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    On Jump Discontinuities in Internal Forces of Flexible Structures Carrying Moving Subsystems

    Source: Journal of Applied Mechanics:;2023:;volume( 090 ):;issue: 010::page 101002-1
    Author:
    Yang, Bingen
    ,
    Gao, Hao
    DOI: 10.1115/1.4062628
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: Combined systems, which are flexible structures carrying moving subsystems, are seen in various applications. Due to structure–subsystem interactions, the structure in a combined system encounters jump discontinuities in its internal forces (such as the bending moment and shear force of a beam). Accurate estimation of such jump discontinuities is important to the performance, safety, and longevity of a combined system. Because of the time-varying nature and complexity of structure–subsystem interactions, conventional series solution methods experience slow convergence, and the Gibbs phenomenon in computation and the improved series expansion methods are limited to certain proportionally damped continua under moving forces and moving oscillators. In this paper, a novel modified series expansion method (MSEM) is proposed to resolve the aforementioned issues with the existing series solution methods. Through the introduction of a jump influence function, the proposed method produces fast-convergent series solutions and accurately predicts the jump discontinuities without the Gibbs phenomenon. The MSEM is applicable to structures with nonproportional damping and subject to arbitrary boundary conditions, and it can easily manage general M-DOF moving subsystems having multiple contact points with a supporting structure. As an important result of this investigation, a mathematical proof of the convergence of the MSEM-based solutions is given for the first time. Additionally, two numerical examples are presented to demonstrate the accuracy, efficiency, and versatility of the proposed MSEM in modeling and analysis of combined systems.
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      On Jump Discontinuities in Internal Forces of Flexible Structures Carrying Moving Subsystems

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    contributor authorYang, Bingen
    contributor authorGao, Hao
    date accessioned2023-11-29T18:50:03Z
    date available2023-11-29T18:50:03Z
    date copyright6/15/2023 12:00:00 AM
    date issued6/15/2023 12:00:00 AM
    date issued2023-06-15
    identifier issn0021-8936
    identifier otherjam_90_10_101002.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4294403
    description abstractCombined systems, which are flexible structures carrying moving subsystems, are seen in various applications. Due to structure–subsystem interactions, the structure in a combined system encounters jump discontinuities in its internal forces (such as the bending moment and shear force of a beam). Accurate estimation of such jump discontinuities is important to the performance, safety, and longevity of a combined system. Because of the time-varying nature and complexity of structure–subsystem interactions, conventional series solution methods experience slow convergence, and the Gibbs phenomenon in computation and the improved series expansion methods are limited to certain proportionally damped continua under moving forces and moving oscillators. In this paper, a novel modified series expansion method (MSEM) is proposed to resolve the aforementioned issues with the existing series solution methods. Through the introduction of a jump influence function, the proposed method produces fast-convergent series solutions and accurately predicts the jump discontinuities without the Gibbs phenomenon. The MSEM is applicable to structures with nonproportional damping and subject to arbitrary boundary conditions, and it can easily manage general M-DOF moving subsystems having multiple contact points with a supporting structure. As an important result of this investigation, a mathematical proof of the convergence of the MSEM-based solutions is given for the first time. Additionally, two numerical examples are presented to demonstrate the accuracy, efficiency, and versatility of the proposed MSEM in modeling and analysis of combined systems.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleOn Jump Discontinuities in Internal Forces of Flexible Structures Carrying Moving Subsystems
    typeJournal Paper
    journal volume90
    journal issue10
    journal titleJournal of Applied Mechanics
    identifier doi10.1115/1.4062628
    journal fristpage101002-1
    journal lastpage101002-12
    page12
    treeJournal of Applied Mechanics:;2023:;volume( 090 ):;issue: 010
    contenttypeFulltext
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