...
首页> 外文期刊>International Journal of Automotive Technology >INFLUENCE OF THE ACCELERATING OPERATION MECHANISM ON THE COMBUSTION NOISE IN DI-DIESEL ENGINES
【24h】

INFLUENCE OF THE ACCELERATING OPERATION MECHANISM ON THE COMBUSTION NOISE IN DI-DIESEL ENGINES

机译:加速运行机理对二柴油机燃烧噪声的影响

获取原文
获取原文并翻译 | 示例
           

摘要

This paper focuses on the mechanisms of combustion noise during the accelerating operation of multi-cylinder diesel engines using testing technology for the transient conditions of IC engines. Based on impact factors, such as the gas dynamic load and cylinder pressure oscillations, tests and analysis of the combustion noise during transient and steady-state conditions for different loads are made on four-cylinder naturally aspirated engines, turbocharged engines, EGR-introduced engines, and high pressure common rail engines. The laws of combustion noise difference for the same engine speed and load are researched during transient and steady-state conditions. It is found that during transient conditions, the maximum pressure rise rate and the high frequency oscillation amplitude of the cylinder pressure are all higher than those observed during steady-state conditions for the same engine speed and load. With their joint action, the combustion noise during transient conditions is greater than that during steady-state conditions. Turbocharging is useful in reducing the combustion noise during transient conditions. Turbocharging has a better effect on the control over the combustion noise during transient conditions with a constant engine speed and an increasing torque than in conditions with a constant torque and an increasing engine speed. One of the main reasons for different control effects on the combustion noise is that turbocharging causes different wall temperatures inside combustion chambers. The introduction of the appropriate EGR is helpful in the reduction of the combustion noise during transient conditions. The key to the control of combustion noise with EGR during transient conditions is whether a real-time adjustment to the EGR rate can be made to achieve the optimization of the EGR rates for different transient conditions. By means of analyzing the differences in the combustion noise between the transient and steady-state conditions for different pilot injection controls, we obtain a strategy for controlling the combustion noise during transient conditions with a pilot injection. Compared with the steady-state conditions, a larger pilot injection quantity and a longer interval between the main injection and pilot injection should be selected for transient conditions, and this is verified through tests.
机译:本文利用内燃机瞬态工况测试技术,重点研究了多缸柴油机加速运行过程中燃烧噪声的机理。基于诸如气体动态负载和气缸压力振荡之类的影响因素,在四缸自然吸气发动机,涡轮增压发动机,引入EGR的发动机上对瞬态和稳态条件下不同载荷下的燃烧噪声进行了测试和分析。和高压共轨发动机。研究了瞬态和稳态条件下相同发动机转速和负载下燃烧噪声差异的定律。可以发现,在瞬态条件下,相同发动机转速和负载下,最大压力上升率和气缸压力的高频振荡幅度均高于稳态条件下的观察结果。由于它们的共同作用,瞬态条件下的燃烧噪声大于稳态条件下的燃烧噪声。涡轮增压有助于减少瞬态条件下的燃烧噪音。与在恒定转矩和发动机转速增加的情况下相比,涡轮增压在瞬态状态下以恒定的发动机转速和增加的转矩对燃烧噪声的控制效果更好。对燃烧噪声的不同控制效果的主要原因之一是涡轮增压在燃烧室内造成不同的壁温。适当的EGR的引入有助于减少瞬态条件下的燃烧噪声。在瞬态条件下用EGR控制燃烧噪声的关键在于,是否可以实时调整EGR率以实现不同瞬态条件下EGR率的优化。通过分析不同引燃喷射控制的瞬态和稳态条件之间燃烧噪声的差异,我们获得了一种在具有引燃喷射的瞬态条件下控制燃烧噪声的策略。与稳态条件相比,过渡条件应选择较大的引燃喷射量和主喷射与引燃喷射之间的间隔较长,这已通过测试得到验证。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号