Comprehensive analysis and optimization of Kalina-Flash cycles for low-grade heat source

被引:47
作者
Cao, Liyan [1 ]
Wang, Jiangfeng [1 ]
Chen, Liangqi [1 ]
Dai, Yiping [1 ]
机构
[1] Xi An Jiao Tong Univ, Sch Energy & Power Engn, Shaanxi Engn Lab Turbomachinery & Power Equipment, Inst Turbomachinery, Xian 710049, Shaanxi, Peoples R China
基金
中国国家自然科学基金;
关键词
Kalina-Flash cycle; Low-grade heat source; Thermodynamic analysis; Economic analysis; Optimization; WASTE HEAT; PRESSURE-DROP; POWER-GENERATION; EXERGY ANALYSIS; RECOVERY; ORC; SYSTEM; EXCHANGER; DRIVEN; PLANTS;
D O I
10.1016/j.applthermaleng.2017.12.036
中图分类号
O414.1 [热力学];
学科分类号
摘要
In this paper, two configurations of Kalina-Flash cycles (KFC) are proposed to recover low-grade heat source. The thermodynamic and economic models of Kalina-Flash cycles are established. A numerical simulation is conducted, and a parametric analysis is performed to examine the effect of five key parameters, including separator temperature, separator pressure, ammonia mass fraction of ammonia-water basic solution, flash pressure and pinch-point temperature difference, on the thermodynamic and economic performances of Kalina-Flash cycles. Furthermore, a single-objective optimization and a multi objective optimization are carried out by genetic algorithm and Non-dominated sorting genetic algorithm-II to obtain the optimum thermodynamic and economic performances. The single-objective optimization results show that the Kalina-Flash cycles can achieve higher exergy efficiency and lower specific investment cost than Kalina cycle does. The multi-objective optimization results of Kalina-Flash cycles present the Pareto frontier solutions, which is a series of optimum solutions for exergy efficiency and total capital investment. The Pareto frontier solutions indicate that Kalina-Flash cycles are superior to Kalina cycle in the aspect of thermodynamic and economic performances. (C) 2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:540 / 552
页数:13
相关论文
共 41 条
[1]   Plate heat exchanger literature survey and new heat transfer and pressure drop correlations for refrigerant evaporators [J].
Ayub, ZH .
HEAT TRANSFER ENGINEERING, 2003, 24 (05) :3-16
[2]   Heat recovery from Diesel engines: A thermodynamic comparison between Kalina and ORC cycles [J].
Bombarda, Paola ;
Invernizzi, Costante M. ;
Pietra, Claudio .
APPLIED THERMAL ENGINEERING, 2010, 30 (2-3) :212-219
[3]  
Conde-Petit M., 2006, THERMOPHYSICAL PROPE
[4]   Parametric optimization and comparative study of organic Rankine cycle (ORC) for low grade waste heat recovery [J].
Dai, Yiping ;
Wang, Jiangfeng ;
Gao, Lin .
ENERGY CONVERSION AND MANAGEMENT, 2009, 50 (03) :576-582
[5]   Advanced exergy analysis of the Kalina cycle applied for low temperature enhanced geothermal system [J].
Fallah, M. ;
Mohammad, S. ;
Mahmoudi, S. ;
Yari, M. ;
Ghiasi, R. Akbarpour .
ENERGY CONVERSION AND MANAGEMENT, 2016, 108 :190-201
[6]   Performance evaluation of Kalina cycle subsystem on geothermal power generation in the oilfield [J].
Fu, Wencheng ;
Zhu, Jialing ;
Zhang, Wei ;
Lu, Zhiyong .
APPLIED THERMAL ENGINEERING, 2013, 54 (02) :497-506
[7]   Power Augmentation in a Kalina Power Station for Medium Temperature Low Grade Heat [J].
Ganesh, N. Shankar ;
Srinivas, T. .
JOURNAL OF SOLAR ENERGY ENGINEERING-TRANSACTIONS OF THE ASME, 2013, 135 (03)
[8]   Thermodynamic Assessment of Heat Source Arrangements in Kalina Power Station [J].
Ganesh, N. Shankar ;
Srinivas, T. .
JOURNAL OF ENERGY ENGINEERING, 2013, 139 (02) :99-108
[9]   Assessment of boiling and condensation heat transfer correlations in the modelling of plate heat exchangers [J].
Garcia-Cascales, J. R. ;
Vera-Garcia, F. ;
Corberan-Salvador, J. M. ;
Gonzalvez-Macia, J. .
INTERNATIONAL JOURNAL OF REFRIGERATION-REVUE INTERNATIONALE DU FROID, 2007, 30 (06) :1029-1041
[10]  
GERUNDA A, 1981, CHEM ENG-NEW YORK, V88, P81