副教授
硕士生导师
教师拼音名称:konglingqi
出生日期:1973-08-18
入职时间:1998-07-01
所在单位:化工学院
学历:博士研究生
办公地点:青岛科技大学四方校区CCF-1128
性别:男
联系方式:klq@qust.edu.cn
学位:工学博士
职称:副教授
毕业院校:华南理工大学
学科:化学工程与技术其他专业
应用化学化学工程化学工艺最后更新时间:..
关键字:PROCESS SIMULATION; COPPER-OXIDE; COMBUSTION; GASIFICATION; PERFORMANCE; GENERATION; DESIGN; CYCLE; MN; CU
摘要:Chemical looping air separation (CLAS) is a promising oxygen generation technology due to its energy conser-vation nature. It can be integrated with power generation system (PGS) to improve energy efficiency by utilizing high waste heat of CLAS system. This work presents a global optimization strategy for revamping the CLAS-PGS system, in which the comprehensive performance of the system is evaluated by a novel energy, exergy, economic, environmental, and dynamic (4E-1D) analysis method. First, two original after-burner reheating (ABR) and mixed heating (MH) technologies are proposed to optimize the CLAS-HI-PGS scheme. Second, all the schemes are simulated to provide steady-state simulation results for global 4E analysis, and optimized by genetic algorithm (GA) with minimum capital investment cost (CIC) as target to further improve energy efficiency of CLAS-PGS. Finally, the dynamic behaviors of the schemes are investigated with effective control schemes designed to ensure safe and stable operation of CLAS-PGS. In order to measure additional losses caused by disturbance, the 4E analysis is also combined with dynamic analysis. The results show that the scheme combing MH with CLAS-PGS (CLAS-MH-PGS) displays best, proving the effectiveness of this proposal and providing a new way for CLAS-PGS industrial application.
卷号:261
期号:
是否译文:否