首页> 外文会议>SAE World Congress Experience >Synergies of Cooled External EGR, Water Injection, Miller Valve Events and Cylinder Deactivation for the Improvement of Fuel Economy on a Turbocharged-GDI Engine; Part 2, Engine Testing
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Synergies of Cooled External EGR, Water Injection, Miller Valve Events and Cylinder Deactivation for the Improvement of Fuel Economy on a Turbocharged-GDI Engine; Part 2, Engine Testing

机译:冷却外置EGR,注水,米勒阀事件和气缸停用的协同作用,用于改善涡轮增压涡轮增压发动机燃料经济性;第2部分,发动机测试

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As CO_2 legislation tightens, the next generation of turbocharged gasoline engines must meet stricter emissions targets combined with increased fuel efficiency standards. Recent studies have shown that the following technologies offer significant improvements to the efficiency of turbocharged GDI engines: Miller Cycle via late intake valve closing (LIVC), low pressure loop cooled EGR (LPL EGR), port water injection (PWI), and cylinder deactivation (CDA). While these efficiency-improving technologies are individually well-understood, in this study we directly compare these technologies to each other on the same engine at a range of operating conditions and over a range of compression ratios (CR). The technologies tested are applied to a boosted and direct injected (DI) gasoline engine and evaluated both individually and combined. The results show for the test engine, given all of the technologies available, what the best combinations are for all tested speeds and loads, at each compression ratio studied.
机译:由于CO_2立法收紧,下一代涡轮增压汽油发动机必须满足更严格的排放目标,加上燃料效率标准的提高。最近的研究表明,以下技术对涡轮增压的GDI发动机的效率提供了显着的改善:通过晚进气门关闭(LIVC),低压回路冷却EGR(LPL EGR),端口注水(PWI)和气缸停用(CDA)。虽然这些效率改善技术是单独良好的理解,但在本研究中,我们直接将这些技术与在一系列操作条件和一系列压缩比(CR)上相同的发动机上相同的发动机进行比较。测试的技术应用于增强和直接注射(DI)汽油发动机,并单独评估并组合。考虑到测试引擎的结果显示,鉴于所有可用的技术,最佳组合是针对所有测试速度和负载的最佳组合,在所研究的每个压缩比上。

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