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Development of an Emission Controls Concept for an IDI Heavy-Duty Diesel Engine Meeting 2007 Phase-In Emission Standards

机译:开发泰国重型柴油机会议2007年逐次发射标准的发射控制概念

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In order to allow continued production of the AM General Optimizer 6500 during MY 2007 through 2010 this IDI engine (Indirect Injection - swirl chamber) requires sophisticated aftertreatment controls while maintaining its fuel economy and durability. The main purpose of the development program was to retain the relatively inexpensive and simple base engine with distributor pump and waste-gated turbocharger, while adding hardware and software components that allow achievement of the phase-in emission standards for 2007 through 2010. The aftertreatment system consists of Diesel Oxidation Catalyst (DOC), NO{sub}x Adsorber Catalyst (or DeNO{sub}x Trap -^sDNT) and Diesel Particle Filter (DPF). In addition to the base hardware, an intake air throttle valve and an in-exhaust fuel injector were installed. The presented work will document the development process for a 2004 certified 6.5 l IDI heavy-duty diesel engine to comply with the 2007 heavy-duty emission standards. The system architecture evaluation proved to be one of the key development items that determined the packaging in the projected vehicle platform. Based on the temperature profile, it was found that the DOC-DPF-DNT configuration is mandatory to achieve NO{sub}x and NMHC standards. The development of the DPF regeneration, deNO{sub}x and deSO{sub}x strategy was strongly based on a multi-variable controls approach using temperature or lambda interventions depending on the system request. Development results for the HD-FTP and SET (13-mode Supplemental Emissions Test) show that the tailpipe emissions and the NTE (not-to-exceed) limits can be met with a considerable safety margin allowing reasonable degradation factors. The integrated system was installed in a project vehicle and underwent multiple climate testing trips focusing on DPF regeneration under cold ambient, high altitude and hot ambient conditions. It could be proven that a concept with a comparably cost-effective base engine which does not utilize direct fuel injection, along with an advanced aftertreatment control system, is capable to meet the U.S. 2007-2010 phase-in emission standards.
机译:为了让我的2007年到2010年,这个IDI发动机(间接喷射 - 涡流室)期间继续生产的AM通用的优化6500需要复杂的后处理的控制,同时保持它的燃油经济性和耐用性。该发展计划的主要目的是为了保持与分配泵和废物式涡轮增压器的相对便宜和简单的基础发动机,同时增加了硬件和软件组件,允许分阶段的排放标准,2007年的成绩到2010年的后处理系统由柴油机氧化催化剂(DOC)的,NO {子}×吸附剂催化剂(或DENO {子} x捕集 - ^ SDNT)和柴油颗粒过滤器(DPF)。除了基础硬件,进气节流阀和在排气燃料喷射器被安装。该论文将记录在开发过程中对2004年的认证6.5升IDI重型柴油发动机符合2007年重型排放标准。系统架构评估证明的是确定在计划车辆平台包装的重点发展项目之一。基于所述温度分布,其结果发现,DOC-DPF-DNT配置是强制性的,以实现NO {子} x和NMHC标准。 DPF再生的发展,DENO {子} x和DESO {子} X策略强烈基于多变量控制使用根据系统请求温度或λ干预的方法。对于HD-FTP和SET(13-模式附加发射试验)表明,汽车尾气排放和NTE(不被超过)限制发展的结果具有相当的安全边际,允许合理的退化因素来满足。集成的系统安装在一个项目车辆和行多层气候测试行程集中在DPF再生在寒冷的环境,高海拔和高温的环境条件。它可以被证明,与不利用直接燃料喷射,与先进的后处理控制系统沿着相当成本有效基本的发动机的一个概念,能够满足美国2007年至2010年相在排放标准。

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