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Gasoline engine cold start fuel calibration.

机译:汽油发动机冷启动燃油校准。

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The future SULEV hydrocarbon (HC) emission standard is much more stringent than the current LEV standard for port-fuel-injection gasoline SI engines. Reduction of the cold start engine-out HC emissions is the key to meet this challenge. The goal of this work is to identify the sources of HC emissions during cold start, and provide an efficient simulation tool to help the cold start fuel calibration.; Cold and hot start tests were conducted on a fully instrumented new Chrysler 2.4-L, 4-cylinder, 16-valve, DOHC, multipoint-port-fuel-injection gasoline engine. Based on the experimental findings, theories of mass transfer and thermodynamics were applied to establish a generic simulation model for the cold start fuel calibration (CSFC) in port-fuel-injected gasoline engines. Different liquid fuel evaporation mechanisms in the engine intake port were identified and quantified.; The model was applied to a 2.4 L Line-4 DOHC engine and a Chrysler 3.3 L V6 pushrod engine. This CSFC model can handle different cold start soaking temperatures and any combinations of fuel components easily. Based on the findings of the simulation, important cold start fuel calibrations were proposed to improve the cold startability and reduce HC emissions. This model has a great potential to benefit lots of port-fuel-injection gasoline engine cold start fuel calibration work.
机译:未来的SULEV碳氢化合物(HC)排放标准比当前用于港口燃料喷射汽油SI发动机的LEV标准更加严格。减少冷启动时发动机排出的HC排放是应对这一挑战的关键。这项工作的目的是识别冷启动期间的HC排放源,并提供有效的模拟工具来帮助冷启动燃料校准。在配备齐全的新型克莱斯勒2.4升4缸16气门DOHC多点端口燃油喷射汽油发动机上进行了冷启动和热启动测试。基于实验结果,传质和热力学理论被用于建立通用仿真模型,用于港口燃料喷射式汽油发动机的冷启动燃料校准(CSFC)。识别并量化了发动机进气口中不同的液体燃料蒸发机制。该模型已应用于2.4升Line-4 DOHC发动机和克莱斯勒3.3升V6推杆发动机。该CSFC模型可以轻松应对不同的冷启动均热温度以及各种燃料成分的组合。基于仿真的结果,提出了重要的冷启动燃料标定,以提高冷启动能力并减少HC排放。该模型具有很大的潜力,可以使许多港口燃料喷射汽油发动机冷启动燃料校准工作受益。

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