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    Finite-Element Implementation of Piezoelectric Energy Harvesting System from Vibrations of Railway Bridge

    Source: Journal of Energy Engineering:;2019:;Volume ( 145 ):;issue: 002
    Author:
    Yooseob Song
    DOI: 10.1061/(ASCE)EY.1943-7897.0000595
    Publisher: American Society of Civil Engineers
    Abstract: This work investigates the finite-element implementation of a piezoelectric energy harvester subjected to traffic-induced vibration of a railway bridge. To derive the electromechanical coupled framework, Hamilton’s variational principle is employed and the mechanical and electrical energy balance equations are considered in conjunction with suitable boundary conditions of the mechanical and electric fields. For the finite-element implementation, the output voltage is considered as an additional degree of freedom together with the displacement field. The developed finite-element model is then validated by comparison with the numerical results of the current finite-element model with closed-form solutions. The characteristics of the moving train load and corresponding train-induced vibration data measured on single- and double-span bridges are analyzed and the maximum vertical deflection is also evaluated for the safety assessment of the bridge. Lastly, the capability of the piezoelectric energy harvester as an energy-scavenging device on a railway bridge, the optimum location of the harvester, the optimum speed of the moving train, and the effect of resonance are discussed in terms of the generated output voltage and total energy.
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      Finite-Element Implementation of Piezoelectric Energy Harvesting System from Vibrations of Railway Bridge

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4254891
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    contributor authorYooseob Song
    date accessioned2019-03-10T12:06:30Z
    date available2019-03-10T12:06:30Z
    date issued2019
    identifier other%28ASCE%29EY.1943-7897.0000595.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4254891
    description abstractThis work investigates the finite-element implementation of a piezoelectric energy harvester subjected to traffic-induced vibration of a railway bridge. To derive the electromechanical coupled framework, Hamilton’s variational principle is employed and the mechanical and electrical energy balance equations are considered in conjunction with suitable boundary conditions of the mechanical and electric fields. For the finite-element implementation, the output voltage is considered as an additional degree of freedom together with the displacement field. The developed finite-element model is then validated by comparison with the numerical results of the current finite-element model with closed-form solutions. The characteristics of the moving train load and corresponding train-induced vibration data measured on single- and double-span bridges are analyzed and the maximum vertical deflection is also evaluated for the safety assessment of the bridge. Lastly, the capability of the piezoelectric energy harvester as an energy-scavenging device on a railway bridge, the optimum location of the harvester, the optimum speed of the moving train, and the effect of resonance are discussed in terms of the generated output voltage and total energy.
    publisherAmerican Society of Civil Engineers
    titleFinite-Element Implementation of Piezoelectric Energy Harvesting System from Vibrations of Railway Bridge
    typeJournal Paper
    journal volume145
    journal issue2
    journal titleJournal of Energy Engineering
    identifier doi10.1061/(ASCE)EY.1943-7897.0000595
    page04018076
    treeJournal of Energy Engineering:;2019:;Volume ( 145 ):;issue: 002
    contenttypeFulltext
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