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Cfd Diagnostic Methodology for the Assessment of Mixture Formation Quality in GDI Engines

机译:CFD诊断方法论,用于评估GDI发动机的混合气形成质量

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摘要

The fuel injection plays a crucial role in determining the mixture formation process in Gasoline Direct Injection (GDI) engines. Pollutant emissions, and soot emissions in particular, as well as phenomena affecting engine reliability, such as oil dilution and injector coking, are deeply influenced by the injection system features, such as injector geometric characteristics (such as injector type, injector position and targeting within the combustion chamber) and operating characteristics (such as injection pressure, injection phasing, etc.). In this paper, a new CFD methodology is presented, allowing a preliminary assessment of the mixture formation quality in terms of expected soot emissions, oil dilution and injector coking risks for different injection systems (such as for instance multihole or swirl injectors) and different injection strategies, from the early stages of a new engine design. The proposed methodology, after a number of validation steps with experimental data gathered from different injection systems, has then been applied to guide the choice of the injector type, injection targeting and injection pressure and phasing for a GDI engine.
机译:燃油喷射在确定汽油直喷(GDI)发动机的混合气形成过程中起着至关重要的作用。尤其是污染物排放,尤其是烟尘排放,以及影响发动机可靠性的现象,例如机油稀释和喷油器结焦,都受到喷油系统特性的影响,例如喷油器的几何特性(例如喷油器的类型,喷油器的位置和内部的定位)燃烧室)和运行特性(例如喷射压力,喷射相位等)。本文介绍了一种新的CFD方法,可以根据预期的烟尘排放,油稀释和不同喷射系统(例如多孔或旋流喷射器)的喷射器结焦风险对混合物的形成质量进行初步评估。策略,从新引擎设计的早期阶段开始。经过大量验证步骤并从不同的喷射系统收集到的实验数据之后,所提出的方法论已被用于指导GDI发动机的喷射器类型,喷射目标和喷射压力以及相位的选择。

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