arrow
Return

Stiffness matrix method for modelling wave propagation in arbitrary multilayers

delete2023-09-01
delete3
delete
OA
AI
M
Ming Huang
F
Frederic Cegla
蓝
蓝波 (Bo Lan) *
DOI:10.1016/j.ijengsci.2023.103888delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
Natural and engineered media usually involve combinations of solid, fluid and porous layers, and accurate and stable modelling of wave propagation in such complex multilayered media is fundamental to evaluating their properties with wave-based methods. Here we present a general stiffness matrix method for modelling waves in arbitrary multilayers. The method first formulates stiffness matrices for individual layers based on the governing wave equations for fluids and solids, and the Biot theory for porous materials. Then it utilises the boundary conditions considered at layer interfaces to assemble the layer matrices into a global system of equations, to obtain solutions for reflection and transmission coefficients at any incidence. Its advantage over existing methods is manifested by its unconditional computational stability, and its validity is proved by experimental validations on single solid sheets, porous layers, and porous-solid-porous battery electrodes. This establishes a powerful theoretical platform that allows us to develop advanced wave-based methods to quantitatively characterise properties of the layers, especially for layers of porous materials.
Keywords:
Multilayered medium
Wave modelling
Stiffness matrix
Porous material
Biot theory
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

International Journal of Engineering Science cover
International Journal of Engineering Science
IF:
5.7
Papers:
4.9K
Citations:
1.1W

Organization

I
Imperial College London
Scholars:
8.3W
Papers: 7.3W
Citations: 11.1W
Cited Papers

Cited Papers

An AC Impedance Spectroscopic Study of LixCoO2 at Different Temperatures
err2002-03-22
err0
PREAI
errF. Nobili; R. Tossici; R. Marassi; F. Croce; B. Scrosati
errShare
errSave
Probing lithium-ion batteries' state-of-charge using ultrasonic transmission - Concept and laboratory testing
err2017-03-01
err159
PREAI
errGold, Lukas; Bach, Tobias; Virsik, Wolfgang; Schmitt, Angelika; Mueller, Jana; Staab, Torsten E. M.; Sextl, Gerhard
errShare
errSave
Dynamic modeling and control of a plate heat exchanger
err2017-11-01
err0
PREAI
errHector Bastida; Carlos E. Ugalde-Loo; Muditha Abeysekera; Meysam Qadrdan
errShare
errSave
Thermal Storage Technologies for Space Cooling and Heating
err2018-06-30
err0
PREAI
errBehzad Rismanchi; Sheikh Khaleduzzaman Shah; Tshewang Lhendup; Lu Aye
errShare
errSave
researcher View more