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Development of a Computer Model to Simulate the Injection Process of a Diesel Engine

机译:模拟柴油机喷射过程的计算机模型的开发

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摘要

The diesel engine injection system is greatly responsible for the emission of pollutants to the atmosphere,noise generation,and engine performance.Proper synchronization of the exact amount of fuel that can be burnt according to each crankshaft position is essential to achieve maximum power,consumption economy,and combustion without residues.In this sense,when designing an injection system,all of these factors must be taken into account.During the optimization,however,the improvement of some of them may result in detriment to others.For this reason,to achieve the system optimization,the relationship between the aforementioned variables and the parameters that characterize the injection must be established.According to this,it is important to design a strategy that allows the named"reverse modeling of the injection system",that is to say,to determine the injection system dimensions according to the system requirements.In the present work,an iterative computer model based on the continuity and energy equations,solved by finite differences algorithms,has been proposed.This model has been designed for a Bosch rotary pump and makes it possible to plot the performance of the pressure lines in the different combustion chambers,the valve lift curves,and the fuel flow injected per cylinder and cycle.In this sense,we can conclude that the proposed computer model predicts accurately the opening and closing processes in the injector needle,as well as the pressure curves in the last division of the high-pressure tube.
机译:柴油机喷油系统是造成大气中污染物排放,产生噪声和发动机性能的重要因素。根据每个曲轴位置正确燃烧可燃燃料的正确数量对于实现最大功率,节约经济至关重要。从这个意义上讲,在设计喷射系统时,必须考虑所有这些因素。但是,在优化过程中,其中一些因素的改进可能会损害其他因素。因此,为了实现系统优化,必须建立上述变量与表征喷射的参数之间的关系。据此,设计一种允许命名为“喷射系统的反向建模”的策略非常重要,也就是说,根据系统要求确定注射系统的尺寸。在本工作中,基于连续性的迭代计算机模型提出了通过有限差分算法求解的能量和能量方程。该模型是为Bosch旋转泵设计的,可以绘制不同燃烧室中压力线的性能,气门升程曲线和从这个意义上讲,我们可以得出结论,所提出的计算机模型可以准确预测喷油嘴中针阀的打开和关闭过程,以及高压管最后部分的压力曲线。

著录项

  • 来源
    《Energy & fuels》 |2005年第4期|p.1526-1535|共10页
  • 作者单位

    Department of Mechanics and Mining Engineering,EPS de Jaen,Universidad de Jaen,Campus Las Lagunillas sin,23071 Jaen,Spain,Department of Energetic Engineering and Fluid Mechanics,ESI,Universidad de Sevilla,Camino de los Descubrimientos sin,Isla de la;

    Department of Mechanics and Mining Engineering,EPS de Jaen,Universidad de Jaen,Campus Las Lagunillas sin,23071 Jaen,Spain,Department of Energetic Engineering and Fluid Mechanics,ESI,Universidad de Sevilla,Camino de los Descubrimientos sin,Isla de la;

    Department of Mechanics and Mining Engineering,EPS de Jaen,Universidad de Jaen,Campus Las Lagunillas sin,23071 Jaen,Spain,Department of Energetic Engineering and Fluid Mechanics,ESI,Universidad de Sevilla,Camino de los Descubrimientos sin,Isla de la;

    Department of Mechanics and Mining Engineering,EPS de Jaen,Universidad de Jaen,Campus Las Lagunillas sin,23071 Jaen,Spain,Department of Energetic Engineering and Fluid Mechanics,ESI,Universidad de Sevilla,Camino de los Descubrimientos sin,Isla de la;

    Department of Mechanics and Mining Engineering,EPS de Jaen,Universidad de Jaen,Campus Las Lagunillas sin,23071 Jaen,Spain,Department of Energetic Engineering and Fluid Mechanics,ESI,Universidad de Sevilla,Camino de los Descubrimientos sin,Isla de la;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TK-;
  • 关键词

  • 入库时间 2022-08-18 00:43:30

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