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Julio Soria

Researcher at Monash University

Publications -  427
Citations -  9562

Julio Soria is an academic researcher from Monash University. The author has contributed to research in topics: Particle image velocimetry & Reynolds number. The author has an hindex of 49, co-authored 416 publications receiving 8310 citations. Previous affiliations of Julio Soria include Monash University, Clayton campus & King Abdulaziz University.

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Local topology via the invariants of the velocity gradient tensor within vortex clusters and intense Reynolds stress structures in turbulent channel flow

TL;DR: In this article, the authors extracted information regarding the scales, kinematics and dynamics of wall-attached and wall-detached structures within the topological framework of the invariants of the velocity gradient tensor.
Posted ContentDOI

Flagellar energetics from high-resolution imaging of beating patterns in tethered mouse sperm

TL;DR: Measurements of flagellar energetics indicate that the ion-channel regulating cysteine-rich secretory proteins (CRISPs) may also be involved in regulating mammalian sperm motility.
Journal ArticleDOI

A novel 4D digital holographic PIV/PTV (4D-DHPIV/PTV) methodology using iterative predictive inverse reconstruction

TL;DR: An in-line 4D-DHPIV/PTV methodology, which in addition to including the standard digital hologram reconstruction, incorporates advanced digital ltering to remove the virtual image effect, 3-dimensional volume deconvolution to reduce the depth-of-focus problem and thevirtual image, followed by an efficient one-pass3-dimensional clustering algorithm coupled with a predictive inverse reconstruction approach.

Velocity and scalar measurement of low swirl jet

TL;DR: In this paper, the velocity and scalar measurements of low swirl intensity jets in air were obtained using Multi-grid Cross-Correlation Digital Particle Image Velocimetry.
Journal Article

Megahertz Schlieren Imaging of Shock Structure and Sound Waves in Under-Expanded, Impinging Jets

TL;DR: In this article, the temporal evolution of shock structures and sound waves in and around an underexpanded jet that is impinging on a rigid surface at varying pressure ratios is described.