Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Large-Eddy Simulation in LSPIV techniques: the study of surface turbolence

View through CrossRef
<p>In recent years, technological advances have been observed in environmental monitoring field, leading to a rapid spread of innovative technologies overcoming many historical challenges. In river monitoring field the use of image-based techniques provides non-intrusive measurements ensuring the best safety conditions for operators. The most used optical methods are the Large-Scale Particle Image Velocimetry (LSPIV) and the Large-Scale Particle Tracking Velocimetry (LSPTV).</p><p>In LSPIV and LSPTV techniques a floating tracer is introduced on the water surface and its motion is recorded by commercial devices (e.g. digital cameras). Resulting videos are then processed by free and open source software which applies a statistical cross-correlation analysis to provide the instantaneous surface velocity field.</p><p>The aim of this work is to investigate the performance of the most widely used LSPIV software in estimating the surface velocity field taking into account the presence of turbulent structures. Indeed a typical feature of natural river is the presence of turbulent eddies which makes the tracer patterns above the water surface difficult to predict. The evaluation of tracer particle displacement is further complicated by the negative phenomenon of aggregation; it influences cross-correlation causing an incorrect estimation of the velocity vectors.</p><p>The study of the hydraulic turbulence of a natural river has been tackled from a numerical point of view. PANORMUS (Parallel Numerical Open-Source Model for Unsteady Flow Simulations) package (Napoli, 2011) has been used by adopting a LES (Large Eddy Simulation) scheme. PANORMUS is a numerical tool coded to solve the 3D momentum equations for incompressible flows (Navier-Stokes and Reynolds equations) using the Finite-Volume Method (FVM). The analyses were carried out on real cases modelled with PANORMUS-LES package. The hydraulic reconstructed domains are characterised by regular cross sections, accurately derived from real topographic survey campaigns, and low river-bed roughness (smooth concrete surface).</p><p>Synthetic sequences of tracer motion were derived from the hydraulic model and then processed by using LSPIV software.</p><p>The results of such numerical analyses have allowed an evaluation of LSPIV performance assessing the errors in terms of mean value of the surface velocity field and velocity along transverse transects.</p>
Title: Large-Eddy Simulation in LSPIV techniques: the study of surface turbolence
Description:
<p>In recent years, technological advances have been observed in environmental monitoring field, leading to a rapid spread of innovative technologies overcoming many historical challenges.
In river monitoring field the use of image-based techniques provides non-intrusive measurements ensuring the best safety conditions for operators.
The most used optical methods are the Large-Scale Particle Image Velocimetry (LSPIV) and the Large-Scale Particle Tracking Velocimetry (LSPTV).
</p><p>In LSPIV and LSPTV techniques a floating tracer is introduced on the water surface and its motion is recorded by commercial devices (e.
g.
digital cameras).
Resulting videos are then processed by free and open source software which applies a statistical cross-correlation analysis to provide the instantaneous surface velocity field.
</p><p>The aim of this work is to investigate the performance of the most widely used LSPIV software in estimating the surface velocity field taking into account the presence of turbulent structures.
Indeed a typical feature of natural river is the presence of turbulent eddies which makes the tracer patterns above the water surface difficult to predict.
The evaluation of tracer particle displacement is further complicated by the negative phenomenon of aggregation; it influences cross-correlation causing an incorrect estimation of the velocity vectors.
</p><p>The study of the hydraulic turbulence of a natural river has been tackled from a numerical point of view.
PANORMUS (Parallel Numerical Open-Source Model for Unsteady Flow Simulations) package (Napoli, 2011) has been used by adopting a LES (Large Eddy Simulation) scheme.
PANORMUS is a numerical tool coded to solve the 3D momentum equations for incompressible flows (Navier-Stokes and Reynolds equations) using the Finite-Volume Method (FVM).
The analyses were carried out on real cases modelled with PANORMUS-LES package.
The hydraulic reconstructed domains are characterised by regular cross sections, accurately derived from real topographic survey campaigns, and low river-bed roughness (smooth concrete surface).
</p><p>Synthetic sequences of tracer motion were derived from the hydraulic model and then processed by using LSPIV software.
</p><p>The results of such numerical analyses have allowed an evaluation of LSPIV performance assessing the errors in terms of mean value of the surface velocity field and velocity along transverse transects.
</p>.

Related Results

Low-cost eddy covariance: a case study of evapotranspiration over agroforestry in Germany
Low-cost eddy covariance: a case study of evapotranspiration over agroforestry in Germany
Abstract. Eddy covariance has evolved as the method of choice for measurements of the ecosystem-atmosphere exchange of water vapour, sensible heat and trace gases. Under ideal cond...
Elastic Interaction between a Mesoscale Eddy-Pair and a Cyclonic Eddy
Elastic Interaction between a Mesoscale Eddy-Pair and a Cyclonic Eddy
We investigate numerically the elastic interaction between an eddy-pair and an axisymmetrical cyclonic eddy in inviscid isochoric two-dimensional (2D), as well as in three-dimensio...
Eddy–Eddy and Eddy–Mean Flow Interactions in an Eastward Jet Flanked by Recirculation Gyres
Eddy–Eddy and Eddy–Mean Flow Interactions in an Eastward Jet Flanked by Recirculation Gyres
Abstract To examine the role of the interaction of different eddies (eddy–eddy interaction) in driving recirculation gyres, we analyzed the budget of the eddy pot...
TiFA: An Efficient and Robust LSPIV Algorithm Based on Joint Distribution Analysis
TiFA: An Efficient and Robust LSPIV Algorithm Based on Joint Distribution Analysis
The incapability of processing flow velocities under low tracer density conditions is one of the limitations of the traditional Large-Scale Particle Image Velocimetry (LSPIV). This...
Using citizens recorded videos to estimate water surface velocity and dischargefor urban flash flood monitoring
Using citizens recorded videos to estimate water surface velocity and dischargefor urban flash flood monitoring
Flash floods in Mediterranean regions pose significant threats to lives, infrastructures, and economies. Recent episodes of extreme rainfall in one such region led to devastating f...
What can we learn from eddy-induced signatures on sea surface temperature ?
What can we learn from eddy-induced signatures on sea surface temperature ?
<p>Anticyclonic (cyclonic) eddies are commonly considered to have a warm (cold) signature on the sea surface temperature (SST). However several recent studies reveale...
Modelling Spacecraft-Surface Interactions in Low-Gravity Environments for Inferring Surface Mechanical Properties
Modelling Spacecraft-Surface Interactions in Low-Gravity Environments for Inferring Surface Mechanical Properties
Interactions between spacecrafts and the surfaces of small solar-system bodies (SSB), e.g. through landing or sampling, are incredibly valuable in terms of scientific return as the...
True eddy accumulation trace gas flux measurements: proof-of-concept
True eddy accumulation trace gas flux measurements: proof-of-concept
Abstract. Micrometeorological methods to quantify fluxes of atmospheric constituents are key to understanding and managing the impact of land surface sources and sinks on air quali...

Back to Top