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Design of a waste energy recovery turbine from the exhaust of a spark ignition hybrid vehicle

机译:从火花点火混合动力汽车的废气中回收废能源的涡轮机的设计

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The objective proposed by EU to reduce about 4%/year the CO2 emission of internal combustion engines for the next years up to 2030, requires to increase the engines efficiency and accordingly improving the technology. Flue gas from the internal combustion engine equipping a vehicle contains residual energy that could be exploited by a gas turbine directly connected to an electric generator, thus improving the global efficiency of the vehicle. The perspective of adopting this solution in a full-hybrid vehicle is studied in this work. Here, a radial turbine is designed to be placed at the exhaust ducts of a 2000 cc spark ignition engine, and its performance are simulated. The use of a gas turbine affects the fluid dynamic behavior of the exhaust gases, hence an evaluation of the performance and consumptions of the thermal engine in this new configuration have been made. It is assumed that the energy recovered from the exhaust is stored in the vehicle battery and used to power the auxiliaries. The benefits in terms of fuel consumption have been calculated in a standardized driving cycle. In the hybrid configuration, a consumption reduction larger than 20% is computed, thanks to the kinetic recovery. If an exhaust recovery turbine is adopted, an additional 3.8% fuel consumption reduction is achieved.
机译:欧盟提出的目标是减少约4%/年的4%/年,未来几年内部燃烧发动机的二氧化碳排放需要增加发动机效率,并因此提高该技术。来自装备车辆的内燃机的烟道气体包含可以通过直接连接到发电机的燃气涡轮机利用的剩余能量,从而提高了车辆的全球效率。在这项工作中研究了在全混合动力车辆中采用这种解决方案的观点。这里,将径向涡轮机设计成放置在2000CC火花点火发动机的排气管道上,并且模拟其性能。燃气轮机的使用影响了废气的流体动力学行为,因此已经进行了这种新配置中热发动机的性能和消耗的评估。假设从废气中回收的能量存储在车辆电池中并用于为辅助通电。在标准化的驾驶循环中计算了燃料消耗方面的益处。在混合配置中,由于动力学恢复,计算了大于20%的消耗量大于20%。如果采用排气回收涡轮机,则实现了额外的3.8%的燃料消耗。

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