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Effect of cylinder deactivation strategies on engine performances using one-dimensional simulation technique

机译:一维仿真技术对气缸停用策略对发动机性能的影响

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摘要

In order to meet consumer and legislation requirements, big investments on key technology strategies have been made to ensure fuel consumption is reduced. Recent technologies for gasoline engines are lean combustion technologies (including direct injection and homogenous charged compression ignition), optimizing intake and exhaust valve timing with valve lift and also cylinder deactivation system (CDA) have been practised to improve the engine efficiency. The purpose of this study is to investigate the engine behavior when running at different cylinder deactivation (CDA) strategies. One-dimensional engine model software called GT-Power is used to predict the engine performances. Five strategies were considered namely normal mode, spark plug off mode, cylinder deactivation mode, intake normal with exhaust off mode, and intake off with exhaust normal mode. Engine performance outputs of each strategy are predicted and compared at BMEP of 3 bars with engine speed of 2500 rpm. Also, the effect of CDA strategies on in-cylinder pressure and pumping loss are performed. The study shows that all of these cylinder deactivation strategies are capable of reducing the pumping loss (PMEP) and fuel consumption, thus increasing the thermal efficiency of the engine. The results suggest that the most beneficial strategy for activating CDA is for the case whereby both the intake and exhaust valves are kept closed. This CDA mode capable of increasing brake thermal efficiency up to 22% at entire engine speeds operation. This strategy successfully reduced the BSFC. It was found that most of these cylinder deactivation strategies improve the engine performance during part load engine condition.
机译:为了满足消费者和法规要求,已经在关键技术战略上进行了大量投资,以确保减少燃料消耗。汽油发动机的最新技术是稀薄燃烧技术(包括直接喷射和均质充气压缩点火),已经通过气门升程优化进气门和排气门正时以及气缸停用系统(CDA)来提高发动机效率。这项研究的目的是调查在不同的气缸停用(CDA)策略下运行时的发动机性能。一维发动机模型软件GT-Power用于预测发动机性能。考虑了五种策略,即正常模式,火花塞关闭模式,气缸停用模式,带排气关闭模式的进气正常和带排气正常模式的进气关闭。预测每种策略的发动机性能输出,并在3EP的BMEP和2500 rpm的发动机转速下进行比较。而且,执行了CDA策略对缸内压力和泵送损失的影响。研究表明,所有这些气缸停用策略均能够减少泵送损失(PMEP)和燃料消耗,从而提高发动机的热效率。结果表明,激活CDA的最有益策略是进气和排气门均保持关闭的情况。这种CDA模式能够在整个发动机转速下将制动器的热效率提高至22%。此策略成功降低了BSFC。已经发现,这些汽缸停用策略中的大多数在部分负载发动机工况期间改善了发动机性能。

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