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Modeling of Aftertreatment Technologies to Meet a Future HD Low-NO_x Standard

机译:结后处理技术建模,以满足未来高清低NO_X标准

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The low-NO_x standard for heavy duty trucks proposed by the California Air Resources Board represents a significant challenge to the engine and aftertreatment system. In this study, exhaust thermal management requirements were quantified using a combination of engine and aftertreatment modeling. First, a 1-D engine model was used to develop a control strategy capable of increasing the exhaust enthalpy and decreasing the engine-out NO_x over the initial portion of the cold FTP cycle. The outputs from this model were then used as inputs to a 1-D model of a representative HD aftertreatment system. Several different passive exhaust thermal management technologies were evaluated with this aftertreatment system model, including insulating the downpipe, close-coupling the aftertreatment system, and reducing the thermal inertia of the DOC and DPF; the last option provides the most benefit to early NO_x conversion. As an example of active exhaust thermal management, a model of a mini-burner was inserted into the system model; this device is able to raise the system temperature quickly, using less fuel than the engine control strategy. Lastly, early NH_3 dosing and NH_3 preloading on the SCR catalyst were examined; pre-loading would appear to be much more effective.
机译:加州空气资源板提出的重型卡车的低No_X标准对发动机和后处理系统表示重大挑战。在本研究中,使用发动机和后处理建模的组合量化了排气热管理要求。首先,使用1-D发动机模型来开发能够增加排气焓并在冷FTP循环的初始部分上增加排气焓并降低发动机输出NO_X的控制策略。然后将该模型的输出用作代表性HD后处理系统的1-D模型的输入。使用该后处理系统模型评估了几种不同的无源排气热管理技术,包括绝缘管道,闭合耦合后处理系统,并减少了DOC和DPF的热惯性;最后一个选项为早期NO_X转换提供了最大的好处。作为主动排气热管理的一个例子,将迷你燃烧器的模型插入系统模型中;该设备能够快速提高系统温度,而不是引擎控制策略的燃料更少。最后,检查SCR催化剂上的早期NH_3给药和NH_3预加载;预装载似乎更有效。

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