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首页> 外文期刊>SAE International Journal of Engines >Variable Intake Cam Duration Technologies for Improved Fuel Economy
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Variable Intake Cam Duration Technologies for Improved Fuel Economy

机译:可变进气凸轮持续时间技术可改善燃油经济性

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摘要

Using a 3 liter, 4 valves per cylinder, V6 Diesel engine model, this study investigates late intake valve closing (LIVC) time in an effort to reduce the fuel consumption of the engine. Two different intake cam duration technologies for diesel engines are evaluated using a 1-D engine simulation software code. The first method utilized for duration control delays the effective closing of the intake valve by moving one intake cam lobe with respect to the other baseline intake cam lobe. In the second method, the closing of both intake valves is delayed by the introduction of an adjustable dwell period during the closing portion of the valve motion. During this mid-lift dwell period, the lift is held at a constant value until it goes into the closing phase. The systems are evaluated and compared at 4 operating points of varying engine speed and load. At each operating point, while engine load is held constant, intake valve closing time is varied. The engine investigated uses a variable turbine geometry (VTG) turbocharger and at each operating point, two operating modes of the VTG are investigated; one with a constant boost pressure and the other with a constant vane position. Besides reporting the fuel consumption benefits of these devices, a full thermodynamic analysis is provided which explains why the devices perform in the manner claimed.
机译:本研究使用3升,每个气缸4个气门的V6柴油发动机模型,研究进气门延迟关闭(LIVC)时间,以减少发动机的燃油消耗。使用一维发动机仿真软件代码评估了柴油机的两种不同进气凸轮持续时间技术。用于持续时间控制的第一种方法通过使一个进气凸轮凸角相对于另一个基准进气凸轮凸角来延迟进气门的有效关闭。在第二种方法中,两个进气门的关闭通过在气门运动的关闭部分引入可调节的停留时间而延迟。在升降机的中间停留期间,升降机将保持恒定值,直到进入关闭阶段。在发动机转速和负载变化的4个工作点对系统进行评估和比较。在每个工作点上,当发动机负载保持恒定时,进气门关闭时间都会变化。所研究的发动机使用可变涡轮几何(VTG)涡轮增压器,并且在每个工作点都研究了VTG的两种工作模式;一个具有恒定的增压压力,另一个具有恒定的叶片位置。除了报告这些设备的油耗优势外,还提供了完整的热力学分析,该分析解释了为什么设备以要求的方式运行。

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