Preliminary System Design and Off-Design Analysis for a Gas Turbine and ORC Combined Cycle

被引:7
|
作者
Cao, Yue [1 ]
Dai, Yiping [1 ]
机构
[1] Xi An Jiao Tong Univ, Inst Turbomachinery, State Key Lab Multiphase Flow Power Engn, Xian 710049, Shaanxi, Peoples R China
基金
高等学校博士学科点专项科研基金;
关键词
Gas turbine; Organic Rankine cycle; Plate-fin heat exchanger; Preliminary system design; Off-design performance; ORGANIC RANKINE-CYCLE; WASTE HEAT-RECOVERY; THERMOECONOMIC OPTIMIZATION; MULTIOBJECTIVE OPTIMIZATION; NUMERICAL OPTIMIZATION; THERMODYNAMIC ANALYSIS; PERFORMANCE ANALYSIS; POWER; PART; TEMPERATURE;
D O I
10.1061/(ASCE)EY.1943-7897.0000468
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Organic Rankine cycle (ORC) is a more efficient way to recover exhaust heat from medium-and small-scale gas turbines than conventional steam power cycles. Plate-fin heat exchangers (PFHEs) were applied as the evaporator and recuperators because gas-liquid and gas-gas heat transfers occurred. This study focused on the preliminary system design and off-design analysis of the gas turbine (GT)-ORC combined cycle. Therefore, optimum-rated parameters for the ORC and geometric parameters for the PFHEs were designed first. Based on the established off-design model and constant pressure control approach, off-design simulations were done and results showed that the combined cycle efficiency decreased monotonically with the decline of GT load. However, the ORC still had good performance and played a more important role in the combined cycle under low-load conditions. Moreover, sensitivity simulations concluded that the ambient temperature impacted the combined cycle performance mainly by the gas turbine under high-load conditions and the ORC under low-load conditions. In addition, the ORC had better performance with higher ambient temperature. This model can provide reference parameters for detailed design of the GT-ORC combined cycle and predict its off-design performance under variable conditions. (c) 2017 American Society of Civil Engineers.
引用
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页数:13
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