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Effects of injection strategies on the flow and fuel behavior characteristics in port dual injection engine

机译:喷油策略对双缸喷油发动机流量和燃油特性的影响

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摘要

The port dual injection (PDI) technology is proposed to improve the fuel efficiency and emission characteristics of the downsized SI engine by adding an injector to the intake port. For effective design of the PDI engine, the effects of additional design parameters on the engine performance due to the added injector should be taken in to account. In this study, we analyze the effects of the fuel injection timing and injection targeting related to the injection strategies of the PDI engine on the internal flow and fuel behavior characteristics using computational fluid dynamics (CFD). The CFD analysis is conducted using the STAR-CD, a three-dimensional unsteady simulation program. To confirm the accuracy of CFD analysis, the experimental verification is carried out. The liquid fuel films, evaporated fuel and air-fuel mixture uniformity affecting the fuel efficiency and emissions of the engine are analyzed at various injection conditions. It is concluded that the fuel film amount decreases by approximately 73.04% compared to the standard injection method when the engine is operated at the optimum conditions selected in this study. (C) 2018 Elsevier Ltd. All rights reserved.
机译:提出了端口双喷射(PDI)技术,通过在进气口增加喷油器来改善小型SI发动机的燃油效率和排放特性。为了有效设计PDI发动机,应考虑附加设计参数对由于添加喷油嘴而引起的发动机性能的影响。在这项研究中,我们使用计算流体力学(CFD)分析了与PDI发动机的喷射策略相关的燃料喷射正时和喷射目标对内部流量和燃料行为特征的影响。使用三维非稳态仿真程序STAR-CD进行CFD分析。为了确认CFD分析的准确性,进行了实验验证。在各种喷射条件下,分析了影响燃料效率和发动机排放的液体燃料膜,蒸发的燃料和空气-燃料混合物的均匀性。结论是,当发动机在本研究中选择的最佳条件下运行时,与标准喷射方法相比,燃油膜量减少了约73.04%。 (C)2018 Elsevier Ltd.保留所有权利。

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