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Modification and performance evaluation of a mono-valve engine.

机译:单气门发动机的改装和性能评估。

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摘要

A four-stroke engine utilizing one tappet valve for both the intake and exhaust gas exchange processes has been built and evaluated. The engine operates under its own power, but has a reduced power capacity than the conventional 2-valve engine. The reduction in power is traced to higher than expected amounts of exhaust gases flowing back into the intake system. Design changes to the cylinder head will fix the back flow problems, but the future capacity of mono-valve engine technology cannot be estimated.;The back flow of exhaust gases increases the exhaust gas recirculation (EGR) rate and deteriorates combustion. Intake pressure data shows the mono-valve engine requires an advanced intake valve closing (IVC) time to prevent back flow of charge air. A single actuation camshaft with advanced IVC was tested in the mono-valve engine, and was found to improve exhaust scavenging at TDC and nearly eliminated all charge air back flow at IVC. The optimum IVC timing is shown to be approximately 30 crank angle degrees after BDC.;The mono-valve cylinder head utilizes a rotary valve positioned above the tappet valve. The open spaces inside the rotary valveand between the rotary valve and tappet valve represent a common volume that needs to be reduced in order to reduce the base EGR rate. Multiple rotary valve configurations were tested, and the size of the common volume was found to have no effect on back flow but a direct effect on the EGR rate and engine performance. The position of the rotary valve with respect to crank angle has a direct effect on the scavenging process. Optimum scavenging occurs when the intake port is opened just after TDC.
机译:已经开发并评估了使用一个挺杆气门进行进气和排气交换过程的四冲程发动机。发动机以自己的功率运行,但功率容量比传统的2气门发动机低。功率的降低可追溯到回流到进气系统中的废气量高于预期量。汽缸盖的设计变更将解决回流问题,但无法估计单气门发动机技术的未来能力。排气的回流会增加排气再循环(EGR)率并恶化燃烧。进气压力数据显示,单气门发动机需要提前进气门关闭(IVC)时间以防止增压空气回流。在单气门发动机上对具有先进IVC的单驱动凸轮轴进行了测试,发现该凸轮轴可改善TDC的排气清除,并几乎消除了IVC的所有增压空气回流。最佳IVC正时显示为在BDC后大约30度曲柄角。;单气门缸盖利用位于挺杆阀上方的旋转阀。旋转阀内部以及在旋转阀和挺杆阀之间的敞开空间代表需要减少的公共容积,以降低基本EGR率。测试了多个旋转阀配置,发现公共容积的大小对回流没有影响,但对EGR率和发动机性能有直接影响。旋转阀相对于曲柄角的位置对扫气过程有直接影响。当进气口在TDC之后立即打开时,会进行最佳的扫气。

著录项

  • 作者

    Behrens, Justin W.;

  • 作者单位

    Southern Illinois University at Carbondale.;

  • 授予单位 Southern Illinois University at Carbondale.;
  • 学科 Engineering Mechanical.;Energy.
  • 学位 M.S.
  • 年度 2011
  • 页码 90 p.
  • 总页数 90
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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