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Mechanics of flow-induced vibration ...
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Jaiman, Rajeev.
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Mechanics of flow-induced vibration = physical modeling and control strategies /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Mechanics of flow-induced vibration/ by Rajeev Jaiman, Guojun Li, Amir Chizfahm.
其他題名:
physical modeling and control strategies /
作者:
Jaiman, Rajeev.
其他作者:
Li, Guojun.
出版者:
Singapore :Springer Nature Singapore : : 2023.,
面頁冊數:
xx, 1021 p. :ill. (some col.), digital ;24 cm.
內容註:
Introduction -- Part 1: Generalized variational formulation -- 1. Mathematical Framework -- 2. Body-fitted Eulerian-Lagrangian methods -- 3. Non-body-fitted embedded methods -- 4. Applications and Examples -- Part 2: Model reduction and FSI control -- 1. Model reduction techniques -- 2. Passive and active control for FSI -- Blowing-suction for VIV.
Contained By:
Springer Nature eBook
標題:
Unsteady flow (Fluid dynamics) -
電子資源:
https://doi.org/10.1007/978-981-19-8578-2
ISBN:
9789811985782
Mechanics of flow-induced vibration = physical modeling and control strategies /
Jaiman, Rajeev.
Mechanics of flow-induced vibration
physical modeling and control strategies /[electronic resource] :by Rajeev Jaiman, Guojun Li, Amir Chizfahm. - Singapore :Springer Nature Singapore :2023. - xx, 1021 p. :ill. (some col.), digital ;24 cm.
Introduction -- Part 1: Generalized variational formulation -- 1. Mathematical Framework -- 2. Body-fitted Eulerian-Lagrangian methods -- 3. Non-body-fitted embedded methods -- 4. Applications and Examples -- Part 2: Model reduction and FSI control -- 1. Model reduction techniques -- 2. Passive and active control for FSI -- Blowing-suction for VIV.
This book discusses various passive and active techniques for controlling unsteady flow dynamics and associated coupled mechanics of fluid-structure interaction. Coupled multiphysics and multidomain simulations are emerging and challenging research areas, which have received significant attention during the past decade. One of the most common multiphysics and multidomain problems is fluid-structure interaction (FSI), i.e., the study of coupled physical systems involving fluid and a structure that have a mechanical influence on each other. Regardless of the application area, the investigation toward modeling of fluid-structure interaction and the underlying mechanisms in dealing with coupled fluid-structure instability with real-world applications remains a challenge to scientists and engineers. This book is designed for students and researchers who seek knowledge of computational modeling and control strategies for fluid-structure interaction. Specifically, this book provides a comprehensive review of the underlying unsteady physics and coupled mechanical aspects of the fluid-structure interaction of freely vibrating bluff bodies, the self-induced flapping of thin flexible structures, and aeroelasticity of shell structures. Understanding flow-induced loads and vibrations can lead to safer and cost-effective structures, especially for light and high-aspect ratio structures with increased flexibility and harsh environmental conditions. Using the body-fitted and moving mesh formulations, the physical insights associated with structure-to-fluid mass ratios, Reynolds number, nonlinear structural deformation, proximity interference, near-wall contacts, free-surface, and other interacting physical fields are covered in this book. In conjunction with the control techniques, data-driven model reduction approaches based on subspace projection and deep neural calculus are covered for low-dimensional modeling of unsteady fluid-structure interaction.
ISBN: 9789811985782
Standard No.: 10.1007/978-981-19-8578-2doiSubjects--Topical Terms:
664939
Unsteady flow (Fluid dynamics)
LC Class. No.: TA357.5.U57
Dewey Class. No.: 620.1064
Mechanics of flow-induced vibration = physical modeling and control strategies /
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Introduction -- Part 1: Generalized variational formulation -- 1. Mathematical Framework -- 2. Body-fitted Eulerian-Lagrangian methods -- 3. Non-body-fitted embedded methods -- 4. Applications and Examples -- Part 2: Model reduction and FSI control -- 1. Model reduction techniques -- 2. Passive and active control for FSI -- Blowing-suction for VIV.
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This book discusses various passive and active techniques for controlling unsteady flow dynamics and associated coupled mechanics of fluid-structure interaction. Coupled multiphysics and multidomain simulations are emerging and challenging research areas, which have received significant attention during the past decade. One of the most common multiphysics and multidomain problems is fluid-structure interaction (FSI), i.e., the study of coupled physical systems involving fluid and a structure that have a mechanical influence on each other. Regardless of the application area, the investigation toward modeling of fluid-structure interaction and the underlying mechanisms in dealing with coupled fluid-structure instability with real-world applications remains a challenge to scientists and engineers. This book is designed for students and researchers who seek knowledge of computational modeling and control strategies for fluid-structure interaction. Specifically, this book provides a comprehensive review of the underlying unsteady physics and coupled mechanical aspects of the fluid-structure interaction of freely vibrating bluff bodies, the self-induced flapping of thin flexible structures, and aeroelasticity of shell structures. Understanding flow-induced loads and vibrations can lead to safer and cost-effective structures, especially for light and high-aspect ratio structures with increased flexibility and harsh environmental conditions. Using the body-fitted and moving mesh formulations, the physical insights associated with structure-to-fluid mass ratios, Reynolds number, nonlinear structural deformation, proximity interference, near-wall contacts, free-surface, and other interacting physical fields are covered in this book. In conjunction with the control techniques, data-driven model reduction approaches based on subspace projection and deep neural calculus are covered for low-dimensional modeling of unsteady fluid-structure interaction.
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