Analysis and optimization of the low-temperature solar organic Rankine cycle (ORC)

被引:341
作者
Delgado-Torres, Agustin M. [1 ]
Garcia-Rodriguez, Lourdes [2 ]
机构
[1] Univ La Laguna, Dpto Fis Fundamental & Expt Elect & Sistemas, Escuela Tecn Super & Ingn Civil & Ind, E-38206 Tenerife, Spain
[2] Univ Seville, Dpto Ingn Energet, Escuela Tecn Super Ingenieros, Seville 41092, Spain
关键词
Solar organic Rankine cycle; Solar ORC; Solar reverse osmosis; Solar desalination; REVERSE-OSMOSIS DESALINATION; WASTE HEAT-RECOVERY; THERMODYNAMIC PROPERTIES; FLUID SELECTION; WORKING FLUIDS; SYSTEM; STATE; POWER; EQUATIONS; WATER;
D O I
10.1016/j.enconman.2010.06.022
中图分类号
O414.1 [热力学];
学科分类号
摘要
Solar thermal driven reverse osmosis desalination is a promising renewable energy-driven desalination technology. A joint use of the solar thermal powered organic Rankine cycle (ORC) and the desalination technology of less energy consumption, reverse osmosis (RO), makes this combination interesting in some scarce water resource scenarios. However, prior to any practical experience with any new process, a comprehensive and rigorous theoretical study must be done in order to assess the performance of the new technology or combination of existing technologies. The main objective of the present paper is the expansion of the theoretical analysis done by the authors in previous works to the case in which the thermal energy required by a solar ORC is supplied by means of stationary solar collectors. Twelve substances are considered as working fluids of the ORC and four different models of stationary solar collectors (flat plate collectors, compound parabolic collectors and evacuated tube collectors) are also taken into account. Operating conditions of the solar ORC that minimizes the aperture area needed per unit of mechanical power output of the solar cycle are determined for every working fluid and every solar collector. The former is done considering a direct vapour generation configuration of the solar cycle and also the configuration with water as heat transfer fluid flowing inside the solar collector. This work is part of the theoretical analysis of the solar thermal driven seawater and brackish water reverse osmosis desalination technology. Nevertheless, the supplied information can be also used for the assessment of different applications of the solar ORC. In that case, results presented in this paper can be useful in techno-economic analysis, selection of working fluids of the Rankine cycle, sizing of systems and assessment of solar power cycle configuration. (C) 2010 Elsevier Ltd. All rights reserved.
引用
收藏
页码:2846 / 2856
页数:11
相关论文
共 40 条
[1]  
*AIRG, MAT SAF DAT SHEET
[2]   The potential role of organic bottoming Rankine cycles in steam power stations [J].
Angelino, G ;
Invernizzi, C ;
Molteni, G .
PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART A-JOURNAL OF POWER AND ENERGY, 1999, 213 (A2) :75-81
[3]   Multicomponent working fluids for organic rankine cycles (ORCs) [J].
Angelino, G ;
Di Paliano, PC .
ENERGY, 1998, 23 (06) :449-463
[4]  
[Anonymous], 2003, International Chemical Safety Card 1507
[5]  
[Anonymous], SCI ASS OZ DEPL 2006
[6]  
*BOC GASES, SAF DAT SHEET
[7]   Maximising the working fluid flow as a way of increasing power output of geothermal power plant [J].
Borsukiewicz-Gozdur, Aleksandra ;
Nowak, Wladyslaw .
APPLIED THERMAL ENGINEERING, 2007, 27 (11-12) :2074-2078
[8]   Reference equations of state for the thermodynamic properties of fluid phase n-butane and isobutane [J].
Buecker, D. ;
Wagner, W. .
JOURNAL OF PHYSICAL AND CHEMICAL REFERENCE DATA, 2006, 35 (02) :929-1019
[9]   Modelling and optimisation of solar organic rankine cycle engines for reverse osmosis desalination [J].
Carles Bruno, Joan ;
Lopez-Villada, Jesus ;
Letelier, Eduardo ;
Romera, Silvia ;
Coronas, Alberto .
APPLIED THERMAL ENGINEERING, 2008, 28 (17-18) :2212-2226
[10]   Double cascade organic Rankine cycle for solar-driven reverse osmosis desalination [J].
Delgado-Torres, Agustin M. ;
Garcia-Rodriguez, Lourdes .
DESALINATION, 2007, 216 (1-3) :306-313