西安交通大学动力工程多相流国家重点实验室,西安,710049
网络首发:2009-11-10,
纸质出版:2009
移动端阅览
何茂刚, 张新欣, 曾科. 车用发动机余热回收的新型联合热力循环[J]. 西安交通大学学报, 2009,43(11):1-5+99.
A New Combined Thermodynamic Cycle for Waste Heat Recovery of Vehicle Engine[J]. 2009, 43(11): 1-5+99.
针对汽车发动机排气余热、冷却水余热和润滑油余热的特点
提出了一种新型的适用于车用发动机余热回收的热力循环系统.此系统由用来回收温度较高的发动机排气余热及润滑油余热的有机Rankine循环(Organic Rankine Cycle
ORC)和用来回收温度较低的发动机冷却水余热的Kalina循环耦合而成.基于P-R状态方程
编写了计算程序对此热力循环系统进行了热力学性能分析
还分析了采用不同有机工质对循环整体性能的影响.与传统的只回收发动机排气余热的热力循环系统相比
文中提出的构型其余热回收效率更高.当采用环戊烷为ORC工质时
循环系统的整体效率为20.83%; 当采用R113为ORC工质时
循环系统的整体效率为16.51%.
From the characteristics of waste heat in exhaust
cooling water and lubricant
a new thermodynamic cycle for waste heat recovery of vehicle engines was proposed. The present system consists of two cycles
organic Rankine cycle(ORC)for recovering the waste heat in high-temperature exhaust and lubricant and Kalina cycle for recovering the waste heat in low-temperature cooling water. Based on P-R equation of state
the thermodynamic performance of the cycle was theoretically calculated with a self-written computing program. Then the overall performance of the cycle with different organic working fluids was analyzed individually. Compared with the conventional cycle configuration used for only recovering the exhaust heat
the present cycle has higher waste heat recovery efficiency. The overall efficiency of the cycle with cyclopentane and R113 is 20.83% and 16.51%
respectively.
张征, 曾美琴, 司广树. 温差发电技术及其在汽车发动机排气余热中的应用[J]. 能源技术, 2004,25(3): 120-123.
ZHANG Zheng, ZENG Meiqin, SI Guangshu. Thermoelectric generation technology and its application in exhaust waste heat utilizing for automobiles engine[J]. Energy Technology, 2004,25(3): 120-123.
秦朝葵, 杨志. 一种使用发动机余热的新型客车采暖系统[J]. 柴油机, 2005(5): 41-43.
QIN Chaokui, YANG Zhi. A novel heating system for coach making use of waste heat[J]. Diesel Engine, 2005(5): 41-43.
IYER R C,GOHIL P, NAGARSHETH H J, et al. Development of a vapor compression air conditioning system utilizing the waste heat potential of exhaust gases in automobiles[C/OL]∥Proceedings of Future Transportation Technology Conference of Society of Automotive Engineers. [2009-03-02]. http:∥www.sae.org/servlets/productDetail?PROD_TYP=PAPERPROD_CD=2005-01-3447.
王鲁峰, 李辉, 万小利, 等. 模拟多种发动机尾气热源的吸附制冷试验台研究[J]. 能源工程, 2004(3):5-7.
WANG Lufeng, LI Hui, WAN Xiaoli, et al. Study on adsorption refrigeration experimental bench simulating multi-engine tail gas heat source[J]. Energy Engineering, 2004(3):5-7.
曾科, 高可, 何茂刚,等. 车用汽油机能量分布及排气余热的火用分析研究 [C]∥ 中国内燃机学会2006年学术年会暨燃烧、测试分会联合学术年会论文集.北京:中国内燃机学会,2006:56.
TANAKA Y, MACHINDA, WATANABE Y, et al. Exhaust gas heat recovery system in internal combustion engine: US, 4394813[P]. 1981-02-22.
KOBO I, GHUMAN A S. Rankine diesel integrated system: US, 4901531 [P]. 1988-01-29.
ENDOH T, KOMATSU H, MINEMI M, et al. Waste heat recovery device for internal combustion engine: US, 6732525 [P]. 2001-01-17.
NIIKURA H, TANIGUCHI H, UDA M, et al. Rankine cycle device of internal combustion engine: US, 6845618 [P]. 2001-10-05.
MINEMI M, MIURA H, YOSHIDA K, et al. Rankine cycle device of internal combustion engine: US, 6910333 [P]. 2001-10-05.
刘纪福,白荣春,山本格. 实用余热回收和利用技术[M]. 北京: 机械工业出版社, 1993:137.
KALINA A I. Combined cycle system with novel bottoming cycle [J]. ASME Journal of Engineering for Gas Turbines and Power, 1984,106:737-742.
MLCAK H A. Kalina cycle concepts for low temperature geothermal [J]. Geothermal Resources Council Transactions, 2002,26:707-713.
Recurrent Engineering. Kalina cycle technology waste heat applications [R/OL].[2009-03-02]. http:∥www.chpcenternw.org/NwChpDocs/ChpWkshop_20050302_ConversionTechnologies_Mirolli.pdf.
张新欣,何茂刚,曾科,等. 发动机余热利用蒸气动力循环的工质筛选 [C/CD]∥ 中国工程热物理学会2008年工程热力学与能源利用学术会议论文集. 北京:中国工程热物理学会, 2008:080169.
ZHANG Ying, HE Maogang, JIA Zhen, et al. First law-based thermodynamic analysis on Kalina cycle [J]. Frontiers of Energy and Power Engineering in China, 2008, 2(2):145-151.
高可. 车载汽油发动机余热回收的后接蒸汽动力装置的研究 [D].西安:西安交通大学能源与动力工程学院, 2007.
陈亚平. 简化型卡列纳循环的热力分析 [J]. 热力发电, 1997(4):20-23.
CHEN Yaping. Thermodynamic analysis of a simplified Kalina cycle [J]. Thermal Power Generation, 1997(4):20-23.
0
浏览量
4
下载量
9
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621