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stefania.espa@uniroma1.it
Stefania Espa
Professore Associato
Struttura:
DIPARTIMENTO DI INGEGNERIA CIVILE, EDILE E AMBIENTALE
E-mail:
stefania.espa@uniroma1.it
Pagina istituzionale corsi di laurea
Curriculum Sapienza
Pubblicazioni
Titolo
Pubblicato in
Anno
Numerical and experimental analysis of Lagrangian dispersion in two-dimensional chaotic flows
SCIENTIFIC REPORTS
2022
Vortex Analysis and Fluid Transport in Time-Dependent Flows
Vortex Dynamics. From Physical to Mathematical Aspects
2022
Eddies and waves in a rotating flow: an experimental study
Proceedings of the 39th IAHR World Congress (Granada, 2022)
2022
Eddy-wave duality in a rotating flow
PHYSICS OF FLUIDS
2020
Revealing the intensity of turbulent energy transfer in planetary atmospheres
GEOPHYSICAL RESEARCH LETTERS
2020
In-vitro simulation of the blood flow in an axisymmetric abdominal aortic aneurysm
APPLIED SCIENCES
2019
Zonal Jets in the Laboratory. Experiments with Electromagnetically Forced Flows
Zonal Jets. Phenomenology, Genesis, and Physics
2019
Turbulence, Diffusion and Mixing Barriers in Flows with Zonal Jets
Zonal Jets. Phenomenology, Genesis, and Physics
2019
Decaying grid turbulence experiments in a stratified fluid: flow measurements and statistics
STOCHASTIC ENVIRONMENTAL RESEARCH AND RISK ASSESSMENT
2018
Anisotropic Dispersion in Rotating Fluids. A Laboratory Model of Large Scale Flows
2018 IEEE International Workshop on Metrology for the Sea; Learning to Measure Sea Health Parameters
2018
Integrated strategy for in vitro characterization of a bileaflet mechanical aortic valve
BIOMEDICAL ENGINEERING ONLINE
2017
TURBOGEN: Computer-controlled vertically oscillating grid system for small-scale turbulence studies on plankton
REVIEW OF SCIENTIFIC INSTRUMENTS
2016
Anisotropic macroturbulence and diffusion associated with a westward zonal jet: From laboratory to planetary atmospheres and oceans
PHYSICAL REVIEW. E
2016
A laboratory model of the aortic root flow including the coronary arteries
EXPERIMENTS IN FLUIDS
2016
Turbulence investigation in a laboratory model of the ascending aorta
JOURNAL OF TURBULENCE
2015
3D Finite Time Lyapunov Exponents in a left ventricle laboratory model
EPJ Web of ConferencesEPJ WEB OF CONFERENCES
2015
Progetti di Ricerca
Experimental and numerical investigation of blood flow in the aorta : a tool to predict disease progression.
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