YANG Yongqiang, LI Miao, WU Xinjie, et al. Stress structure analysis and trajectory dynamic characteristics research in wheel energy storage[J]. Energy Storage Science and Technology, 2026, 15(4): 1357-1359.
YANG Yongqiang, LI Miao, WU Xinjie, et al. Stress structure analysis and trajectory dynamic characteristics research in wheel energy storage[J]. Energy Storage Science and Technology, 2026, 15(4): 1357-1359.DOI: 10.19799/j.cnki.2095-4239.2026.0215.
Stress structure analysis and trajectory dynamic characteristics research in wheel energy storage
Flywheel energy storage technology is an electromechanical energy conversion system that releases kinetic energy through high-speed rotating bodies and stores it. In practical work
electric energy and mechanical energy can be dynamically exchanged and converted through the flywheel itself
which has multiple advantages such as fast response speed
long cycle life
high conversion efficiency
and low pollution
and has good application prospects and research value. This study systematically analyzed the structural and trajectory characteristics of modern flywheel energy storage systems. It can be concluded that the flywheel energy storage system needs to achieve a synergistic optimization of lightweight
high strength
and long life through layered composite design and the synergistic effect of multiple materials at the structural level; At the dynamic trajectory level
the bidirectional energy flow coupling during the energy conversion process ensures the nonlinear attenuation of efficiency and the disturbance suppression characteristics of load dynamic matching laws.
Application of artificial intelligence in flywheel energy storage
Analysis of electromagnetic and thermal characteristics of magnetic bearings in flywheel energy storage systems
Analysis and design on stator heat dissipation of motor in flywheel energy storage system
A variable-parameter PID active power control strategy of inertial flywheel based on reinforcement learning
The control strategies concerning the new type inertia flywheel and high-speed flywheel involved in the grid inertia response and primary frequency modulation
Related Author
WEI Lu
LENG Zhiyi
YE Jia
XU Yujie
CHEN Haisheng
WEN Xiankui
LI Bowen
SHI Zhengjun
Related Institution
Institute of Engineering Thermophysics, Chinese Academy of Science
Key Laboratory of Long-Duration and Large-Scale Energy Storage (Chinese Academy of Sciences)
University of Chinese Academy of Sciences
Nanijing Institute of Future Energy System, Institute of Engineering Thermophysics, Chinese Academy of Sciences
Electric Power Research Institute of Guizhou Power Grid Co