Mathematical and Computer Modeling of Piezoelectric Generator for Energy Harvesting Devices

The paper deals with modeling a Piezoelectric Generator (PEG) that includes piezoactive elements, inertial mass, plate and rack. The PEG under consideration can be an element of the energy storage device in the capacity of the source of energy provided from vibrations of elements of structures and m...

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Main Authors: A. N. Soloviev, D. A. Ermakov
Format: Article
Language:Russian
Published: MGTU im. N.È. Baumana 2019-05-01
Series:Matematika i Matematičeskoe Modelirovanie
Subjects:
Online Access:https://www.mathmelpub.ru/jour/article/view/176
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author A. N. Soloviev
D. A. Ermakov
author_facet A. N. Soloviev
D. A. Ermakov
author_sort A. N. Soloviev
collection DOAJ
description The paper deals with modeling a Piezoelectric Generator (PEG) that includes piezoactive elements, inertial mass, plate and rack. The PEG under consideration can be an element of the energy storage device in the capacity of the source of energy provided from vibrations of elements of structures and machines.The main objective of the paper is to gain the PEG efficiency by finding the optimal geometric parameters for finding the highest output potential.The elastic and piezoceramic media are modeled within the framework of the linear theory of electroelasticity. As a research tool, CAE package ACELAN is used in which three-dimensional and axisymmetric device models are built. The numerical experiments performed a modal and harmonic analysis that enabled us to identify the most effective operating frequencies.
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spelling doaj.art-dcdd1eb8166146838a0b36eb924151f12022-12-22T01:48:00ZrusMGTU im. N.È. BaumanaMatematika i Matematičeskoe Modelirovanie2412-59112019-05-010111410.24108/mathm.0119.0000176116Mathematical and Computer Modeling of Piezoelectric Generator for Energy Harvesting DevicesA. N. Soloviev0D. A. Ermakov1Don State Technical University, Rostov-on-DonDon State Technical University, Rostov-on-DonThe paper deals with modeling a Piezoelectric Generator (PEG) that includes piezoactive elements, inertial mass, plate and rack. The PEG under consideration can be an element of the energy storage device in the capacity of the source of energy provided from vibrations of elements of structures and machines.The main objective of the paper is to gain the PEG efficiency by finding the optimal geometric parameters for finding the highest output potential.The elastic and piezoceramic media are modeled within the framework of the linear theory of electroelasticity. As a research tool, CAE package ACELAN is used in which three-dimensional and axisymmetric device models are built. The numerical experiments performed a modal and harmonic analysis that enabled us to identify the most effective operating frequencies.https://www.mathmelpub.ru/jour/article/view/176piezoelectricityultrasonic devicesfinite element method
spellingShingle A. N. Soloviev
D. A. Ermakov
Mathematical and Computer Modeling of Piezoelectric Generator for Energy Harvesting Devices
Matematika i Matematičeskoe Modelirovanie
piezoelectricity
ultrasonic devices
finite element method
title Mathematical and Computer Modeling of Piezoelectric Generator for Energy Harvesting Devices
title_full Mathematical and Computer Modeling of Piezoelectric Generator for Energy Harvesting Devices
title_fullStr Mathematical and Computer Modeling of Piezoelectric Generator for Energy Harvesting Devices
title_full_unstemmed Mathematical and Computer Modeling of Piezoelectric Generator for Energy Harvesting Devices
title_short Mathematical and Computer Modeling of Piezoelectric Generator for Energy Harvesting Devices
title_sort mathematical and computer modeling of piezoelectric generator for energy harvesting devices
topic piezoelectricity
ultrasonic devices
finite element method
url https://www.mathmelpub.ru/jour/article/view/176
work_keys_str_mv AT ansoloviev mathematicalandcomputermodelingofpiezoelectricgeneratorforenergyharvestingdevices
AT daermakov mathematicalandcomputermodelingofpiezoelectricgeneratorforenergyharvestingdevices