[1] GWEC.Global wind energy outlook 2010[R].Proceedings of the Global Wind Energy Council,Brussels,2010. [2] ZHAO Z Y,CHANG R D.How to implement a wind power project in China——management procedure and model study[J].Renewable Energy,2013,50:950-958. [3] HOLTTINEN H,MEIBOM P,ORTHS A,et al.Impacts of large amounts of wind power on design and operation of power systems,results of IEA collaboration[J].Wind Energy,2011,14(2):179-192. [4] LUND H.Large-scale integration of wind power into different energy systems[J].Energy,2005,30(13):2402-2412. [5] HASNAIN S M.Review on sustainable thermal energy storage technologies[J].Energy Conversion and Management,1998,39(11):1127-38. [6] CAVALLO A.Controllable and affordable utility-scale electricity from intermittent wind resources and compressed air energy storage(CAES)[J].Energy,2007,32(2):120-7. [7] KUSHNIR R,DAYAN A,ULLMANN A.Temperature and pressure variations within compressed air energy storage caverns[J].International Journal of Heat and Mass Transfer,2012,55(21):5616-5630. [8] RAJU M,KHAITAN S K.Modeling and simulation of com-pressed air storage in caverns:a case study of the Huntorf plant[J].Applied Energy,2012,89(1):474-481. [9] XIA C,ZHOU Y,ZHOU S,et al.A simplified and unified analytical solution for temperature and pressure variations in compressed air energy storage caverns[J].Renewable Energy,2015,74:718-726. [10] 李雪梅,杨科,张远.AA-CAES系统储气室热力学特性研究[J].工程热物理学报,2015,3:012. [11] ZHANG Y,YANG K,LI X,et al.The thermodynamic effect of air storage chamber model on advanced adiabatic compressed air energy storage system[J].Renewable Energy,2013,57:469-478. [12] 刘金超,徐玉杰,陈宗衍,等.压缩空气储能储气装置发展现状与储能特性分析[J].科学技术与工程,2014(35):148-156. |