Performance of a traveling wave thermoacoustic-piezoelectric energy harvester: An electrical circuit analogy approach. (July 2014)
- Record Type:
- Journal Article
- Title:
- Performance of a traveling wave thermoacoustic-piezoelectric energy harvester: An electrical circuit analogy approach. (July 2014)
- Main Title:
- Performance of a traveling wave thermoacoustic-piezoelectric energy harvester: An electrical circuit analogy approach
- Authors:
- Roshwalb, Andrew
Nouh, Mostafa
Aldraihem, Osama
Baz, Amr - Abstract:
- The performance of a traveling wave thermoacoustic-piezoelectric energy harvester is developed using an electrical circuit analogy approach. The harvester converts thermal energy, such as solar or waste heat energy, directly into electrical energy without the need for any moving components. The input thermal energy generates a steep temperature gradient along a porous regenerator. At a critical threshold of the temperature gradient, self-sustained acoustic waves are developed inside an acoustic resonator. The associated pressure fluctuations impinge on a piezoelectric diaphragm, placed at the end of the resonator. The resulting interaction is accompanied by a direct conversion of the acoustic energy into electrical energy. The acoustic pressure oscillations are amplified by a specially designed acoustic feedback loop that introduces appropriate phasing to make the pulsations take the form of traveling waves. Such traveling waves render the harvester to be inherently reversible and thus highly efficient. The behavior of this class of harvesters is modeled using an electrical circuit analogy approach. The developed model is a multifield model that combines the descriptions of the acoustic resonator, feedback loop, and the regenerator with the characteristics of the piezoelectric diaphragm. The onset of self-sustained oscillations of the harvester is predicted using the root locus method. The predictions are validated against published results. The developed electrical analogThe performance of a traveling wave thermoacoustic-piezoelectric energy harvester is developed using an electrical circuit analogy approach. The harvester converts thermal energy, such as solar or waste heat energy, directly into electrical energy without the need for any moving components. The input thermal energy generates a steep temperature gradient along a porous regenerator. At a critical threshold of the temperature gradient, self-sustained acoustic waves are developed inside an acoustic resonator. The associated pressure fluctuations impinge on a piezoelectric diaphragm, placed at the end of the resonator. The resulting interaction is accompanied by a direct conversion of the acoustic energy into electrical energy. The acoustic pressure oscillations are amplified by a specially designed acoustic feedback loop that introduces appropriate phasing to make the pulsations take the form of traveling waves. Such traveling waves render the harvester to be inherently reversible and thus highly efficient. The behavior of this class of harvesters is modeled using an electrical circuit analogy approach. The developed model is a multifield model that combines the descriptions of the acoustic resonator, feedback loop, and the regenerator with the characteristics of the piezoelectric diaphragm. The onset of self-sustained oscillations of the harvester is predicted using the root locus method. The predictions are validated against published results. The developed electrical analog and the associated analysis approach present invaluable tools for the design of efficient thermoacoustic-piezoelectric energy harvesters. … (more)
- Is Part Of:
- Journal of intelligent material systems and structures. Volume 25:Number 11(2014:Jul.)
- Journal:
- Journal of intelligent material systems and structures
- Issue:
- Volume 25:Number 11(2014:Jul.)
- Issue Display:
- Volume 25, Issue 11 (2014)
- Year:
- 2014
- Volume:
- 25
- Issue:
- 11
- Issue Sort Value:
- 2014-0025-0011-0000
- Page Start:
- 1372
- Page End:
- 1383
- Publication Date:
- 2014-07
- Subjects:
- Traveling wave thermoacoustic-piezoelectric -- electrical analogy -- onset of self-sustained oscillations
Smart materials -- Periodicals
Intelligent control systems -- Periodicals
Artificial intelligence -- Periodicals
Matériaux intelligents -- Périodiques
Commande intelligente -- Périodiques
Intelligence artificielle -- Périodiques
620.11 - Journal URLs:
- http://jim.sagepub.com/ ↗
http://www.uk.sagepub.com/home.nav ↗
http://firstsearch.oclc.org ↗
http://firstsearch.oclc.org/journal=1045-389x;screen=info;ECOIP ↗ - DOI:
- 10.1177/1045389X13507342 ↗
- Languages:
- English
- ISSNs:
- 1045-389X
- Deposit Type:
- Legaldeposit
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