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Integration of Engine Controls, Exhaust Components and Advanced Catalytic Converters for ULEV and SULEV Applications

机译:用于ULEV和SULEV应用的发动机控制,排气组件和先进的催化转换器的集成

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Development of integrated engine controls, exhaust components and advanced catalytic converters was demonstrated on a 1998 full-size luxury sedan with a gasoline PFI 4.4 L V8 engine. This level of emissions management was targeted for ULEV and SULEV emission standards. An air gap, dual exhaust, six-catalyst system, was modified in stages to reduce the number of catalysts and associated controls/hardware. Engine controls and calibration were developed to reduce cold-start emissions, catalyst light-off time and tailpipe emissions. Systems integration involved reduced precious metal loading, secondary AIR and modification of emission control devices. The thermal mass of the air gap exhaust pipes was reduced by approximately 30 percent, which contributed to improved catalyst heat-up time. A vacuum-insulated catalytic converter with phase change material was used to store exhaust heat and resist heat loss during times of dwell/soak. FTP-75 tests typically included two LA4 preparation cycles prior to soak. Upon engine start, the catalyst was at an elevated temperature, thereby reducing cold-start emissions. Catalyst start temperatures, which are a function of prep cycle and soak times, were studied.
机译:通过汽油PFI 4.4 L V8发动机,在1998年全尺寸豪华轿车上演示了集成发动机控制,排气组件和先进的催化转换器。这种级别的排放管理是针对ulev和sulev排放标准的。气隙,双排气,六催化剂体系在阶段修饰,以减少催化剂的数量和相关的控制/硬件。开发了发动机控制和校准,以减少冷启动排放,催化剂熄火时间和尾管排放。系统集成涉及减少贵金属负载,二次空气和发射控制装置的改进。气隙排气管的热质量降低约30%,这有助于改善催化剂加热时间。使用相变材料的真空绝缘催化转化器用于储存废热并在垃圾/浸泡时抵抗热损失。 FTP-75测试通常在浸泡之前包括两个LA4制备循环。在发动机开始时,催化剂处于升高的温度下,从而减少冷启动排放。研究了催化剂开始温度,这是准备循环和浸泡时间的函数。

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