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Simulation of Scavenging Process, Internal Mixture Preparation, and Combustion of a Gasoline Direct Injection Two-Cylinder Two-Stroke Engine

机译:清除过程的模拟,内部混合物制备和汽油直喷双缸双冲程发动机的燃烧

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The continuous improvement of the numerical methods together with the increase of computer power allows the simulation of more and more complex technical problems even for increasing calculation domains. In order to get effective and significant results for the two-stroke two-cylinder engine, the simulation of the complete geometry with both cylinders and the complete exhaust port is required. However, the simulation requires several revolutions until the gas dynamic inside the exhaust port achieves a steady state. Hence, the simulation of a two-cylinder two-stroke engine consumes a lot of calculation time; nevertheless, it is still acceptable in the development process of a new engine. This paper covers the discussion of the simulation of a two-stroke two-cylinder high-performance engine using the commercial CFD Code Fluent 6.3.26. The used settings for the simulation, like the turbulence model, injection settings, combustion model and reduced reaction mechanism are presented. The results of the scavenging process, internal mixture preparation and combustion are also discussed in detail. Test bench results of the fired engine were used for the validation of the simulation. The main focus lies on the accuracy of the results using the standard models from the conventional CFD code Fluent and their computational efficiency. Finally, the use of the simulation for development tasks, e.g., the improvement of a two-cylinder two-stroke engine, will be demonstrated.
机译:即使用于增加计算域,数值方法的连续改进与计算机功率的增加也允许越来越复杂的技术问题。为了使双行程两缸发动机获得有效和显着的结果,需要使用圆柱体和完整排气口的完整几何形状的仿真。然而,仿真需要若干旋转,直到排气口内的气体动态实现稳定状态。因此,两个圆柱形双行程发动机的仿真消耗了大量的计算时间;尽管如此,在新发动机的开发过程中仍然可以接受。本文介绍了使用商业CFD代码流畅的6.3.26探讨了双程两缸高性能发动机的仿真。提出了仿真的使用装置,如湍流模型,注射设置,燃烧模型和减少的反应机制。还详细讨论了清除过程,内部混合物制备和燃烧的结果。燃烧引擎的测试台结果用于验证模拟。主要焦点在于使用传统的CFD代码流畅的标准型号的结果的准确性及其计算效率。最后,将说明对发展任务的模拟,例如,将说明双缸两冲程发动机的改进。

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