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The effects of cylinder deactivation on the thermal behaviour and performance of a three cylinder spark ignition engine

机译:气缸停用对三缸火花点火发动机的热性能和性能的影响

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摘要

A physics based, lumped thermal capacity model of a 1litre, 3 cylinder, turbocharged, directly injected spark ignition engine has been developed to investigate the effects of cylinder deactivation on the thermal behaviour and fuel economy of small capacity, 3 cylinder engines. When one is deactivated, the output of the two firing cylinders is increased by 50%. The largest temperature differences resulting from this are between exhaust ports and between the upper parts of liners of the deactivated cylinder and the adjacent firing cylinder. These differences increase with load. The deactivated cylinder liner cools to near-coolant temperature. Temperatures in the lower engine structure show little response to deactivation. Temperature response times following deactivation or reactivation events are similar. Motoring work for the deactivated cylinder is a minor loss; the net benefit of deactivation diminishes with increasing load. For the NEDC and FTP-75 cycle, the predicted fuel savings are ∼3½ %; the benefit is lower for more transient or highly loaded cycles.
机译:已开发出基于物理的1升3缸涡轮增压直喷式火花点火发动机的集总热容量模型,以研究气缸停用对小容量3缸发动机的热性能和燃油经济性的影响。停用一个时,两个点火缸的输出将增加50%。由此产生的最大温差在排气口之间以及停用气缸的衬套上部与相邻的点火气缸之间。这些差异随着负载而增加。停用的气缸套冷却至接近冷却剂温度。发动机下部结构中的温度几乎不显示对停用的响应。停用或重新激活事件后的温度响应时间相似。停用的气缸的电动机工作是很小的损失。停用的净收益会随着负载的增加而减少。对于NEDC和FTP-75循环,预计节省的燃油约为〜3½%。对于更多的瞬态或高负载循环,其益处较低。

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