首页> 外文期刊>SAE International Journal of Engines >GDCI Multi-Cylinder Engine for High Fuel Efficiency and Low Emissions
【24h】

GDCI Multi-Cylinder Engine for High Fuel Efficiency and Low Emissions

机译:GDCI多缸发动机,燃油效率高,排放低

获取原文
获取原文并翻译 | 示例
           

摘要

A 1.8L Gasoline Direct Injection Compression Ignition (GDCI) engine was tested over a wide range of engine speeds and loads using RON91 gasoline. The engine was operated with a new partially premixed combustion process without combustion mode switching. Injection parameters were used to control mixture stratification and combustion phasing using a multiple-late injection strategy with GDi-like injection pressures. At idle and low loads, rebreathing of hot exhaust gases provided stable compression ignition with very low engine-out NOx and PM emissions. Rebreathing enabled reduced boost pressure, while increasing exhaust temperatures greatly. Hydrocarbon and carbon monoxide emissions after the oxidation catalyst were very low. Brake specific fuel consumption (BSFC) of 267 g/kWh was measured at the 2000 rpm-2bar BMEP global test point. At medium load to maximum torque, rebreathing was not used and cooled EGR enabled low-temperature combustion with very low NOx and PM, while meeting combustion noise targets. MAP was reduced to minimize boost parasitics. Minimum BSFC was measured at 213 g/kWh at 1800 rpm - 12 bar IMEP. Full load torque characteristics of the engine were developed using alternative injection strategies. Maximum BMEP of 20.3 bar was measured at 2000 rpm, with 17.4 bar BMEP achieved at 1500 rpm. Torque objectives for this engine were met. Transient co-simulations demonstrated the potential for good combustion control during hard accelerations and gear shift transients.
机译:使用RON91汽油在各种发动机转速和负载下测试了1.8升汽油直喷压缩点火(GDCI)发动机。发动机采用新的部分预混燃烧过程运行,没有燃烧模式切换。喷射参数用于通过类似GDi喷射压力的多层喷射策略来控制混合物分层和燃烧定相。在怠速和低负荷下,热废气的重新呼吸可提供稳定的压燃,且发动机排出的NOx和PM排放量极低。重新呼吸可以降低增压压力,同时大大提高排气温度。氧化催化剂后的碳氢化合物和一氧化碳排放量非常低。在2000 rpm-2bar BMEP全球测试点测得的制动耗油量(BSFC)为267 g / kWh。在中等负载至最大扭矩下,不使用重新呼吸,冷却的EGR可实现低温燃烧,且NOx和PM含量极低,同时满足燃烧噪声目标。降低了MAP以最大程度地减小升压寄生效应。在1800 rpm-12 bar IMEP下测得的最小BSFC为213 g / kWh。使用替代喷射策略开发了发动机的满载扭矩特性。在2000 rpm下测得的最大BMEP为20.3 bar,在1500 rpm下测得的BMEP为17.4 bar。达到了该发动机的扭矩目标。瞬态联合仿真显示了在硬加速和换档瞬变期间实现良好燃烧控制的潜力。

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