Experimental fluid mechanics and turbulence
Lagrangian particle tracking, turbulence
Physiological fluid dynamics
Bio-inspired fluid flow sensors and devices
Turbulent flows with particles, polymers, and additives
![Prof. Alexander[Alex] Liberzon Prof. Alexander[Alex] Liberzon](https://en-materials.tau.ac.il/sites/engineering-english.tau.ac.il/files/styles/research_teaser_image_180_x_180/public/1600966016829.jpeg?itok=scZyASfe)
Experimental fluid mechanics and turbulence
Lagrangian particle tracking, turbulence
Physiological fluid dynamics
Bio-inspired fluid flow sensors and devices
Turbulent flows with particles, polymers, and additives
Experimental fluid mechanics and heat transfer with major focus on turbulence and minimally intrusive experimental methods: particle image velocimetry, three-dimensional particle tracking velocimetry (Lagrangian), Infrared thermography and micro-electro-mechanical-system sensors for fluid mechanics and rheology measurements. The fluid mechanics and heat transfer applications are from a broad range of fields, such as clouds and stratified turbulent/non-turbulent interfaces, biomedical applications, dilute polymer solutions and electrorheological fluids and interaction of biology and turbulence.