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首页> 外文期刊>SAE International Journal of Engines >Heavily Downsized Gasoline Demonstrator
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Heavily Downsized Gasoline Demonstrator

机译:严重缩小的汽油证明

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Gasoline engine downsizing is already established as a proven technology to reduce automotive fleet CO_2 emissions by as much as 25%. Further benefits are possible through more aggressive downsizing, however, the trade-off between the CO_2 reduction achieved and vehicle drive-ability limits the level of engine downsizing currently adopted. This paper presents results showing the benefits of adding an eSupercharger to a very heavily downsized engine. Measurements are presented from a 1.2 litre, 3-cylinder, engine fitted with an eSupercharger in addition to a conventional turbocharger. The original MAHLE downsizing engine has been re-configured to enable a specific power output that exceeds 160 kW/litre. Of key importance is a cost effective, efficient and flexible boosting system. The Aeristech eSupercharger, operating at 48 V, enables the transient response and low speed torque to be more than recovered, enabling both very high specific output and specific torque characteristic with excellent transient response and drive-ability characteristics, clearly demonstrating eSupercharging as a key technology for enabling further engine downsizing. The resulting heavily downsized engine is to be installed into a demonstrator vehicle. The vehicle will feature an advanced 48 V lead-carbon battery pack and a 48 V belt-integrated starter generator (BiSG). The battery and BiSG have been selected to enable the continuous high-output (>6 kW) operation of the eSupercharger to support prolonged operation of the engine at low-speed and high-torque output. The 48 V architecture also enables the use of electrical machines and energy storage systems to reduce drive-cycle CO_2 through the recuperation of energy during deceleration events. The eSupercharging concept described in this paper also provides the potential to enable greater ability to operate with low levels of valve overlap, to help minimise emissions at low engine speeds. The resulting engine layout achieves 193 kW from a 1.2 litre swept volume and 317 Nm torque is available from 1250 min~(-1), whilst excellent fuel economy and drivability characteristics are retained.
机译:汽油发动机缩小化已经建立为经过验证的技术,以减少汽车舰队CO_2排放量多达25%。然而,通过更具侵略性的缩小化,可以通过更积极的缩小化进行进一步的益处,实现的CO_2减少和车辆驱动能力之间的权衡限制了目前采用的发动机缩小尺寸。本文展示了结果,表明将esuperbarger添加到非常严重的小型化发动机的好处。除了传统的涡轮增压器之外,还从1.2升3缸,配有ESUPLIGHER的发动机提出了测量。原始的马勒缩小发动机已重新配置以使特定功率输出超过160千瓦/升。关键重要性是一种成本效益,高效且灵活的升压系统。在48 V工作的Aeristech eSupercharger使瞬态响应和低速扭矩高于恢复,从而实现非常高的特定输出和特定的扭矩特性,具有出色的瞬态响应和驱动能力特性,清楚地证明了eSuperbring作为关键技术为了实现进一步的发动机缩小化。由此产生的重型缩小发动机将被安装到示波器车辆中。该车辆将采用先进的48 V铅碳电池组和48 V皮带集成启动发生器(BISG)。已选择电池和BISG以使抗灌注器的连续​​高输出(> 6 kW)操作能够以低速和高扭矩输出支撑发动机的长时间操作。 48 V体系结构还使得能够使用电机和能量存储系统来减少驱动循环CO_2通过在减速事件期间的能量恢复。本文中描述的抗抗剥离概念还提供了能够使能力更高的阀门重叠操作能力,以帮助最小化低发动机速度的排放。由此产生的发动机布局从1.2升扫描量达到193kW,317nm扭矩可从1250分钟〜(-1),而保留了出色的燃油经济性和驾驶能力特性。

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