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1.
Proc Math Phys Eng Sci ; 471(2177): 20140928, 2015 May 08.
Artigo em Inglês | MEDLINE | ID: mdl-27547095

RESUMO

The interaction between a fluid and a solid surface in relative motion represents a dynamical process that is central to the problem of laminar-to-turbulent transition (and consequent drag increase) for air, sea and land vehicles, as well as long-range pipelines. This problem may in principle be alleviated via a control stimulus designed to impede the generation and growth of instabilities inherent in the flow. Here, we show that phonon motion underneath a surface may be tuned to passively generate a spatio-temporal elastic deformation profile at the surface that counters these instabilities. We theoretically demonstrate this phenomenon and the underlying mechanism of frequency-dependent destructive interference of the unstable flow waves. The converse process of flow destabilization is illustrated as well. This approach provides a condensed-matter physics treatment to fluid-structure interaction and a new paradigm for flow control.

2.
Med Eng Phys ; 33(5): 660-3, 2011 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-21242097

RESUMO

We combine linear and nonlinear signal analysis techniques to investigate the transmission of pressure signals along a one-dimensional model of fluid flow in an elastic tube. We derive a simple, generally applicable measure for the robustness of a simulated vessel against in vivo pressure fluctuations, based on quantifying the degree of synchronization between proximal and distal pressure pulses. The practical use of this measure will be in its application to simulated pulses generated in response to a stochastic forcing term mimicking biological variations of root pressure in arterial blood flow.


Assuntos
Elasticidade , Hidrodinâmica , Modelos Teóricos , Processamento de Sinais Assistido por Computador , Pressão , Processos Estocásticos
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