[1] ZARZA E, ROJAS M E, GONZáLEZ L,et al. Inditep:the first pre-commercial DSG solar power plant [J]. Solar Energy,2006,80(10): 1270-1276.
[2] ODEH S D, BEHNIA M, MORRISON G L. Hydrodynamic analysis of direct steam generation solar collectors [J]. Journal of Solar Energy Engineering-Transactions of the ASME,2000,122(1): 14-22.
[3] ECK M, STEINMANN W D. Modelling and design of direct solar steam generating collector fields [J]. Journal of Solar Energy Engineering-Transactions of the ASME, 2005,127(3): 371-380.
[4] FELDHOFF J F, BENITEZ D, ECK M,et al. Economic potential of solar thermal power plants with direct steam generation compared with HTF plants [J]. Journal of Solar Energy Engineering-Transactions of the ASME,2010,132(4): 041001-1-041001-9.
[5] BIRNBAUM J, FELDHOFF J F, FICHTNER M,et al. Steam temperature stability in a direct steam generation solar power plant [J]. Solar Energy,2011,85(4): 660-668.
[6] MONTES M J, ABÁNADES A, MARTÍNEZ-Val J M. Thermofluidynamic model and comparative analysis of parabolic trough collectors using oil,water/steam,or molten salt as heat transfer fluids [J]. Journal of Solar Energy Engineering-Transactions of the ASME,2010,132(2): 021001-1-021001-7.
[7] 高志超,隋军,刘启斌,等. 30 m2槽式太阳能集热器性能模拟研究 [J]. 工程热物理学报,2010,31(4): 541-544.

GAO Z C, SUI J, LIU Q B,et al. Simulation on the performance of a 30 m2 parabolic trough collector [J]. Journal of Engineering Thermophysics,2010,31(4): 541-544.
[8] ODEH S D, MORRISON G L, BEHNIA M. Modelling of parabolic trough direct steam generation solar collectors [J]. Solar Energy,1998,62(6): 395-406.
[9] STEPHEN K. Heat transfer in condensation and boiling [M]. Germany:Springer-Verlag,1992.
[10] FORRISTALL R. Heat transfer analysis and modeling of a parabolic trough solar receiver implemented in engineering equation solver [R]. Colorado:National Renewable Energy Laboratory,2003,NREL/TP—550—34169.