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Optimization of multiple fuel injection events in a common rail diesel engine for low temperature combustion.

机译:优化了共轨柴油发动机中用于低温燃烧的多种燃料喷射事件。

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摘要

As one of the many strategies being researched in order to reduce NO x and particulate matter formation, low temperature combustion works without the need for excessive after-treatment equipment. This paper is divided into two main parts. First, a computational model that simulates the thermodynamic response of a 2.0 L multi-injection direct injection diesel engine was developed. The second part of the research involved optimization of each of the fuel injection events in order for the engine to operate in the low temperature combustion region.Two objective functions were identified to optimize the injection events. The first maximized the peak cylinder temperatures, and the second minimized the difference in work output between a single injection and multiple injections. A constraint on the first objective function was established with a temperature limit of 2000 K, which is the definition of low temperature combustion.The computational model, created in Matlab 7.0 (Mathworks, Inc.), was validated with data provided by a simulation of a 2.0 L diesel engine using commercially available software, Virtual 4-Stroke. The simulations were compared against identical engines with single-injection strategies and showed good agreement. For the multi-injection simulation, the heat release rates (HRR) of each injection were governed by an equation found by regression fitting HRR with gas temperatures, cylinder volume and air-fuel ratios. The equation showed good agreement when used as a single-injection HRR limiter therefore, it was also used for multi-injections. The final results provide an optimized injection strategy that achieves low temperature combustion.
机译:作为减少NOx和颗粒物形成的众多策略之一,低温燃烧无需大量的后处理设备即可工作。本文分为两个主要部分。首先,建立了一个计算模型,该模型模拟了2.0升多次喷射直喷柴油机的热力学响应。研究的第二部分涉及优化每个燃料喷射事件,以使发动机在低温燃烧区域中运行。确定了两个目标函数来优化喷射事件。第一个最大化气缸的峰值温度,第二个最小化单次注入和多次注入之间的功输出差异。建立了第一个目标函数的约束条件,即温度极限为2000 K,这是低温燃烧的定义。在Matlab 7.0(Mathworks,Inc.)中创建的计算模型已通过以下方法的仿真得到了验证:使用商用软件Virtual 4-Stroke的2.0 L柴油发动机。将模拟与具有单喷射策略的相同发动机进行了比较,并显示出良好的一致性。对于多次喷射模拟,每次喷射的放热率(HRR)由方程式控制,该方程式通过将HRR与气体温度,气缸容积和空燃比进行回归拟合而得到。该方程式用作单次注入HRR限制器时显示出良好的一致性,因此,它也用于多次注入。最终结果提供了实现低温燃烧的优化喷射策略。

著录项

  • 作者

    Mirsky, Scott.;

  • 作者单位

    Northern Illinois University.;

  • 授予单位 Northern Illinois University.;
  • 学科 Engineering Mechanical.
  • 学位 M.S.
  • 年度 2010
  • 页码 75 p.
  • 总页数 75
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:36:51

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