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首页> 外文期刊>International Journal of Automotive Technology >INVESTIGATION OF ENGINE RESTART STABILITY AFTER IDLE STOP FOR A MILD TYPE HEV POWERTRAIN
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INVESTIGATION OF ENGINE RESTART STABILITY AFTER IDLE STOP FOR A MILD TYPE HEV POWERTRAIN

机译:轻型混合动力动力火车怠速停止后发动机重新启动稳定性的调查

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摘要

Stringent regulations on exhaust emissions and fuel economy for vehicles have become major issues in the automotive industry. Hybrid electric vehicles (HEV) are one of the crucial alternative plans to current conventional vehicles, but they have drawbacks, which include increases in total hydrocarbon (THC) emission from the engine and deterioration of the combustion stability with frequent stopping and restarting of the engine. Intake port fuel film is evaporated up during the deceleration state due to the fuel-cut. The λ (relative A/F ratio) at engine restart is lean because part of injected fuel is used to form the fuel film in the intake port. This study revealed the behavior of a fuel film in engine stop with fuel-cut and in engine restart with a simulation model. To investigate the fuel film characteristics, a simulation model was applied and validated with a single-cylinder engine. The simulation result shows that λ of at least 1.2 is required for a stable engine restart. The minimum injection quantity of the first cycle for stable combustion is suggested to be at least 240% of the steady-state idle condition.
机译:关于车辆的废气排放和燃料经济性的严格规定已经成为汽车工业中的主要问题。混合动力汽车(HEV)是当前常规汽车的重要替代计划之一,但它们也有缺点,包括发动机总碳氢化合物(THC)排放量的增加以及频繁停机和重新启动发动机时燃烧稳定性的下降。 。进气口的燃油膜在减速状态下由于燃油切断而蒸发。发动机重新启动时的λ(相对空燃比)较稀,因为一部分喷射的燃油用于在进气口形成燃油膜。这项研究揭示了燃油膜在燃油切断的发动机停机和在发动机重新启动的模拟模型中的行为。为了研究燃油膜的特性,应用了一个仿真模型并通过单缸发动机对其进行了验证。仿真结果表明,至少要有1.2的λ才能稳定地重启发动机。建议用于稳定燃烧的第一循环的最小喷射量至少为稳态怠速工况的240%。

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