首页> 外文期刊>SAE International Journal of Engines >Evaluation of System Configurations for Downsizing a Heavy-Duty Diesel Engine for Non-Road Applications
【24h】

Evaluation of System Configurations for Downsizing a Heavy-Duty Diesel Engine for Non-Road Applications

机译:用于对非公路应用缩小重型柴油发动机的系统配置评估

获取原文
获取原文并翻译 | 示例
           

摘要

In recent years there has been a successful application of engine downsizing in the passenger car market, using boosting technologies to achieve higher specific power and improve fuel economy. Downsizing has also been applied in heavy-duty diesel engines for the on-highway market to improve fuel economy, motivated in part by CO_2 emission limits in place under Phase 1 greenhouse gas (GHG) legislation. In the non-road market, with Tier 4 emission standards already being met and no current plan for a GHG emission requirement, there has been less activity in engine downsizing and the drivers for this approach may be different from their on-highway counterparts. For instance, manufacturers may consider emission regulation break points as a motivation for engine displacement targets. Many non-road applications demand a relatively high low-end torque and support the use of higher displacement engines. For these applications it can be more challenging to apply downsizing strategies while meeting the operation requirements of the machine, such as load factor. However, if successful, downsizing in these applications and reducing the engine size can provide improvements in fuel economy, reduce purchase price and provide packaging and machine layout improvement opportunities. This work focuses on the application of downsizing in heavy-duty diesel engines applied to specific non-road applications where the opportunity exists to reduce the number of cylinders and thus the overall size of the engine. The main drivers here are packaging, production cost and fuel consumption. Various technologies, such as electrically assisted turbocharger, two-stage turbocharging, asymmetric twin scroll turbine and variable valve actuation, will be investigated to maintain performance requirements while reducing the number of cylinders.
机译:近年来,在乘用车市场上成功地应用了发动机缩小大小,采用促进技术实现更高的特定权力,提高燃油经济性。缩小尺寸也适用于重型柴油发动机,用于高速公路市场,以改善燃油经济性,部分通过CO_2排放限制在第1阶段温室气体(GHG)立法下。在非公路市场中,已经满足了第4层排放标准,没有动力排放要求的现行计划,发动机缩小规模较少,这种方法的驱动因素可能与他们的高速公路同行不同。例如,制造商可以考虑排放调节点作为发动机位移目标的动机。许多非公路应用需要相对高的低端扭矩并支持更高位移发动机的使用。对于这些应用程序,在满足机器的操作要求时应用缩小规模策略可能更具挑战性,例如负载系数。然而,如果成功,在这些应用中的缩小规模和减少发动机尺寸可以提供燃油经济性的改进,减少购买价格并提供包装和机器布局改善机会。这项工作侧重于将缩小的柴油发动机应用于适用于特定的非公路应用,其中有机会减少汽缸的数量,从而为发动机的整体尺寸的整体尺寸。这里的主要司机是包装,生产成本和燃料消耗。各种技术,如电辅助涡轮增压器,两级涡轮增压,不对称双涡轮机和可变阀致动,以保持性能要求,同时减少汽缸的数量。

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