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Vibration and emissions quantification over key drive cycles using cylinder deactivation

机译:使用气缸停用通过键驱动循环量化振动和排放量

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Cylinder deactivation has been shown to provide higher grade heat to improve diesel aftertreatment performance during low load operation while providing a fuel and CO_(2)savings. This paper evaluates engine and aftertreatment performance along with engine vibration over eight drive cycles in a dynamometer test cell. The eight drive cycles include the heavy-duty federal test protocol, low load cycle, Orange County Transit Authority bus cycle, New York bus cycle, Air Resource Board cycle and a portion of the 55-mph cruise cycle. Results show the tailpipe NOx and CO_(2)reduction along with both linear and torsional vibration to quantify NVH. The emission results were quantified using both conventional and close-coupled aftertreatment systems. The linear vibration from the engine during CDA was generally consistent with normal operation; thus, removing NVH as a barrier for implementation. Adding a low NOx aftertreatment system to the CDA engine showed emission levels within proposed future regulations.
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