>The complexity of modern powertrain development is demonstrated by the combination of requirements to meet future emission regulations and test p'/> Compressed-natural-gas optimised downsized demonstrator engine
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Compressed-natural-gas optimised downsized demonstrator engine

机译:压缩天然气优化的缩编演示发动机

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>The complexity of modern powertrain development is demonstrated by the combination of requirements to meet future emission regulations and test procedures such as the real driving emissions, the reductions in the fuel consumption and the carbon dioxide emissions as well as the expectations of customers that there must be a good driving performance. Gasoline engine downsizing is already established as a proved technology to reduce the carbon dioxide emissions of automotive fleets. Additionally, alternative fuels such as natural gas offer the potential to reduce significantly both the tailpipe carbon dioxide emissions and the other regulated exhaust gas emissions without compromising the driving performance and the driving range. This paper presents results showing how the positive fuel properties of natural gas can be fully utilised in a heavily downsized engine. The engine was modified to cope with the significantly higher mechanical and thermal loads when operating at high specific outputs on compressed natural gas. In this study, peak cylinder pressures of up to 180 bar and specific power output levels of 110 kW/l were realised. It is also shown that having cylinder components specific to natural gas can yield significant reductions in the fuel consumption and, in conjunction with a variable-geometry turbine, a port-fuelled compressed-natural-gas engine can achieve a impressive low-speed torque (a brake mean effective power of 2700 kPa at 1500 r/min) and good transient response characteristics. The results achieved from the test engine while operating on compressed natural gas are compared with measurements from the baseline gasoline-fuelled direct-injection engine. In addition, a comparison between port fuel injection and direct injection of compressed natural gas is presented. This also includes an investigation into the specific performance challenges presented by port-fuel-injected compressed natural gas. The potential carbon dioxide savings offered by this heavily downsized compressed-natural-gas engine, of up to 50% at peak power and 20–40% for the driving-cycle region (including real-driving-emissions testing), are presented and discussed.
机译: >通过要求的组合来展示现代动力系统的复杂性,以满足未来的排放法规和真实的测试程序驾驶排放量,减少燃料消耗和二氧化碳排放以及客户必须具有良好的驾驶业绩的期望。汽油发动机缩小化已经建立为探明技术,以减少汽车舰队的二氧化碳排放。另外,诸如天然气的替代燃料提供了减少尾管二氧化碳排放和其他调节废气排放的可能性,而不会影响驱动性能和驾驶范围。本文提出了如何在重缩小的发动机中充分利用天然气的正燃料特性。在压缩天然气的高特定输出工作时,发动机被修饰以应对显着更高的机械和热负荷。在该研究中,实现了高达180巴的峰值气缸压力和110kW / L的特定功率输出水平。还示出了具有特定于天然气的汽缸组件可以在燃料消耗中产生显着的降低,并且与可变几何涡轮机结合,端口燃料压缩的天然气发动机可以实现令人印象深刻的低速扭矩(制动器平均有效功率为2700kPa,1500升/分钟)和良好的瞬态响应特性。与基线汽油直喷发动机的测量相比,从测试发动机达到测试发动机的结果。此外,提出了端口燃料喷射和直接注入压缩天然气之间的比较。这还包括对端口燃料喷射的压缩天然气提出的具体性能挑战的调查。这款大量缩小的压缩天然气发动机提供的潜在二氧化碳节省,达到峰值功率,达到50%,促进驾驶循环区域(包括实际驾驶排放测试)的20-40%,并讨论。

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