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The lattice Boltzmann method with enhanced collisions and rest particles is used to calculate the flow in a two-dimensional lid-driven cavity. The abilitity of this method to compute the velocity and the pressure of an incompressible fluid…

comp-gas · 物理学 2009-10-22 W. Miller

We present new experimental results on the development of turbulent spots in channel flow. The internal structure of a turbulent spot is measured, with Time Resolved Stereoscopic Particle Image Velocimetry. We report the observation of…

流体动力学 · 物理学 2013-11-20 Grégoire Lemoult , Konrad Gumowski , Jean-Luc Aider , José Eduardo Wesfreid

We investigate the vortical dynamics generated during the forced exit of a circular cylinder through a quiescent free surface. While previous work on exit flows has largely emphasized cavity collapse and force generation, the formation and…

流体动力学 · 物理学 2025-09-10 Intesaaf Ashraf , Stephane Dorbolo

The oscillatory flows present in an inkjet printhead can lead to strong deformations of the air-liquid interface at the nozzle exit. Such deformations may lead to an inward directed air jet with bubble pinch-off and the subsequent…

流体动力学 · 物理学 2022-08-09 Maaike Rump , Youssef Saade , Uddalok Sen , Kamel Fezzaa , Michel Versluis , Detlef Lohse , Tim Segers

In modern transport systems, passengers' comfort is greatly influenced by flow-induced noise. In this study we investigate a generic deep cavity with an overhanging lip, mimicking a door gap in a vehicle, that is overflowed by air at two…

流体动力学 · 物理学 2020-06-08 Stefan Schoder , Ivan Lazarov , Manfred Kaltenbacher

The present investigation shows that a triad of three vortices, two co-rotating vortices (TCV) and a secondary vortex lies beneath them and counter-rotating with them, is behind the quasi-periodic self-sustained bursting and reformation of…

流体动力学 · 物理学 2018-07-24 Eltayeb ElJack , Julio Soria

A two-dimensional computational fluid dynamics model is used to predict the oscillatory flow through a tapered cylindrical tube section (jet pump) placed in a larger outer tube. Due to the shape of the jet pump, there will exist an…

流体动力学 · 物理学 2015-07-17 Joris P. Oosterhuis , Simon Bühler , Douglas Wilcox , Theo van der Meer

We present experimental observations of the velocity and spatial distribution of inertial particles dispersed in the turbulent downward flow through a vertical channel at $Re_{\tau} = 235$ and $335$. The working fluid is air laden with…

流体动力学 · 物理学 2019-04-16 Kee Onn Fong , Omid Amili , Filippo Coletti

An inverse turbulent cascade in a periodic square box produces a coherent system-sized vortex dipole. We study the statistics of its motion by carrying out direct numerical simulations performed for various bottom friction $\alpha$, pumping…

流体动力学 · 物理学 2024-01-25 Vladimir Parfenyev

Cavitation is a general phenomenon of the fluid flows with obstacles. It appears in the cooling conduits of the fast nuclear engines. A model of this phenomenon using the theory of Laplace and a common non-convex energy for the liquid and…

经典物理 · 物理学 2008-08-01 Henri Gouin , Laurent Espanet

Accretion flows are fundamentally turbulent systems, yet are classically modelled with viscous theories only valid on length scales significantly greater than the typical size of turbulent eddies in the flow. We demonstrate that, while this…

高能天体物理现象 · 物理学 2024-02-09 Andrew Mummery , Francesco Mori , Steven Balbus

We report on the shape taken by the interface of a liquid bath when hit by a smooth oblique steady jet. When the angle between the jet and the bath decreases below $50^\circ$, a cavity is formed in front of the jet. In the inertial regime…

流体动力学 · 物理学 2026-04-15 Theophile Gaichies , Anniina Salonen , Arnaud Antkowiak , Emmanuelle Rio

We present results of large eddy simulations of a cavitating nozzle flow and injection into gas, investigating the interactions of cavitation in the nozzle, primary jet breakup, mass-flow rates, and gas entrainment. During strong…

流体动力学 · 物理学 2021-03-02 Theresa Trummler , Daniel Rahn , Steffen J. Schmidt , Nikolaus A. Adams

MFC is an open-source tool for solving multi-component, multi-phase, and bubbly compressible flows. It is capable of efficiently solving a wide range of flows, including droplet atomization, shock-bubble interaction, and gas bubble…

Microfluidic technologies are commonly used for the manipulation of red blood cell (RBC) suspensions and analyses of flow-mediated biomechanics. To enhance the performance of microfluidic devices, understanding the dynamics of the…

The transitional regime of plane channel flow is investigated {above} the transitional point below which turbulence is not sustained, using direct numerical simulation in large domains. Statistics of laminar-turbulent spatio-temporal…

流体动力学 · 物理学 2020-09-16 Pavan V. Kashyap , Yohann Duguet , Olivier Dauchot

We report experimental observations obtained by particule image velocimetry (PIV) of the behavior of a flow driven by rotation and precession of a cylindrical container. Various hydrodynamical regimes are identified according to the value…

流体动力学 · 物理学 2014-07-18 W. Mouhali , T. Lehner , J. Léorat , R. Vitry

This paper presents a method to stabilise oscillations occurring in a mixed convective flow in a nearly hemispherical cavity, using actuation based on the receptivity map of the unstable mode. This configuration models the continuous…

流体动力学 · 物理学 2025-06-18 Abhishek Kumar , Alban Pothérat

Using experiments and numerical simulations, we demonstrate that the curvature of microscale conduits allow programming of liquid crystal (LC) flows. Focusing on a nematic LC flowing through U- and L-shaped channels of rectangular…

软凝聚态物质 · 物理学 2023-11-07 Kamil Fedorowicz , Robert Prosser , Anupam Sengupta

Differentially rotating flows of unmagnetized, highly conducting plasmas have been created in the Plasma Couette Experiment. Previously, hot-cathodes have been used to control plasma rotation by a stirring technique [C. Collins et al.,…

等离子体物理 · 物理学 2015-06-19 C. Collins , M. Clark , C. M. Cooper , K. Flanagan , I. V. Khalzov , M. D. Nornberg , B. Seidlitz , J. Wallace , C. B. Forest