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- W2032564978 abstract "We present a general theory of thermoacoustic phenomena in one phase states of one-component fluids. Singular behavior is predicted in supercritical fluids near the critical point. In a one-dimensional geometry we start with linearized hydrodynamic equations taking into account the effects of heat conduction in the boundary walls and the bulk viscosity. We introduce a coefficient $Z(ensuremath{omega})$ characterizing reflection of sound with frequency $ensuremath{omega}$ at the boundary in a rigid cell. As applications, we examine acoustic eigenmodes, response to time-dependent perturbations, and sound emission and reflection. Resonance and rapid adiabatic changes are noteworthy. In these processes, the role of the thermal diffusion layers is enhanced near the critical point because of the strong critical divergence of the thermal expansion." @default.
- W2032564978 created "2016-06-24" @default.
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- W2032564978 date "2007-12-26" @default.
- W2032564978 modified "2023-09-24" @default.
- W2032564978 title "Thermoacoustic effects in supercritical fluids near the critical point: Resonance, piston effect, and acoustic emission and reflection" @default.
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- W2032564978 doi "https://doi.org/10.1103/physreve.76.061126" @default.
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