This paper describes the application of image-based technique for mapping surface velocity of hyper-concentrated flows. The analysis is conducted with the aid of data collected in a scale laboratory flume constructed at the Hydraulic laboratory of the Department of Civil, Environmental, Aerospatial and of Mate-rials Engineering (DICAM) – University of Palermo (Italy). A fully digital images-based technique has been applied to record a large amount of high resolution images identifying simultaneously the position of points in different time instants. The sensitivity analysis of the estimated flow velocity with the acquisition conditions and the number of processed frames is performed

Termini D, Di Leonardo A (2016). Digital image-based technique for monitoring surface velocity: sensitivity analysis with processing parameters using data of a study case. In Proceedings of the International Conference on Fluvial Hydraulics, River Flow 2016 (pp. 379-386).

Digital image-based technique for monitoring surface velocity: sensitivity analysis with processing parameters using data of a study case

TERMINI, Donatella;Di Leonardo, Alice
2016-01-01

Abstract

This paper describes the application of image-based technique for mapping surface velocity of hyper-concentrated flows. The analysis is conducted with the aid of data collected in a scale laboratory flume constructed at the Hydraulic laboratory of the Department of Civil, Environmental, Aerospatial and of Mate-rials Engineering (DICAM) – University of Palermo (Italy). A fully digital images-based technique has been applied to record a large amount of high resolution images identifying simultaneously the position of points in different time instants. The sensitivity analysis of the estimated flow velocity with the acquisition conditions and the number of processed frames is performed
2016
978-113802913-2
Termini D, Di Leonardo A (2016). Digital image-based technique for monitoring surface velocity: sensitivity analysis with processing parameters using data of a study case. In Proceedings of the International Conference on Fluvial Hydraulics, River Flow 2016 (pp. 379-386).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/207554
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