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A Novel System for Reducing Turbo-Lag by Injection of Compressed Gas into the Exhaust Manifold

机译:通过将压缩气体注入排气歧管中的一种新型系统减少涡轮滞后

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A key challenge in achieving good transient performance of highly boosted engines is the difficulty of accelerating the turbocharger from low air flow conditions ("turbo lag"). Multi-stage turbocharging, electric turbocharger assistance, electric compressors and hybrid powertrains are helpful in the mitigation of this deficit, but these technologies add significant cost and integration effort. Air-assist systems have the potential to be more cost-effective. Injecting compressed air into the intake manifold has received considerable attention, but the performance improvement offered by this concept is severely constrained by the compressor surge limit. The literature describes many schemes for generating the compressed gas, often involving significant mechanical complexity and/or cost. In this paper we demonstrate a novel exhaust assist system in which a reservoir is charged during braking. Experiments have been conducted using a 2.0 litre light-duty Diesel engine equipped with exhaust gas recirculation (EGR) and variable geometry turbine (VGT) coupled to an AC transient dynamometer, which was controlled to mimic engine load during in-gear braking and acceleration. The experimental results confirm that the proposed system reduces the time to torque during the 3 rd gear tip-in by around 60%. Such a significant improvement was possible due to the increased acceleration of turbocharger immediately after the tip-in. Injecting the compressed gas into the exhaust manifold circumvents the problem of compressor surge and is the key enabler of the superior performance of the proposed concept.
机译:实现高压发动机良好瞬态性能方面的关键挑战是从低空气流动条件(“涡轮滞后”)加速涡轮增压器的难度。多级涡轮增压,电动涡轮增压器辅助,电动压缩机和混合动力有助于减轻这种赤字,但这些技术增加了大量成本和整合努力。空气辅助系统有可能更具成本效益。将压缩空气注入进气歧管已经得到了相当大的关注,但是该概念提供的性能改善受到压缩机浪涌限制的严重限制。该文献描述了用于产生压缩气体的许多方案,通常涉及显着的机械复杂性和/或成本。在本文中,我们展示了一种新的排气系统,其中储存器在制动过程中充电。使用配备有配备有排气再循环(EGR)和可变几何涡轮机(VGT)的2.0升轻型柴油发动机进行了实验,该发动机连接到AC瞬态测力计,该齿轮测力计控制成模仿发动机负荷和加速度。实验结果证实,所提出的系统减少了在3个RD档位期间扭矩的时间约为60%。由于在尖端后立即增加涡轮增压器加速度,可能存在这种显着的改善。将压缩气体注入排气歧管,避免压缩机浪涌的问题,并且是所提出的概念的优越性的关键推动器。

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