Litcius/Paper detail

Reflection at the free surface of the orthotropic piezo-hygro-thermo-elastic medium

Anand Kumar Yadav, M. S. Barak, Vipin Gupta

2023International Journal of Numerical Methods for Heat &amp Fluid Flow29 citationsDOI

Abstract

Purpose This paper aims to study the impact of pyro-electricity, moisture and temperature diffusivity on the energy distribution of plane waves at the free surface of an orthotropic piezo-hygro-thermo-elastic medium. Design/methodology/approach This study presents the novel creation of governing equations for an anisotropic piezothermoelastic medium with moisture impact, which is a significant contribution of this paper. Findings In addition to providing numerical data for the amplitude ratios and energy ratios of reflected waves, this study identifies five different kinds of coupled reflected plane waves, namely, quasi-longitudinal P wave, quasi-thermal wave, quasi-transverse wave, quasi-moisture wave and electric potential wave. Research limitations/implications The graphical analysis examines the impact of various factors, such as the angle of incidence, moisture and temperature diffusivity, pyro-electricity and frequency, on energy distribution. Practical implications This paper's results significantly impact the development of more efficient piezoelectric materials and their applications in geophysics. Originality/value The authors of the submitted document initiated and produced it collectively, with equal contributions from all members.

Topics & Concepts

Orthotropic materialThermal diffusivityReflection (computer programming)Materials scienceAnisotropySurface waveAmplitudeMoistureAcousticsPiezoelectricityTransverse waveThermalLongitudinal waveElectricityPlane wavePlane (geometry)MechanicsOpticsWave propagationPhysicsComposite materialComputer scienceMeteorologyThermodynamicsMathematicsElectrical engineeringGeometryEngineeringFinite element methodProgramming languageThermoelastic and Magnetoelastic PhenomenaNumerical methods in engineeringUltrasonics and Acoustic Wave Propagation
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