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Flow-Battery Energy Storage

Vanadium redox flow batteries and wind-storage integrated systems
VRFBLong-duration storageThermal managementWind-storage integration
Flow-Battery Energy Storage

This research targets long-duration storage based on vanadium redox flow batteries, whose decoupled power/energy rating, intrinsic safety and long cycle life complement wind's variability. Topics span stack flow-field design and mass-transport enhancement, joint optimization of electrolyte flow and charge/discharge scheduling, and system-level thermal management — extended by integrating flow batteries with liquid-piston advanced compressed-air storage into capacity-planning and dispatch methods for wind plus multi-storage hybrids.

Key Research Topics

Stack flow fields & mass transport

Optimizes channel geometry and electrode parameters to reduce concentration polarization and pumping losses while raising voltage efficiency.

Coordinated operating strategies

Formulates joint electrolyte-flow and charge/discharge dispatch models balancing capacity utilization with cycle life.

Wind-storage integration methods

Proposes optimal sizing and rolling-horizon dispatch of VRFB + liquid-piston CAES hybrids for wind smoothing and grid accommodation.

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