Computational modeling and analysis of flow-induced vibration of an elastic splitter plate using a sharp-interface immersed boundary method
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[1] W. Thomson. Theory of vibration with applications , 1965 .
[2] A. Touzin. [Motions]. , 2011, Le Chirurgien-dentiste de France.
[3] C. Williamson,et al. Fluid Forces and Dynamics of a Hydroelastic Structure with Very Low Mass and Damping , 1997 .
[4] C. Williamson,et al. MOTIONS, FORCES AND MODE TRANSITIONS IN VORTEX-INDUCED VIBRATIONS AT LOW MASS-DAMPING , 1999 .
[5] C. Williamson,et al. Modes of vortex formation and frequency response of a freely vibrating cylinder , 2000, Journal of Fluid Mechanics.
[6] K. Isogai,et al. A THEORETICAL STUDY OF PAPER FLUTTER , 2002 .
[7] C. Williamson,et al. Vortex-Induced Vibrations , 2004, Wind Effects on Structures.
[8] Gianluca Iaccarino,et al. IMMERSED BOUNDARY METHODS , 2005 .
[9] L. Mahadevan,et al. Fluid-flow-induced flutter of a flag. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[10] S. Turek,et al. Proposal for Numerical Benchmarking of Fluid-Structure Interaction between an Elastic Object and Laminar Incompressible Flow , 2006 .
[11] M. P. Paı¨doussis,et al. On the instability and the post-critical behaviour of two-dimensional cantilevered flexible plates in axial flow , 2007 .
[12] C. Eloy,et al. Flutter of a rectangular plate , 2007 .
[13] D. Yue,et al. Flapping dynamics of a flag in a uniform stream , 2007, Journal of Fluid Mechanics.
[14] Fotis Sotiropoulos,et al. Curvilinear immersed boundary method for simulating fluid structure interaction with complex 3D rigid bodies , 2008, J. Comput. Phys..
[15] Rajat Mittal,et al. A versatile sharp interface immersed boundary method for incompressible flows with complex boundaries , 2008, J. Comput. Phys..
[16] S. Alben,et al. Flapping states of a flag in an inviscid fluid: bistability and the transition to chaos. , 2008, Physical review letters.
[17] W. Wall,et al. Fixed-point fluid–structure interaction solvers with dynamic relaxation , 2008 .
[18] C. Eloy,et al. Aeroelastic instability of cantilevered flexible plates in uniform flow , 2008, Journal of Fluid Mechanics.
[19] Guy Dumas,et al. A Fluid-Structure Interaction Solver for Nano-Air-Vehicle Flapping Wings , 2009 .
[20] C. Yun,et al. LONG-TERM STRUCTURAL HEALTH MONITORING SYSTEM OF A CABLE-STAYED BRIDGE BASED ON WIRELESS SMART SENSOR NETWORKS AND ENERGY HARVESTING TECHNIQUES , 2010 .
[21] J. Vierendeels,et al. Performance of partitioned procedures in fluid-structure interaction , 2010 .
[22] Rajat Mittal,et al. Toward A Simulation-Based Tool for the Treatment of Vocal Fold Paralysis , 2011, Front. Physio..
[23] Jung Hee Seo,et al. A sharp-interface immersed boundary method with improved mass conservation and reduced spurious pressure oscillations , 2011, J. Comput. Phys..
[24] Jun Zhang,et al. Flapping and Bending Bodies Interacting with Fluid Flows , 2011 .
[25] R. Mittal,et al. Benchmarking a Coupled Immersed-Boundary-Finite-Element Solver for Large-Scale Flow-Induced Deformation , 2012 .
[26] Deniz Tolga Akcabay,et al. Hydroelastic response and energy harvesting potential of flexible piezoelectric beams in viscous flow , 2012 .
[27] Chengkuo Lee,et al. Development of piezoelectric microcantilever flow sensor with wind-driven energy harvesting capability , 2012 .
[28] J. Arakeri,et al. Dynamics of a flexible splitter plate in the wake of a circular cylinder , 2013 .
[29] Zhengguo Shang,et al. A micromachined low-frequency piezoelectric harvester for vibration and wind energy scavenging , 2013 .
[30] H. Peerhossaini,et al. Partitioned solver for strongly coupled fluid–structure interaction , 2013 .
[31] K. T. Ramesh,et al. A computational model of blast loading on the human eye , 2013, Biomechanics and Modeling in Mechanobiology.
[32] F. Sotiropoulos,et al. Immersed boundary methods for simulating fluid-structure interaction , 2014 .
[33] Rajeev K. Jaiman,et al. A stable second-order scheme for fluid-structure interaction with strong added-mass effects , 2014, J. Comput. Phys..
[34] Hu Dai,et al. Fluid-structure interaction involving large deformations: 3D simulations and applications to biological systems , 2014, J. Comput. Phys..
[35] R. Mittal,et al. Computational study of flow-induced vibration of a reed in a channel and effect on convective heat transfer , 2014 .
[36] S. Alben. Flag flutter in inviscid channel flow , 2014, 1406.6294.
[37] Jae Hwa Lee,et al. Flapping dynamics of a flexible flag in a uniform flow , 2014 .
[38] R. Bhardwaj,et al. Numerical study of Heat Transfer Enhancement by Deformable Twin Plates in Laminar Heated Channel flow , 2015, 1509.03854.
[39] R. Mittal,et al. Flutter instability of a thin flexible plate in a channel , 2015, Journal of Fluid Mechanics.
[40] J. Sheridan,et al. Flow-Induced Deformation of a Flexible Thin Structure as Manifestation of Heat Transfer Enhancement , 2015, 1501.01807.
[41] A. K. Soti,et al. Convective Heat Transfer Augmentation by Flexible fins in Laminar Channel Pulsating flow , 2015 .
[42] S. Mittal,et al. Flow past two square cylinders with flexible splitter plates , 2015 .
[43] A. Bhattacharya,et al. Power extraction from vortex-induced angular oscillations of elliptical cylinder , 2016 .
[44] Jung-kyu Ahn,et al. Numerical investigation of flow around circular cylinder with splitter plate , 2016 .
[45] Y. S. Lee,et al. An embedded boundary approach for the simulation of a flexible flapping wing at different density ratio , 2016 .
[46] R. Bhardwaj,et al. Fluid–structure interaction solver for compressible flows with applications to blast loading on thin elastic structures , 2017, 1705.08336.
[47] M. Sarioğlu,et al. Control of flow around a square cylinder at incidence by using a splitter plate , 2017 .
[48] M. Thompson,et al. The response of an elastic splitter plate attached to a cylinder to laminar pulsatile flow , 2016, 1611.03173.
[49] M. Thompson,et al. Harnessing electrical power from vortex-induced vibration of a circular cylinder , 2017, 1712.01588.
[50] R. Bhardwaj,et al. A sharp interface immersed boundary method for vortex-induced vibration in the presence of thermal buoyancy , 2018 .
[51] S. Dutta,et al. Experimental investigation of flow over a square cylinder with an attached splitter plate at intermediate reynolds number , 2018 .
[52] Woojin Kim,et al. A weak-coupling immersed boundary method for fluid-structure interaction with low density ratio of solid to fluid , 2018, J. Comput. Phys..
[53] K. Godfrey,et al. Infant dietary patterns and early childhood caries in a multi-ethnic Asian cohort , 2019, Scientific Reports.
[54] Guangya Zhou,et al. Vortex-induced vibration wind energy harvesting by piezoelectric MEMS device in formation , 2019, Scientific Reports.
[55] M. Thompson,et al. Response of a linear viscoelastic splitter plate attached to a cylinder in laminar flow , 2019, Journal of Fluids and Structures.
[56] A. Kundu. Computational Study of Interaction of an Elastic Plate with Laminar Flow Involving Large-scale Flow-induced Deformation , 2019 .
[57] A. Bhattacharya,et al. Lock-in regimes for Vortex-Induced Vibrations of a cylinder attached to a bistable spring , 2019, Journal of Fluids and Structures.
[58] S. Mittal,et al. Numerical study of flow-induced vibration of a circular cylinder with attached flexible splitter plate at low $Re$ , 2019, Journal of Fluid Mechanics.
[59] P. Alam. ‘A’ , 2021, Composites Engineering: An A–Z Guide.