期刊文献+

生物乙醇喷雾蒸发和预混过程的数值模拟研究 被引量:2

Study of the Numerical Simulation of the Atomization Vaporization and Premixed Process of a Bioethanol
原文传递
导出
摘要 基于生物乙醇燃料的贫燃预混、预蒸发燃烧技术(Lean Premixed Pervaporation,LPP),采用数值模拟方法,研究了预混室内生物乙醇雾化蒸发流场,分析了预热空气温度为500、600和1 000 K以及旋流数为0.47、0.8和1.41时的生物乙醇蒸发和气体混合特性的规律。研究表明:在LPP预混室旋流流场中,中心回流区宽度随预混室距离的增加先增大后减小,并且会受喷雾射流的影响拉伸变长,中心回流区随旋流强度的增大更贴近喷雾出口,角回流区的长度随旋流强度增大而缩短直至消失,旋流强度对液雾整体蒸发速率影响不大,但会影响液雾分布;进气温度增加会增大进气速度,提高液滴蒸发速率,缩短液雾炬长度;液滴蒸发过程存在一定程度上的压力振荡,会对LPP不稳定燃烧过程产生一定影响。 Based on the lean premixed and prevaporization (LPP) combustion technology for a bioethanol, a numerical simulation method was adopted to study the atomization and vaporization flow field of a bioethanol inside the premixed chamber and analyze the law governing the vaporization and mixing characteristics of the bioethanol with gases when the preheated air temperature is 500,600 and 1 000 K as well as the swirling number is 0.47,0.8 and 1.41 respectively. It has been found that in the swirling flow field inside the LPP premixed chamber, the width of the central flow return zone will first increase and then decrease with an increase of the distance of the premixed chamber from the central flow return zone and become widened as influenced by the atomization and jet flow. The central flow return zone will be more close to the atomization outlet with an increase of the swirling intensity. The length of the flow return zone will become shortened until zero with an increase of the swirling intensity. Furthermore, the swirling intensity will have not a big influence on the overall vaporization speed of the liquid fog, however, will have an influence on the distribution of the liquid fog. To increase the gas inlet temperature will increase the gas inlet speed, enhance the vaporization speed of the liquid drops and shorten the length of the liquid fog torch. There will exist a pressure oscillation in the vaporization process of the liquid drops to a certain extent and such an oscillation will produce a certain influence on the LPP unsteady combustion process.
作者 刘晖 张财红 刘联胜 李楠 LIU Hui;ZHANG Cai-hong;LIU Lian-sheng;LI Nan(College of Vehieles and Energy Sources, Yanshan University, Qinhuangdao, China,Post Code: 066004;College of Energy Source and Environment Engineering, Hebei University of Teehnology,Tianjin, China, Post Code:300401)
出处 《热能动力工程》 CAS CSCD 北大核心 2018年第6期34-40,共7页 Journal of Engineering for Thermal Energy and Power
基金 河北省高等学校科学技术研究项目(QN2016082) 燕山大学基础研究专项课题(16LGB014)~~
关键词 贫燃预混 预蒸发 喷雾 浓度分布 压力振荡 lean combustion premixing prevaporization atomization concentration distribution pressure oscillation
  • 相关文献

参考文献8

二级参考文献43

  • 1张源雪,刘联胜,杨华,衡国辉,杜聪,张财红.气泡雾化喷嘴燃烧产物成分的实验研究[J].燃烧科学与技术,2006,12(5):442-446. 被引量:2
  • 2刘联胜,杨华,衡国辉,杜聪,张财红.气液质量流量比对气泡雾化喷嘴燃烧特性的影响[J].燃烧科学与技术,2007,13(1):10-14. 被引量:8
  • 3夏兴兰.涡流室式柴油机三维燃烧模拟计算与分析.江苏理工大学博士学位论文[M].,1998.. 被引量:1
  • 4Sovani S D, Sojka P E, Lefbvre A H. Effervescent atomization[J]. Progress in Energy and Combustion Science, 2001 27(4) : 483-521. 被引量:1
  • 5Geckler S. Effervescent Atomization of Visco-Elastic Liquids [ D]. West Lafayette, USA: Purdue University, 1994. 被引量:1
  • 6Panchagnula M V, Sojka P E. Spatial droplet velocity and size profile in effervescent atomizer-produced spray[ J]. Fuel, 1999, 78(6): 729-741. 被引量:1
  • 7Liu Liansheng, Yang Hua, Wu Jinxiang, et al. Studies on the flow-field downstream of the annular-spout effervescent atomizer[ C]// 9th Conference on Liquid Atomization and Spray System. Shanghai, 2004: 84-90. 被引量:1
  • 8Bar-Kohany T , Sher E . Effervescent atomization under sub-sonic and choked conditions: A theoretical approach [ J ]. Chemical Engineering Science, 2004, 59 : 5987-5995. 被引量:1
  • 9Sovani S D , Chou E , Sojka P E. High pressure effervescent atomization: Effect of ambient pressure on spray cone angle[J]. Fuel, 2001, 80: 427-435. 被引量:1
  • 10Lawler A, Wade R A. Flame length and pollutant emission characteristics of effervescent atomizer/burner stabilized jet flames, combustion fundamental and applications [ C]// Proceedings of the 1996 Technical Meeting of the Central State Section of the Combustion Institute. Missouri USA, 1996. 被引量:1

共引文献46

同被引文献16

引证文献2

二级引证文献5

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