Abstract
Xianchao Pan, Yangli Zhu, Zebing Chen, Yuncheng Chao, Haisheng Chen
Abstract
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Challenges of renewable energy penetration on power system flexibility: a survey
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A comprehensive review of stationary energy storage devices for large scale renewable energy sources grid integration
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Overview of wind power intermittency: impacts, measurements, and mitigation solutions
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10.3390/thermo3010008 · 2023
Techno-economic analysis of advanced adiabatic compressed air energy storage system based on life cycle cost
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Thermodynamic analysis of lined rock caverns for initial inflation and cyclic operational conditions in compressed air energy storage
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Study on long-term stability of lined rock cavern for compressed air energy storage
10.3390/en17235908 · 2024
Flow instabilities in axial turbines of compressed air energy storage system under low-load conditions
10.1007/s11630-025-2186-2 · 2025
Research on energy storage operation modes in a cooling, heating and power system based on advanced adiabatic compressed air energy storage
Provenance
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Compressed air energy storage system with variable configuration for accommodating large-amplitude wind power fluctuation
10.1016/j.apenergy.2019.01.250 · doi-reference
A compressed air energy storage system with variable pressure ratio and its operation control
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Optimal design of efficient operation mode for advanced adiabatic compressed air energy storage under wide-range sliding pressure conditions
10.1016/j.energy.2026.140774 · doi-reference
Bypass control strategies for the rated total output power of compressed air energy storage system
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Off-design performance of variable-speed compressed air energy storage system under different operation schemes
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Small-scale adiabatic compressed air energy storage: control strategy analysis via dynamic modelling
10.1016/j.enconman.2021.114358 · doi-reference
Two-stage optimal frequency regulation strategy of full-power variable-speed compressed air energy storage
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Dynamic performance and control scheme of variable-speed compressed air energy storage
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Optimization method for nozzle control of governing turbine
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Off-design performance of CAES systems with low-temperature thermal storage under optimized operation strategy
10.1016/j.est.2019.100787 · doi-reference
Off-design performance and operation strategy of expansion process in compressed air energy systems
10.1002/er.4284 · doi-reference
Loss characteristics and optimization method of a compressed air energy storage radial turbine with nozzle governing
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Optimal design and research for nozzle governing turbine of compressed air energy storage system
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Energy loss analysis in two-stage turbine of compressed air energy storage system: effect of varying partial admission ratio and inlet pressure
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Aerodynamic performance and flow field losses analysis: a study on nozzle governing turbine with varied regulated nozzle stator installation angle
10.1016/j.energy.2024.131464 · doi-reference
Aerodynamic performance and flow characteristics of a compressed air energy storage axial turbine with nozzle governing
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Bi-directional nozzle control of multistage radial-inflow turbine for optimal part-load operation of compressed air energy storage
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Parametric assessment, multi-objective optimization and advanced exergy analysis of a combined thermal-compressed air energy storage with an ejector-assisted Kalina cycle
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Optimal working-parameter analysis of an ejector integrated into the energy-release stage of a thermal-storage compressed air energy storage system under constant-pressure operation: a case study
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Assessment of a new combined thermal and compressed energy storage coupled with an absorption power cycle: thermodynamic study
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Integration of vortex tubes in a trigenerative compressed air energy storage system
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Design and thermodynamic performance analysis of a novel adiabatic compressed air energy storage system based on liquid piston re-pressurization
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Two novel pressure recovery devices for compressed air energy storage: a comparative study
10.1016/j.applthermaleng.2025.129228 · doi-reference
Theoretical analysis of cavern-related exergy losses for compressed air energy storage systems
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Dynamic simulation of medium–temperature thermal storage compressed air energy storage (TS–CAES) system using Aspen Hysys
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Energy efficiency analysis and off-design analysis of two different discharge modes for compressed air energy storage system using axial turbines
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