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相关论文: Theoretical aspects of microscale acoustofluidics

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We present a theoretical analysis of the acoustic radiation force on a single small particle, either a thermoviscous fluid droplet or a thermoelastic solid particle, suspended in a viscous and heat-conducting fluid medium. Our analysis…

流体动力学 · 物理学 2016-02-02 Jonas Tobias Karlsen , Henrik Bruus

We present an effective thermoviscous theory of acoustofluidics including pressure acoustics, thermoviscous boundary layers, and streaming for fluids embedded in elastic cavities. By including thermal fields, we thus extend the effective…

流体动力学 · 物理学 2021-07-30 Jonas H. Joergensen , Henrik Bruus

We present a theory for the acoustic force density acting on inhomogeneous fluids in acoustic fields on time scales that are slow compared to the acoustic oscillation period. The acoustic force density depends on gradients in the density…

流体动力学 · 物理学 2016-09-19 Jonas T. Karlsen , Per Augustsson , Henrik Bruus

We calculate the acoustic radiation force from an ultrasound wave on a compressible, spherical particle suspended in a viscous fluid. Using Prandtl--Schlichting boundary-layer theory, we include the kinematic viscosity of the solvent and…

流体动力学 · 物理学 2013-12-12 Mikkel Settnes , Henrik Bruus

A theoretical model of thermal boundary layers and acoustic heating in microscale acoustofluidic devices is presented. It includes effective boundary conditions allowing for simulations in three dimensions. The model is extended by an…

流体动力学 · 物理学 2021-12-21 Jonas Helboe Joergensen , Henrik Bruus

We derive general analytical expressions for the time-averaged acoustic radiation force on a small spherical particle suspended in a fluid and located in an axisymmetric incident acoustic wave. We treat the cases of the particle being…

流体动力学 · 物理学 2025-10-30 Bjørn G. Winckelmann , Henrik Bruus

Analytical expressions are derived for the time-averaged, quasi-steady, acoustic radiation force on a heated, spherical, elastic, solid microparticle suspended in a fluid and located in an axisymmetric incident acoustic wave. The heating is…

流体动力学 · 物理学 2025-10-30 Henrik Bruus , Bjørn G. Winckelmann

Sound can exert forces on objects of any material and shape. This has made the contactless manipulation of objects by intense ultrasound a fascinating area of research with wide-ranging applications. While much is understood for acoustic…

软凝聚态物质 · 物理学 2024-01-17 Melody X. Lim , Bryan VanSaders , Heinrich M. Jaeger

The acoustofluidic method holds great promise for manipulating microorganisms. When exposed to the steady vortex structures of acoustic streaming flow, these microorganisms exhibit intriguing dynamic behaviors, such as hydrodynamic trapping…

流体动力学 · 物理学 2025-04-25 Xuyang Sun , Wenchang Tan , Yi Man

We study some asymptotic properties of solutions for the acoustic coupled systems in thermoviscous fluids which was proposed by [Karlsen-Bruus, \emph{Phys. Rev. E} (2015)]. Basing on the WKB analysis and the Fourier analysis, we derive…

偏微分方程分析 · 数学 2023-08-16 Wenhui Chen , Yan Liu , Mengjun Ma , Xulong Qin

We demonstrate theoretically that acoustic forces acting on inhomogeneous fluids can be used to pattern and manipulate solute concentration fields into spatio-temporally controllable configurations stabilized against gravity. A theoretical…

流体动力学 · 物理学 2017-03-29 Jonas T. Karlsen , Henrik Bruus

We present a semi-analytical theory for the acoustic fields and particle-trapping forces in a viscous fluid inside a capillary tube with arbitrary cross section and ultrasound actuation at the walls. We find that the acoustic fields vary…

流体动力学 · 物理学 2020-02-26 Jacob S. Bach , Henrik Bruus

The interaction acoustic radiation force in a standing plane wave applied to each small solid sphere in a two-particle system immersed in a viscoelastic fluid is studied in a framework based on perturbation theory. In this work, the first-…

流体动力学 · 物理学 2023-03-29 Fateme Eslami , Hossein Hamzehpour , Sanaz Derikvandi , S. Amir Bahrani

Acoustic microstreaming has several industrial, therapeutic, and biomedical applications - Acoustic cleaning, micromixing, microfluid transport, hemolysis, sonoporation. The acoustic microstreaming due to the oscillation of ultrasound…

流体动力学 · 物理学 2022-01-19 Nima Mobadersany

Acoustic handling of nanoparticles in resonating acoustofluidic devices is often impeded by the presence of acoustic streaming. For micrometer-sized acoustic chambers, this acoustic streaming is typically driven from the fluid-solid…

流体动力学 · 物理学 2021-07-30 Bjørn G. Winckelmann , Henrik Bruus

Starting from the linear flow of homogeneous fluid, five modes are defined as eigenvectors of the basic system of conservation laws. Quasi-plane geometry is considered. Projectors that separate overall perturbation of the fluid into…

流体动力学 · 物理学 2016-09-08 Anna Perelomova

Recently, the phenomena of streaming suppression and relocation of inhomogeneous miscible fluids under acoustic fields were explained using the hypothesis on mean Eulerian pressure. In this letter, we show that this hypothesis is unsound…

流体动力学 · 物理学 2022-04-27 Varun Kumar Rajendran , Sujith Jayakumar , Mohammed Azharudeen , Karthick Subramani

We show that full-image micro-PIV analysis in combination with images of transient particle motion is a powerful tool for experimental studies of acoustic radiation forces and acoustic streaming in microfluidic chambers under…

流体动力学 · 物理学 2012-01-31 S. Melker Sundin , Thomas Glasdam Jensen , Henrik Bruus , Jorg P. Kutter

The efficient mixing of fluid samples in miniaturized total analysis systems is essential for numerous applications including biological screening assays, chemical extraction, polymerization, cell analysis, and protein folding. Miniaturized…

流体动力学 · 物理学 2022-10-25 S. A. Iqrar , J. Park , M. Afzal , H. J. Sung

We present a numerical study of thermoviscous effects on the acoustic streaming flow generated by an ultrasound standing-wave resonance in a long straight microfluidic channel containing a Newtonian fluid. These effects enter primarily…

流体动力学 · 物理学 2016-02-02 Peter Barkholt Muller , Henrik Bruus
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