首页> 外文期刊>SAE International Journal of Engines >Impact on Performance, Emissions and Thermal Behavior of a New Integrated Exhaust Manifold Cylinder Head Euro 6 Diesel Engine
【24h】

Impact on Performance, Emissions and Thermal Behavior of a New Integrated Exhaust Manifold Cylinder Head Euro 6 Diesel Engine

机译:新型一体式排气歧管缸盖欧6柴油发动机的性能,排放和热性能的影响

获取原文
获取原文并翻译 | 示例
       

摘要

The integration of the exhaust manifold in the engine cylinder head has received considerable attention in recent years for automotive gasoline engines, due to the proven benefits in: engine weight diminution, cost saving, reduced power enrichment, quicker engine and aftertreatment warm-up, improved packaging and simplification of the turbocharger installation. This design practice is still largely unknown in diesel engines because of the greater difficulties, caused by the more complex cylinder head layout, and the expected lower benefits, due to the absence of high-load enrichment. However, the need for improved engine thermomanagement and a quicker catalytic converter warm-up in efficient Euro 6 diesel engines is posing new challenges that an integrated exhaust manifold architecture could effectively address. A recently developed General Motors 1.6L Euro 6 diesel engine has been modified so that the intake and exhaust manifolds are integrated in the cylinder head. Extensive CAD/CAE/CAM analyses have been employed in order to guide the design of the overall surface and the water cooling jacket that surround the exhaust manifold of the new engine version, and thus to be able to improve the low-frequency thermal fatigue resistance of the head. The thus obtained prototype engine head has been tested on a highly-dynamic test bench at the Politecnico di Torino in order to characterize performance, emissions and thermal behavior in comparison to the baseline production engine. The results have generally been very promising and have shown the possibility of maintaining the same performance rating over the overall engine speed range as well as comparable emissions and brake specific fuel consumption in steady-state conditions. Furthermore, appreciably faster engine and aftertreatment warm-up have been recorded due to the higher heat fraction that is transferred to the coolant and to the more favorable exhaust gas enthalpy management. The latter benefit is in fact very interesting as far as the control of HC and CO emissions within the NEDC homologation is concerned.
机译:近年来,汽车汽油发动机将排气歧管集成到发动机汽缸盖中受到了广泛的关注,这归因于以下方面的公认优势:减少发动机重量,节省成本,减少动力增浓,更快的发动机和后处理预热,改进包装和简化涡轮增压器的安装。在柴油发动机中,这种设计方法在很大程度上还是未知的,因为由于气缸盖布局更加复杂而造成的困难更大,并且由于缺乏高负荷浓缩,因此预期的收益也较低。但是,对于高效的Euro 6柴油发动机,需要改进的发动机热管理和更快的催化转化器预热,这带来了集成排气歧管架构可以有效应对的新挑战。最近对通用汽车开发的1.6升欧6柴油发动机进行了改装,使进气和排气歧管集成在气缸盖中。为了对围绕新发动机版本的排气歧管的整体表面和水冷套进行设计,已进行了广泛的CAD / CAE / CAM分析,从而能够改善低频抗热疲劳性的头。如此获得的原型发动机缸盖已经在都灵理工大学的高动态试验台上进行了测试,以表征与基准量产发动机相比的性能,排放和热性能。结果通常是非常有希望的,并显示了在整个发动机转速范围内保持相同性能等级以及在稳态条件下可比较的排放量和制动器特定燃料消耗的可能性。此外,由于传递给冷却剂的热量较高,并且废气焓管理更有利,因此记录了明显更快的发动机和后处理预热。就在NEDC认证中控制HC和CO排放而言,后一个好处实际上非常有趣。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号