
International Journal of Thermal Sciences 102, 78-88, 2016
592016
Time-strip visualization and thermo-hydrodynamics in a Closed Loop Pulsating Heat Pipe
G Spinato, N Borhani, BP d'Entremont, JR Thome
Applied Thermal Engineering 78, 364-372, 2015
562015
3D ALE finite-element method for two-phase flows with phase change
G Anjos, N Mangiavacchi, N Borhani, JR Thome
Heat Transfer Engineering 35 (5), 537-547, 2014
562014
Learning from droplet flows in microfluidic channels using deep neural networks
P Hadikhani, N Borhani, SMH Hashemi, D Psaltis
Scientific Reports 9 (1), 8114, 2019
522019
Digital staining through the application of deep neural networks to multi-modal multi-photon microscopy
N Borhani, AJ Bower, SA Boppart, D Psaltis
Biomedical Optics Express 10 (3), 1339-1350, 2019
492019
Dynamics of isolated confined air bubbles in liquid flows through circular microchannels: an experimental and numerical study
S Khodaparast, M Magnini, N Borhani, JR Thome
Microfluidics and Nanofluidics 19, 209-234, 2015
482015
Two-phase operational maps, pressure drop, and heat transfer for flow boiling of R236fa in a micro-pin fin evaporator
C Falsetti, H Jafarpoorchekab, M Magnini, N Borhani, JR Thome
International Journal of Heat and Mass Transfer 107, 805-819, 2017
462017
A 3D moving mesh Finite Element Method for two-phase flows
GR Anjos, N Borhani, N Mangiavacchi, JR Thome
Journal of Computational Physics 270, 366-377, 2014
432014
Application of micro particle shadow velocimetry μPSV to two-phase flows in microchannels
S Khodaparast, N Borhani, JR Thome
International Journal of Multiphase Flow 62, 123-133, 2014
422014
A micro particle shadow velocimetry (μPSV) technique to measure flows in microchannels
S Khodaparast, N Borhani, G Tagliabue, JR Thome
Experiments in fluids 54 (2), 1474, 2013
402013
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