4.6 Article

Recent advancement of flow-induced piezoelectric vibration energy harvesting techniques: principles, structures, and nonlinear designs

相关参考文献

注意:仅列出部分参考文献,下载原文获取全部文献信息。
Review Thermodynamics

A review of flow-induced vibration energy harvesters

Xiaoqing Ma et al.

Summary: This paper comprehensively reviews the recent advances in flow-induced vibration energy harvesters in terms of their working principles, categories, enhancement methods, model derivation and calculation methods, influence of interface circuits, and energy harvesting efficiency calculation methods. The working principles and current development progress of various types of energy harvesters are discussed. Enhancement methods and critical challenges are characterized and summarized. Future research directions and prospects are proposed and discussed.

ENERGY CONVERSION AND MANAGEMENT (2022)

Article Engineering, Mechanical

Multistability phenomenon in signal processing, energy harvesting, composite structures, and metamaterials: A review

Shitong Fang et al.

Summary: Multistability, the phenomenon of multiple coexistent stable states, has been found in various scientific areas and researchers have identified numerous benefits of it for a wide range of applications. The unique characteristics of multistability, such as rich potential structure and alleviation of input energy, may play different advantageous roles depending on their applications.

MECHANICAL SYSTEMS AND SIGNAL PROCESSING (2022)

Article Green & Sustainable Science & Technology

Improved Flow-Induced Vibration Energy Harvester by Using Magnetic Force: An Experimental Study

Dongxing Cao et al.

Summary: This paper proposed a flow-induced piezoelectric vibration energy harvester with magnetic force enhancement and demonstrated its effectiveness in improving the acquisition voltage, especially in low velocity water flow. The introduction of magnetic force showed positive effects on enhancing the harvesting performance of the vibration energy harvester.

INTERNATIONAL JOURNAL OF PRECISION ENGINEERING AND MANUFACTURING-GREEN TECHNOLOGY (2021)

Article Green & Sustainable Science & Technology

Design, Simulation and Experiment for a Vortex-Induced Vibration Energy Harvester for Low-Velocity Water Flow

Dongxing Cao et al.

Summary: This paper investigates an optimized piezoelectric vibration energy harvester incorporating magnetic excitation for effective energy harvesting in low velocity water flow. Experimental and simulation studies were conducted to explore the influence of different structures on energy harvesting performance, leading to the identification of the optimal structure for low velocity water flow.

INTERNATIONAL JOURNAL OF PRECISION ENGINEERING AND MANUFACTURING-GREEN TECHNOLOGY (2021)

Article Energy & Fuels

Hydrodynamic energy harvesting analysis of two piezoelectric tandem flags under influence of upstream body's wakes

A. Mujtaba et al.

Summary: This study investigates the effects of tandem piezoelectric flags on energy harvesting in a wake flow. Experiment results show that the flapping of the rear flag is influenced by the vortices and wake of the front flag, leading to an increased energy harvesting efficiency.

APPLIED ENERGY (2021)

Article Energy & Fuels

Effects of dissimilar wakes on energy harvesting of Flow Induced Vibration (FIV) based converters with circular oscillator

V. Tamimi et al.

Summary: This study investigates the effects of sharp edge square and diamond wakes on energy harvesting from downstream circular cylinders, showing that dissimilar wakes can significantly increase mechanical power of the circular oscillator but at the cost of lower efficiency at high flow rates. Multi Criteria Decision Making (MCDM) analysis indicates the priority of similar wakes in energy harvesting improvement over dissimilar wakes.

APPLIED ENERGY (2021)

Article Thermodynamics

Experimental electro-hydrodynamic investigation of flag-based energy harvesting in the wake of inverted C-shape cylinder

U. Latif et al.

Summary: A series of water tunnel experiments were conducted to study the improvement in energy harvesting through vortex-induced vibrations. The results show that the shape and cut angle of the inverted C-shape cylinders significantly affect the energy output, and the flow speed and streamwise gap have a crucial impact on flapping amplitude and frequency. Particle Image Velocimetry experimentation confirms the wake dynamics' role in enhancing energy efficiency.

ENERGY (2021)

Article Materials Science, Multidisciplinary

Enhanced performance of piezoelectric energy harvester through three serial vibrators

Xiaobiao Shan et al.

Summary: This paper presents a piezoelectric harvester array with three EHVs, which demonstrated significant differences in vibration response and harvesting performance compared to a single EHV. The EHV array showed a potential increase of up to 36.23% in overall harvesting performance at certain spacing distances compared to a single EHV.

JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES (2021)

Article Thermodynamics

Harvesting more energy from variable-speed wind by a multi-stable configuration with vortex-induced vibration and galloping

Zhiyong Zhou et al.

Summary: The novel multi-stable harvester aims to scavenge more energy from variable-speed wind by integrating galloping and vortex-induced vibration. Adjusting the distance between magnets can create bi-stability or tri-stability, with the tri-stable configuration outperforming the bi-stable one in wind energy harvesting performance. The tri-stable energy harvester can significantly enhance output voltage and generate large outputs by executing snap-through motions for wind speeds above 1.0 m s(-1).

ENERGY (2021)

Article Thermodynamics

A magnetically coupled bistable piezoelectric harvester for underwater energy harvesting

Hong-Xiang Zou et al.

Summary: This study presents a new magnetically coupled bistable piezoelectric energy harvesting approach for underwater applications, utilizing a flextensional piezoelectric transducer. The system has nonlinear bistable characteristics, exhibiting stable power output performance in harsh environments like underwater.

ENERGY (2021)

Article Engineering, Mechanical

A hybrid piezo-dielectric wind energy harvester for high-performance vortex-induced vibration energy harvesting

Zhihui Lai et al.

Summary: This paper introduces a novel hybrid piezo-dielectric wind energy harvester that efficiently harvests vortex-induced vibration (VIV) energy from low-speed wind by combining piezoelectric ceramic and a vibro-impact dielectric elastomer generator. Experimental and numerical studies show that the hybrid harvester can effectively collect energy in the lock-in region of VIV, with the vibro-impact DEG generating higher power. This highlights the superiority of the hybrid harvester design.

MECHANICAL SYSTEMS AND SIGNAL PROCESSING (2021)

Review Green & Sustainable Science & Technology

A comprehensive review of nonlinear oscillators in hydrokinetic energy harnessing using flow-induced vibrations

Yanfang Lv et al.

Summary: This review provides a comprehensive evaluation of hydrokinetic energy converters based on alternating lift technology, focusing on the design and analysis of nonlinear oscillators and the exploration of fluid-structure coupling. Research has shown that nonlinear oscillators can harvest energy from a wide spectrum of stochastic excitation, overcoming limitations associated with narrow bandwidth responses, and have the potential for use in hydrokinetic energy converters.

RENEWABLE & SUSTAINABLE ENERGY REVIEWS (2021)

Article Instruments & Instrumentation

Planform geometry effects of piezoelectric wind energy harvesting composite inverted flags

Kaidong Yang et al.

Summary: This study investigates how the dynamics and power generation performance of energy harvesting devices based on the inverted flag configuration vary with planform geometry. The results show that for a given mass ratio, flapping amplitude, frequency, power, and power density are all inversely proportional to aspect ratio and proportional to second moment of planform area. The second moment of planform area is a better indicator parameter to assess the flags performance compared to the aspect ratio.

SMART MATERIALS AND STRUCTURES (2021)

Article Engineering, Multidisciplinary

Trout-like multifunctional piezoelectric robotic fish and energy harvester

David Tan et al.

Summary: This research presents experimental studies on a trout-inspired multifunctional robotic fish that can swim underwater and harvest energy. The robot, designed with fiber-based flexible piezoelectric composites, showed high swimming speed and hydrodynamic thrust in test settings, and was able to harvest low-power electricity from flow-induced vibrations for potential applications in powering sensors.

BIOINSPIRATION & BIOMIMETICS (2021)

Article Mathematics, Applied

Nonlinear modeling and vibration mitigation of combined vortex-induced and base vibrations through energy harvesting absorbers

I. McNeil et al.

Summary: This study investigates the effectiveness of an energy harvesting absorber at controlling base excitations, vortex-induced vibrations, and simultaneous excitations, while examining the impact of design parameters and increasing absorber stiffness on energy harvesting range. Different designs of the energy harvesting absorber are compared for their ability to control the system and energy output under concurrent base excitation and vortex-induced vibrations, with the absorber tuned for vortex-induced vibrations showing the best result in reducing amplitude and achieving consistent power output.

COMMUNICATIONS IN NONLINEAR SCIENCE AND NUMERICAL SIMULATION (2021)

Article Thermodynamics

On the use of metasurface for Vortex-Induced vibration suppression or energy harvesting

Junlei Wang et al.

Summary: This paper investigates the use of metasurface patterns to modify the aerodynamic characteristics of bluff bodies for vortex-induced vibration (VIV) suppression or enhancement. Experimental validation and theoretical modeling are used to analyze the impact of metasurfaces on aerodynamic behaviors and vortex shedding processes. The study provides insights into the mechanisms behind the influence of metasurfaces on VIV systems, suggesting practical recommendations for using piezoelectric transducers with moderate coupling coefficients.

ENERGY CONVERSION AND MANAGEMENT (2021)

Article Thermodynamics

Development of a novel non-contact piezoelectric wind energy harvester excited by vortex-induced vibration

Shuyun Wang et al.

Summary: By utilizing a novel non-contact vortex-induced vibration-based piezoelectric wind energy harvester, the reliability and environmental adaptability have been enhanced. Through optimization of design and experimental validation, the maximum output power reached 1.438 mW and it can effectively operate within a wide wind speed range. With an increase in wind speed, enhancing transducer mass and decreasing shell mass can improve wind speed bandwidth, vibration displacement and output voltage.

ENERGY CONVERSION AND MANAGEMENT (2021)

Article Physics, Applied

Harvesting wind energy with a bi-stable configuration integrating vortex-induced vibration and galloping

Yuansheng Wang et al.

Summary: This paper introduces a wind energy harvester that combines VIV, galloping, and multi-stability, demonstrating through validation experiments its ability to maintain a large output in variable-speed wind environments.

JOURNAL OF PHYSICS D-APPLIED PHYSICS (2021)

Article Engineering, Mechanical

Novel galloping-based piezoelectric energy harvester adaptable to external wind velocity

Wan Sun et al.

Summary: A novel galloping-based piezoelectric energy harvester adaptable to external wind velocity (GPEHAW) is proposed in this study, aiming to improve power density and lower the critical wind velocity for galloping. The system design and mechanical analysis lead to a significant increase in power density and an improvement in energy performance. The findings serve as a useful guideline for designing efficient galloping-based piezoelectric energy harvesters, particularly effective in urban environments.

MECHANICAL SYSTEMS AND SIGNAL PROCESSING (2021)

Article Instruments & Instrumentation

Enhancing piezoelectric energy harvesting from the flow-induced vibration of a circular cylinder using dual splitters

Junlei Wang et al.

Summary: This study aimed to enhance piezoelectric energy harvesting from the flow-induced vibration of a circular cylinder by using two symmetric splitters. The research found that the energy harvesting efficiency varied with different positions of the dual splitters, with the optimal position at 60 degrees showing a maximum output voltage increase of 188.61%. Additionally, the study examined the influence of vortex interactions on the transition from VIV to galloping.

SMART MATERIALS AND STRUCTURES (2021)

Article Mechanics

Multi-degree of freedom nonlinear energy sinks for passive control of vortex-induced vibrations in a sprung cylinder

Jose Augusto I. da Silva et al.

Summary: This paper investigates the use of multi-degree of freedom nonlinear energy sinks (MDOF-NES) for passive control of vortex-induced vibrations in a sprung cylinder. Numerical studies show that appropriate design of MDOF-NES parameters can control vibration amplitudes, with the MDOF-NES approach based on lower linear stiffness coupling proving to be more effective.

ACTA MECHANICA (2021)

Article Energy & Fuels

An ultra-low-frequency, broadband and multi-stable tri-hybrid energy harvester for enabling the next-generation sustainable power

Chen Wang et al.

Summary: This work presents a highly miniaturized, ultra-low-frequency, multi-stable, and tri-hybrid portable energy harvester that efficiently harnesses structural and biomechanical vibration energy. By combining novel technologies and multiple generators, this energy harvester can generate more electric power from a single mechanical motion and is suitable for wearable/portable electronics and wireless monitoring systems.

APPLIED ENERGY (2021)

Article Physics, Applied

Perspectives in flow-induced vibration energy harvesting

Junlei Wang et al.

Summary: Flow-induced vibration (FIV) energy harvesting has gained extensive research interest in the past two decades, with remarkable achievements and applications in various fields. The challenges of multi-physics coupling and robustness of FIV energy harvesters need to be addressed in future development. Machine-learning approaches, metamaterials, and advanced interface circuits may hold the key to improving system performance. Collaborations between researchers from different disciplines are crucial for advancing FIV energy harvesting technology from lab to real-world applications.

APPLIED PHYSICS LETTERS (2021)

Article Thermodynamics

Effects of side ratio on energy harvesting from transverse galloping of a rectangular cylinder

Haiyan Yu et al.

Summary: This study investigates the effects of side ratio on piezoelectric energy harvesting from the transverse galloping of a rectangular cylinder. It was found that the side ratio and load resistance influence the onset velocity, displacement, and power output of the energy harvester. Increasing the side ratio decreases the onset galloping velocity, with the largest vibration amplitude achieved at a side ratio of 1.62 or 2.0 at low flow velocities.

ENERGY (2021)

Article Thermodynamics

Modeling and analysis of novel coupled magneto-electro-aeroelastic continuous system for flutter-based energy harvesting system

Mehran Zaheri Abdehvand et al.

Summary: This paper presents a novel continuous model for improving energy harvesting from aeroelastic flutter induced vibrations by utilizing magneto-electro-elastic (MEE) materials. Through the study of system parameters, the best design parameters are determined, and a comparison between the efficiencies of MEE and piezoaeroelastic harvesting is performed, revealing the superiority of the MEE model in terms of generated power.

ENERGY (2021)

Article Engineering, Marine

Piezoelectric energy harvesting from vortex-induced vibration of a circular cylinder: Effect of Reynolds number

Mingjie Zhang et al.

Summary: This study investigates the impact of Reynolds number on piezoelectric energy harvesting from vortex-induced vibrations of a circular cylinder. Results show that Reynolds number not only affects power levels and global branches of the bifurcation diagram, but also has a greater impact on performance in cases with low mechanical damping ratios.

OCEAN ENGINEERING (2021)

Article Engineering, Electrical & Electronic

Environment coupled piezoelectric galloping wind energy harvesting

Ting Tan et al.

Summary: The environmental adaptability of galloping piezoelectric energy harvester on atmospheric temperature and wind speed was investigated, and the empirical coefficients of nonlinear piezoelectric parameters varied by the temperature are identified. Wind-tunnel tests and analytical solutions of the nonlinear coupled continuous model were used to determine the optimal load resistance for specific environmental conditions. Higher temperatures benefit the onset speed of energy harvesting during low wind speeds.

SENSORS AND ACTUATORS A-PHYSICAL (2021)

Article Energy & Fuels

Study on the Efficiency and Dynamic Characteristics of an Energy Harvester Based on Flexible Structure Galloping

Peng Liao et al.

Summary: This study introduces a novel energy harvester based on the galloping of a flexible structure, which shows efficient wind energy conversion under certain wind speeds. Through numerical simulations and wind tunnel tests, it provides guidance for designing high-efficiency harvesters.

ENERGIES (2021)

Article Physics, Multidisciplinary

Modeling and analysis of a coupled novel nonlinear magneto-electro-aeroelastic lumped model for a flutter based energy harvesting system

Mehran Zaheri Abdehvand et al.

Summary: This paper investigates a novel aeroelastic energy harvesting system using magneto-electro-elastic (MEE) material with nonlinear elastic effects, aiming to increase harvested electrical power. The proposed model consists of a rigid airfoil connected to an elastic beam covered with MEE material and electrodes for electric potential harvesting, with an external coil to induce electrical energy. The study demonstrates the superiority of the MEE energy harvester over a traditional piezo-aeroelastic energy harvester.

PHYSICA SCRIPTA (2021)

Article Engineering, Mechanical

Design, modeling and experiments of broadband tristable galloping piezoelectric energy harvester

Junlei Wang et al.

ACTA MECHANICA SINICA (2020)

Article Engineering, Electrical & Electronic

Piezoelectromagnetic synergy design and performance analysis for wind galloping energy harvester

Ting Tan et al.

SENSORS AND ACTUATORS A-PHYSICAL (2020)

Article Engineering, Mechanical

Energy harvesting from iced-conductor inspired wake galloping

Zhimiao Yan et al.

EXTREME MECHANICS LETTERS (2020)

Article Engineering, Mechanical

Design and analysis of a vortex-induced bi-directional piezoelectric energy harvester

Wei-Jiun Su et al.

INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES (2020)

Article Engineering, Electrical & Electronic

Wind energy harvesting using piezoelectric macro fiber composites based on flutter mode

Jianjun Liu et al.

MICROELECTRONIC ENGINEERING (2020)

Article Thermodynamics

Hybrid wind energy scavenging by coupling vortex-induced vibrations and galloping

Junlei Wang et al.

ENERGY CONVERSION AND MANAGEMENT (2020)

Article Thermodynamics

Energy harvesting of two inverted piezoelectric flags in tandem, side-by-side and staggered arrangements

Soudeh Mazharmanesh et al.

INTERNATIONAL JOURNAL OF HEAT AND FLUID FLOW (2020)

Article Materials Science, Multidisciplinary

Bionic-Fin-Structured Triboelectric Nanogenerators for Undersea Energy Harvesting

Chuguo Zhang et al.

ADVANCED MATERIALS TECHNOLOGIES (2020)

Article Materials Science, Multidisciplinary

Non-linear piezoelectric fluidic energy harvesters: The mutual interaction of two oscillating cylinders

Vahid Azadeh-Ranjbar et al.

JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES (2020)

Article Acoustics

Modeling and nonlinear analysis of stepped beam energy harvesting from galloping vibrations

Jiantao Zhang et al.

JOURNAL OF SOUND AND VIBRATION (2020)

Article Engineering, Marine

Numerical investigation of bluff body for vortex induced vibration energy harvesting

Mingrui Zheng et al.

OCEAN ENGINEERING (2020)

Article Chemistry, Analytical

Performance Evaluation of a Piezoelectric Energy Harvester Based on Flag-Flutter

Hassan Elahi et al.

MICROMACHINES (2020)

Article Mechanics

Improving application of galloping-based energy harvesters in realistic condition

Sima Sobhanirad et al.

ARCHIVE OF APPLIED MECHANICS (2019)

Article Mathematics, Applied

Theoretical analysis of multi-stable energy harvesters with high-order stiffness terms

Dongmei Huang et al.

COMMUNICATIONS IN NONLINEAR SCIENCE AND NUMERICAL SIMULATION (2019)

Article Thermodynamics

High-performance piezoelectric wind energy harvester with Y-shaped attachments

Junlei Wang et al.

ENERGY CONVERSION AND MANAGEMENT (2019)

Article Energy & Fuels

Simultaneous wind and solar energy harvesting with inverted flags

Jorge Silva-Leon et al.

APPLIED ENERGY (2019)

Article Mechanics

A piezoelectric energy harvesting scheme based on stall flutter of airfoil section

Cunyu Bao et al.

EUROPEAN JOURNAL OF MECHANICS B-FLUIDS (2019)

Article Engineering, Mechanical

Experimental and theoretical correlations for energy harvesting from a large flapping flag response

D. M. Tang et al.

JOURNAL OF FLUIDS AND STRUCTURES (2019)

Article Engineering, Industrial

NUMERICAL SIMULATION FOR ENERGY HARVESTING OF PIEZOELECTRIC FLAG IN UNIFORM FLOW

R. J. Song et al.

INTERNATIONAL JOURNAL OF SIMULATION MODELLING (2019)

Article Thermodynamics

Harvest wind energy from a vibro-impact DEG embedded into a bluff body

Z. H. Lai et al.

ENERGY CONVERSION AND MANAGEMENT (2019)

Article Engineering, Mechanical

Wideband PZT energy harvesting from the wake of a bluff body in varying flow speeds

Masoud Rezaei et al.

INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES (2019)

Article Engineering, Mechanical

Wind energy harvesting performance of tandem circular cylinders with triangular protrusions

Gang Hu et al.

JOURNAL OF FLUIDS AND STRUCTURES (2019)

Article Engineering, Electrical & Electronic

Comparisons of bioinspired piezoelectric wind energy harvesters with different layout of stiffeners based on leaf venation prototypes

Weiyuan Wang et al.

SENSORS AND ACTUATORS A-PHYSICAL (2019)

Article Instruments & Instrumentation

A cross-coupled dual-beam for multi-directional energy harvesting from vortex induced vibrations

Junlei Wang et al.

SMART MATERIALS AND STRUCTURES (2019)

Article Engineering, Mechanical

A novel design for an adaptive aeroelastic energy harvesting system: flutter and power analysis

Milad Hafezi et al.

JOURNAL OF THE BRAZILIAN SOCIETY OF MECHANICAL SCIENCES AND ENGINEERING (2019)

Article Construction & Building Technology

Piezoelectric energy harvesting from vortex shedding and galloping induced vibrations inside HVAC ducts

Francesco Petrini et al.

ENERGY AND BUILDINGS (2018)

Article Engineering, Civil

Energy harvesting from different aeroelastic instabilities of a square cylinder

Thomas Andrianne et al.

JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS (2018)

Article Engineering, Electrical & Electronic

A bioinspired structure modification of piezoelectric wind energy harvester based on the prototype of leaf veins

Weiyuan Wang et al.

SENSORS AND ACTUATORS A-PHYSICAL (2018)

Article Materials Science, Multidisciplinary

Triboelectric Nanogenerator Tree for Harvesting Wind Energy and Illuminating in Subway Tunnel

Yaoxing Bian et al.

ADVANCED MATERIALS TECHNOLOGIES (2018)

Article Engineering, Mechanical

On the electrode segmentation for piezoelectric energy harvesting from nonlinear limit cycle oscillations in axial flow

Carlos De Marqui Jr et al.

JOURNAL OF FLUIDS AND STRUCTURES (2018)

Article Engineering, Mechanical

Theoretical aspects of transverse galloping

Oriel Shoshani

NONLINEAR DYNAMICS (2018)

Review Biology

On flapping flight mechanisms and their applications to wind and marine energy harvesting

Benjamin Thiria

CURRENT OPINION IN INSECT SCIENCE (2018)

Proceedings Paper Engineering, Manufacturing

Energy Harvesting from Aerodynamic Instabilities: Current prospect and Future Trends

M. Bashir et al.

INTERNATIONAL CONFERENCE ON ADVANCES IN MANUFACTURING AND MATERIALS ENGINEERING (ICAMME 2017) (2018)

Article Engineering, Mechanical

Investigation on the vortex-and-wake-induced vibration of a separated-box bridge girder

Wenyong Yuan et al.

JOURNAL OF FLUIDS AND STRUCTURES (2017)

Review Green & Sustainable Science & Technology

Renewable energy harvesting by vortex-induced motions: Review and benchmarking of technologies

Ali Bakhshandeh Rostami et al.

RENEWABLE & SUSTAINABLE ENERGY REVIEWS (2017)

Article Engineering, Electrical & Electronic

Design of hydro electromagnetic and piezoelectric energy harvesters for a smart water meter system

Jae Yong Cho et al.

SENSORS AND ACTUATORS A-PHYSICAL (2017)

Review Engineering, Multidisciplinary

Aeroelastic energy harvesting: A review

A. Abdelkefi

INTERNATIONAL JOURNAL OF ENGINEERING SCIENCE (2016)

Article Mathematics, Applied

Nonlinear characteristics of circular-cylinder piezoelectric power harvester near resonance based on flow-induced flexural vibration mode

Hai-ren Wang et al.

APPLIED MATHEMATICS AND MECHANICS-ENGLISH EDITION (2014)

Article Mechanics

Streamwise vortex-induced vibrations of cylinders with one and two degrees of freedom

N. Cagney et al.

JOURNAL OF FLUID MECHANICS (2014)

Article Materials Science, Multidisciplinary

Theoretical modeling and nonlinear analysis of piezoelectric energy harvesting from vortex-induced vibrations

H. L. Dai et al.

JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES (2014)

Article Instruments & Instrumentation

Power performance improvements for high pressure ripple energy harvesting

E. A. Skow et al.

SMART MATERIALS AND STRUCTURES (2014)

Article Engineering, Mechanical

Power extraction from aeroelastic limit cycle oscillations

J. A. Dunnmon et al.

JOURNAL OF FLUIDS AND STRUCTURES (2011)