期刊文献+

回收余热能的气动/内燃复合循环效率 被引量:4

Efficiency analysis of pneumatic and internal combustion combined cycle for exhaust heat recycle
下载PDF
导出
摘要 为了回收内燃机排气余热能,提出气动/内燃复合循环.该复合循环利用内燃机排气过程提前开启,以提高排气压力,保证内燃机排气和压缩空气顺利混合.基于热力学理论建立复合循环p-V图,分析复合循环工作过程和循环效率,对循环效率进行初步计算.结果表明:随着排气提前角的增大,复合循环热力学第一定律效率和第二定律效率均呈现先增加后减小的趋势;随着内燃循环转速的增加,复合循环最佳排气提前角呈现减小趋势,而复合循环热力学第一定律效率和第二定律效率呈现逐渐增加的趋势,但增加幅度逐渐减小. The pneumatic and internal combustion combined cycle was proposed in order to recycle the exhaust heat of internal combustion engine. The exhaust valve open timing was advanced in this combined cycle,which can raise the exhaust pressure and lead to smoothly full mix of compressed air and exhaust gas. The p-V diagram of combined cycle was built based on the thermodynamics theory, and it was used to analyze the working process and cycle efficiency. The cycle efficiency was preliminarily calculated. Results show that the first law and second law thermodynamics efficiency grow in the beginning and decrease with the increasing of the exhaust valve open timing. The optimum exhaust valve open timing drops as the internal combustion engine speed increases, while the first law and second law thermodynamics efficiency of combined cycle increase in the same condition, but with its increasing rate falling gradually.
出处 《浙江大学学报(工学版)》 EI CAS CSCD 北大核心 2014年第4期649-652,703,共5页 Journal of Zhejiang University:Engineering Science
基金 国家"973"重点基础研究发展规划资助项目(2011CB707205) 国家自然科学基金资助项目(50976104)
关键词 排气余热能回收 复合循环 排气提前角 循环效率 exhaust heat reeycle combined cyele exhaust advance angle cycle efficiency
  • 相关文献

参考文献9

  • 1Argonne National Laboratory. Vehicle technologies heavy vehicle program: FY 2007 benefits analysis, methodology and results final report [R]. Illinois: UChieago Argonne, 2006.
  • 2WAYNE E. Innovative approaches to improving engine efficiency [C]// Diesel Engine-Efficiency and Emissions Research (DEER)Conference. Detroit: [s. n.], 2007.
  • 3CHEN H S, DING Y L, LI Y L, et al. Air fuelled zero emission road transportation: a comparative study [J]. Applied Energy, 2011, 88(1) : 337 - 342.
  • 4Iris A. Turning exhaust heat into extra power [EB/ OL]. [2012-11-22]. http: // www. heat2power.net/press/heat2power in Race_ Tech_ Magazine_ March_ 2009. pdf.
  • 5胡军强,俞小莉,陈平录,聂相虹.气动-柴油混合动力空气管理策略研究[J].内燃机工程,2009,30(4):7-11. 被引量:7
  • 6聂相虹,俞小莉,胡军强,陈平录.进排气开启角对气动发动机的影响及其优化设计[J].工程设计学报,2009,16(1):16-20. 被引量:13
  • 7HUANG K D, HOAI N N, KHONG V Q. Validation of a dynamic model of a hybrid pneumatic power system [C]// Advanced Hybrid Vehicle Powertrains. Detroit: SAE, 2009.
  • 8HUANG K D, KHONG V Q. Energy merger pipe opti mization of hybrid pneumatic power system by using CFD [J]. International Journal of Green Energy, 2010, 7(3) : 310 - 325.
  • 9LID F, WANG L, YE J, et al. Valve strategy design for braking energy regeneration through engine air com- pression [C]//The 2012 International Conference on Advanced Vehicle Technologies and Integration. Changchun: [s. n.], 2012.

二级参考文献9

共引文献17

同被引文献17

引证文献4

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部