Neima Brauner

ORCID: 0000-0001-6721-9988
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About
Contact & Profiles
Research Areas
  • Fluid Dynamics and Mixing
  • Fluid Dynamics and Thin Films
  • Fluid Dynamics and Heat Transfer
  • Heat Transfer and Boiling Studies
  • Computational Drug Discovery Methods
  • Chemical Thermodynamics and Molecular Structure
  • Solidification and crystal growth phenomena
  • Lattice Boltzmann Simulation Studies
  • Rheology and Fluid Dynamics Studies
  • Thermal and Kinetic Analysis
  • Fluid Dynamics and Turbulent Flows
  • Reservoir Engineering and Simulation Methods
  • Fault Detection and Control Systems
  • Analytical Chemistry and Chromatography
  • Heat Transfer and Optimization
  • Enhanced Oil Recovery Techniques
  • Advanced Control Systems Optimization
  • Nanofluid Flow and Heat Transfer
  • Ultrasonics and Acoustic Wave Propagation
  • Phase Equilibria and Thermodynamics
  • Advanced Thermodynamics and Statistical Mechanics
  • Machine Learning in Materials Science
  • Advanced Statistical Methods and Models
  • Composite Material Mechanics
  • Metallurgical Processes and Thermodynamics

Tel Aviv University
2015-2024

University of Brescia
2023

Ben-Gurion University of the Negev
1999-2020

University of Chemical Technology and Metallurgy
2006-2009

Institute of Chemical Engineering
2006-2009

Bulgarian Academy of Sciences
2006-2009

Technion – Israel Institute of Technology
1987-2005

Holon Institute of Technology
1984-1989

10.1016/0301-9322(85)90004-7 article EN International Journal of Multiphase Flow 1985-01-01

10.1016/0017-9310(82)90238-1 article EN International Journal of Heat and Mass Transfer 1982-01-01

Commonly used models for predicting the flow patterns and pattern transitions are established gas-liquid flows in normal-size channels (D > 0.5′′). Those generally found to predict poorly experimental two-phase data minichannels. In this study, effect of channel diameter on mechanisms leading reexamined an attempt identify governing phenomena involved small-diameter channels. Accordingly, appropriate mechanistic suggested compared with maps available from literature. These also indicate...

10.1615/multscientechn.v19.i1.20 article EN Multiphase Science and Technology 2007-01-01

10.1016/s0301-9322(00)00056-2 article EN International Journal of Multiphase Flow 2001-05-01

10.1016/s0301-9322(02)00017-4 article EN International Journal of Multiphase Flow 2002-07-01

10.1016/0301-9322(92)90010-e article EN International Journal of Multiphase Flow 1992-01-01

10.1016/0301-9322(92)90009-6 article EN International Journal of Multiphase Flow 1992-01-01

10.1016/0009-2509(86)85209-5 article EN Chemical Engineering Science 1986-01-01

10.1016/0009-2509(83)80187-0 article EN Chemical Engineering Science 1983-01-01

Linear stability of stratified two-phase flows in horizontal channels to arbitrary wavenumber disturbances is studied. The problem reduced Orr-Sommerfeld equations for the stream function disturbances, defined each sublayer and coupled via boundary conditions that account also possible interface deformation capillary forces. Applying Chebyshev collocation method, are generalized eigenvalue problems solved by standard means numerical linear algebra entire spectrum eigenvalues associated...

10.1063/1.4944588 article EN Physics of Fluids 2016-04-01

10.1016/s0301-9322(98)00005-6 article EN International Journal of Multiphase Flow 1998-09-01

10.1016/0301-9322(91)90070-j article EN International Journal of Multiphase Flow 1991-01-01

10.1016/0301-9322(89)90050-5 article EN International Journal of Multiphase Flow 1989-07-01

Scientific evidence regarding microclimate and its effects on the risk of pressure ulcers (PU) remains sparse. It is known that elevated skin temperatures moisture may affect metabolic demand as well mechanical behaviour tissue. In this study, we incorporated these factors into a novel, 3‐dimensional multi‐physics coupled model human buttocks, which simultaneously determines biothermal biomechanical behaviours buttocks in supine lying different support surfaces. We compared 3 simulated...

10.1111/iwj.12877 article EN International Wound Journal 2017-12-17

10.1016/j.ijmultiphaseflow.2005.08.005 article EN International Journal of Multiphase Flow 2005-11-09

10.1016/j.ijmultiphaseflow.2003.11.007 article EN International Journal of Multiphase Flow 2004-01-27

10.1016/j.jlp.2006.07.002 article EN Journal of Loss Prevention in the Process Industries 2006-09-02
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