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Efficient Combination of Electric Supercharger, Cooled EGR and 12V Extended Stop Start for Future Boosted Gasoline Engines

机译:高效的电气增压器组合,冷却EGR和12V扩展停止开始,以供向未来的汽油发动机

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On turbo gasoline applications, direct injection is positively coupled to camphasers to improve low end torque and transient response of the turbocharger. Based on its significant CO_2 benefits when associated to downsizing and downspeeding, this architecture has become the major worldwide trend to improve gasoline engine fuel consumption. Nevertheless coming stringent regulations on CO_2 emissions, pollutant emissions especially in real life (RDE) require new improvements. In this paper, a new architecture is presented in order to address the next generation of low CO_2 turbo GDI engines. It relies on the combination and coupling optimization of three technologies: electric supercharger, 12V extended stop start network and low pressure EGR. Based on already demonstrated electric supercharger dynamic performance, architecture optimization will be explained both on air side through compressor wheel analysis and on electrical side. Advances on 12V electrical network allowing extended stop start function as well as regenerative braking and boost support through electric supercharger will be explained. Electric supercharger and low pressure gasoline EGR combination also offers new levers of engine improvement especially at mid and high loads. Focus will be given on optimization of air and EGR loops, durability results and combination perspectives.
机译:在涡轮汽油应用上,直接喷射与樟脑馆正耦合,以改善涡轮增压器的低端扭矩和瞬态响应。基于其与缩小和下滑相关时的重要CO_2益处,该架构已成为全球主要趋势,以改善汽油发动机燃料消耗。然而,对CO_2排放的严格规定,特别是在现实生活中的污染物排放(RDE)需要新的改进。在本文中,提出了一种新的架构,以解决下一代低CO_2 Turbo GDI发动机。它依赖于三种技术的组合和耦合优化:电增压器,12V扩展停止启动网络和低压EGR。基于已经证明的电增压器动态性能,架构优化将通过压缩机滚轮分析和电侧进行空气侧解释。将解释12V电网的进步,允许扩展停止启动功能以及通过电增压器的再生制动和增压支持。电增压器和低压汽油EGR组合还提供新的发动机改善杠杆,特别是在中高负荷。将在空气和EGR环路优化,耐用性结果和组合视角下给出重点。

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