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Goldshmid RH and Liberzon D. Laboratory investigation of nominally two-dimensional anabatic flow on symmetric double slopes. Physics of Fluids 35, 115137. [pdf]

Dabiri JO, Howland MF, Fu MK, and Goldshmid RH. Visual anemometry for physics-informed inference of wind. Nature Reviews Physics. [pdf]


Goldshmid RH, Winiarska E, and Liberzon D. Next generation combined sonic-hotfilm anemometer: wind alignment and automated calibration procedure using deep learning. Experiments in Fluids 63, 30. [pdf]

Goldshmid RH, Dabiri JO. Physical constraints on visual anemometry using vegetation displacement statistics. [preprint]

Sun JJ, Ryou S, Goldshmid RH, Weissbourd B, Dabiri JO, Anderson DJ, Kennedy A, Yue Y, and Perona P. Self-Supervised Keypoint Discovery in Behavioral Videos. Proceedings of the IEEE/CVF Conference on Computer Vision and Pattern Recognition (CVPR), 2022, pp. 2171-2180. [pdf]


Mossa M, Goldshmid RH, Liberzon D, Negretti E, Sommeria J, Termini D, and De Serio F. Quasi-geostrophic jet-like flow with obstructions. Journal of Fluid Mechanics. Vol 921. [pdf]

De Serio F, Goldshmid RH, Liberzon D, Mossa M, Negretti E, Pisaturo GR, Righetti M, Sommeria J, Termini D, Valran T, and Viboud S. Turbulent jet through porous obstructions under Coriolis effect: an experimental investigation. Experiments in Fluids, 62, 218. [pdf]


Goldshmid RH, Liberzon D. Automated identification and characterization of turbulent bursting from single-point records of the velocity field. Measurement Science and Technology, 31(10), 105801.[pdf]

Goldshmid RH. Experimental Study of Thermally Driven Anabatic Flows. Technion-Israel Institute of Technology, Faculty of Civil and Environmental Engineering. PhD dissertation. [pdf]


Goldshmid RH, Liberzon D. Obtaining turbulence statistics of thermally driven anabatic flow by sonic-hot-films. Environmental Fluid Mechanics, 20(5), 1221-1249. [pdf]

Goldshmid RH, Bardoel SL, Hocut CM, Zhong Q, Liberzon D, Fernando HJS. Separation of Upslope Flow over a Plateau. Atmosphere, 9, 165.[pdf]


Goldshmid RH. Turbulence of anabatic (up-slope) thermally driven flow. Technion-Israel Institute of Technology, Faculty of Civil and Environmental Engineering. MSc dissertation. [pdf]