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A partitioned solver to simulate large-displacement fluid-structure interaction of thin plate systems for vibration energy harvesting

机译:一种分区求解器,用于模拟薄板系统的大排量流体-结构相互作用,以收集振动能量

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A two-dimensional (2D) partitioned solver is extended for large-displacement fluid-structure interaction (FSI) simulations of thin plate systems, particularly to investigate their potential of aeroelastic energy harvesting. The 2D vortex particle method with immersed interface technique and adaptive solution strategy is used for analyzing flow around deformable bodies; three-dimensional edge effects are ignored. The geometrically nonlinear plate motion is analyzed using 2D corotational beam element. The coupled solver is validated on benchmark large-displacement FSI problems such as flag-type flapping of cantilever plates in axial flow and Karman vortex street. The validated solver is used further to perform a comparative study on different cantilever systems to obtain guidelines for the design of experimental set-ups of prototype harvesters. The changes in aerodynamic behavior and flapping pattern of inverted and T-shaped cantilevers with/without tip mass are investigated. The simulations are performed for increasing wind speeds until the permanent deflection mode occurs. The influences of damping ratios are analyzed as preliminary studies to investigate the electrical damping effects of harvesters. The influential parameters such as response amplitude and oscillating frequency are compared to identify not only efficient cantilever harvesters but also an appropriate combination of physical and electrical parameters depending on target wind speeds. (C) 2019 Elsevier Ltd. All rights reserved.
机译:扩展了二维(2D)分区求解器,用于薄板系统的大排量流体-结构相互作用(FSI)模拟,特别是研究了其气弹能量收集的潜力。采用沉浸界面技术和自适应求解策略的二维涡旋粒子法用于分析可变形体周围的流动。三维边缘效果将被忽略。使用2D比例梁元件分析了板的几何非线性运动。耦合求解器已针对基准大位移FSI问题进行了验证,例如轴向流中的悬臂板的旗型拍打和Karman涡街。经过验证的求解器还可以用于对不同悬臂系统进行比较研究,以获得设计原型收割机实验装置的指导原则。研究了带有/不带有尖端质量的倒置和T形悬臂的空气动力学行为和拍打模式的变化。进行模拟以增加风速,直到出现永久偏转模式为止。作为初步研究,分析了阻尼比的影响,以研究收割机的电阻尼效应。比较诸如响应幅度和振荡频率等有影响力的参数,不仅可以确定高效的悬臂收割机,还可以根据目标风速确定物理和电气参数的适当组合。 (C)2019 Elsevier Ltd.保留所有权利。

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