汽车工程 ›› 2023, Vol. 45 ›› Issue (4): 672-680.doi: 10.19562/j.chinasae.qcgc.2023.04.016

所属专题: 发动机&排放专题2023年

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柴油机缸内两相流卷吸效应对燃烧模式的影响

杨淼,林学东,李德刚(),刘迎澍   

  1. 吉林大学,汽车仿真与控制国家重点试验室,长春  130022
  • 收稿日期:2022-10-17 修回日期:2022-11-05 出版日期:2023-04-25 发布日期:2023-04-19
  • 通讯作者: 李德刚 E-mail:ldg@jlu.edu.cn
  • 基金资助:
    * 吉林省发改委产业技术研究与开发项目(2016C038);吉林省科技发展计划项目(20150101032JC)

Influence of Entrainment Effect of Two-Phase Flow on Combustion Mode in Diesel Engine

Miao Yang,Xuedong Lin,Degang Li(),Yingshu Liu   

  1. Jilin University,State Key Laboratory of Automotive Simulation and Control,Changchun  130022
  • Received:2022-10-17 Revised:2022-11-05 Online:2023-04-25 Published:2023-04-19
  • Contact: Degang Li E-mail:ldg@jlu.edu.cn

摘要:

预混合燃烧和扩散燃烧是柴油机的基本燃烧模式,本文选取高压共轨直喷柴油机两种典型燃烧室:缩口型燃烧室和扩口型燃烧室,通过仿真计算研究在不同背景气流环境下基于卷吸效应的混合气形成机理。结果发现:喷射初期油束贯穿背景气流时,油束表面小尺度涡流引起的卷吸效应是形成预混合气的主要原因;对一定的喷射条件不同背景气流直接影响卷吸效应;缩口型燃烧室喷射初期卷吸作用强,预混合速率较快,且大部分燃料在燃烧室内部强滚流的作用下快速扩散燃烧,所以属于预混合扩散燃烧(PDC)模式,虽预混合燃烧占比小,但高温区宽;扩口型燃烧室虽喷射初期卷吸效应相对较弱,预混合燃烧速率较低,但油束冲击壁面凸台后形成二次预混合过程,使预混合气形成持续期延长,预混合燃烧占比大,形成双预混合扩散燃烧(DPDC)模式,通过这种DPDC燃烧模式可减小高温区域面积,由此有效抑制NO x 的生成。

关键词: 燃烧模式, 卷吸效应, 涡流强度, NO x 生成机理

Abstract:

Premixed combustion and diffusion combustion are the basic combustion modes of diesel engines. In this paper, the two typical combustion chambers of the reentrant combustion chamber and flared combustion chamber of high-pressure common-rail direct injection diesel engine are selected to study the mixture formation mechanism based on the entrainment effect under different background airflow conditions by simulation calculation. The results show that the entrainment effect caused by the small-scale vortex on the surface of the oil spray is the main reason for the formation of the pre-mixture when the oil spray penetrates the background air flow at the initial stage of injection. The entrainment effect is directly affected by different background airflow under certain injection condition. For the reentrant combustion chamber, at the initial stage of injection, there is strong entrainment effect and a fast premixing rate. Most of the fuel is rapidly diffused and combusted under the action of strong tumble inside the combustion chamber. Therefore, it belongs to the premixed diffusion combustion mode (PDC). Although the proportion of premixed combustion is small, the high-temperature zone is wide. For the flared combustion chamber, although there is relatively weak entrainment effect and a low premixed combustion rate at the initial stage of injection, a secondary premixing process is formed after the oil spray impinges on the wall convex platform, which extends the formation duration of the pre-mixture and increases the proportion of premixed combustion to form a double-premixed diffusion combustion mode (DPDC). Through the DPDC combustion mode, the high-temperature area is reduced, thus effectively inhibiting the generation of NO x .

Key words: combustion mode, entrainment effect, vortex intensity, NO x generation mechanism