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Diesel Exhaust Aftertreatment System Packaging and Flow Optimization on a Heavy-Duty Diesel-Engine-Powered Vehicle

机译:柴油排气后处理系统包装和流量优化在重型柴油发动机动力车辆上

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Diesel exhaust aftertreatment systems are required for meeting both EPA 2010 and final Tier 4 emission regulations while meeting the stringent packaging constraints of the vehicle. The aftertreatment system for this study consists of a fuel dosing system, mixing elements, fuel reformer, lean NO_x trap (LNT), diesel particulate filter (DPF), and a selective catalytic reduction (SCR) catalyst. The fuel reformer is used to generate hydrogen (H_2) and carbon monoxide (CO) from injected diesel fuel. These reductants are used to regenerate and desulfate the LNT catalyst. NO_x emissions are reduced using the combination of the LNT and SCR catalysts. During LNT regeneration, ammonia (NH_3) is intentionally released from the LNT and stored on the downstream SCR catalyst to further reduce NO_x that passed through the LNT catalyst. This paper addresses system packaging and exhaust flow optimization for heavy-duty line-haul and severe service applications. Various packaging options are provided for both applications. Exhaust flow and fuel vaporization optimization was conducted using computational fluid dynamics followed by test cell and vehicle test results. Performance metrics were met including 97% uniformity for fuel vaporization and 97% uniformity for exhaust flow distribution having less than 2% fuel pulse broadening. The optimized system met the packaging constraints and EPA 2010 emission regulations.
机译:柴油排气后处理系统需要在满足车辆严格的包装限制的同时满足EPA 2010和最终第4层排放法规。本研究的后处理系统包括燃料给药系统,混合元件,燃料重整器,瘦NO_X陷阱(LNT),柴油颗粒过滤器(DPF)和选择性催化还原(SCR)催化剂。燃料重整器用于从注入的柴油燃料产生氢(H_2)和一氧化碳(CO)。这些还原剂用于再生和脱硫LNT催化剂。使用LNT和SCR催化剂的组合减少了NO_X排放。在LNT再生期间,氨(NH_3)从LNT中有意释放并储存在下游SCR催化剂上,以进一步减少通过LNT催化剂的NO_X。本文解决了重型线路和严重服务应用的系统包装和排气优化。两个应用程序提供了各种包装选项。使用计算流体动力学进行排气流和燃料蒸发优化,然后进行测试电池和车辆测试结果。满足性能度量,包括燃料蒸发97%的均匀性,排气流量分布的均匀均匀度为燃料脉冲宽度小于2%。优化的系统符合包装限制和EPA 2010排放法规。

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