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Thermodynamic Potential of Electrical Turbocharging for the Case of Small Passenger Car ICE under Steady Operation

机译:稳步运行下小型乘用车冰箱的电气涡轮增压热力学潜力

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The proposed paper deals with thermodynamic optimization of highly flexible ICE (variable compression ratio, intake/exhaust VVA) while comparing e-turbocharging concept with classical one. The e-turbocharging approach is based on idea that compressor/turbine has its own electric machine (motor/generator) and that additional electric energy can be supplied/attached from/to engine crank train. Hence it allows independent control of compressor/turbine. On the other hand, classical approach is based on a standard mechanical connection between turbine and compressor. The whole system (flexible engine + boost device) is optimized under steady operation – low load (BMEP of 4 bar), medium load (BMEP of 13 bar), high load (BMEP of 30, 25 and 18 bar) and maximum load are considered. Moreover, 3 combustion concepts are considered – classical SI and CI, and ideal RCCI. Sensitivity study of selected parameters is performed: e.g., efficiency of electric machine(s), HP exhaust manifold volume. All the results are achieved by means of simulation using 0-D/1-D SW tool. The data are analyzed and general conclusions are drawn while focusing on thermodynamic potential of e-turbocharging concept under steady operation.
机译:拟议的论文涉及高度柔性冰(可变压缩比,进气/排气VVA)的热力学优化,同时将E-涡轮增压概念与古典概念进行比较。电子涡轮增压方法是基于思想,即压缩机/涡轮机具有自己的电机(电动机/发电机),并且可以从/向发动机曲柄火车提供/连接额外的电能。因此,它允许独立控制压缩机/涡轮机。另一方面,经典方法基于涡轮机和压缩机之间的标准机械连接。整个系统(柔性发动机+升压装置)在稳定的操作下进行了优化 - 低负载(BMEP为4巴),中负载(13巴的BMEP),高负载(BMEP为30,25和18巴)和最大负载经过考虑的。此外,考虑了3个燃烧概念 - 古典Si和CI,以及理想的RCCI。执行所选参数的灵敏度研究:例如,电机效率,HP排气歧管体积。所有结果都是通过使用0-D / 1-D SW工具的仿真实现的。分析数据并绘制了一般的结论,同时侧重于稳定运行下电子涡轮增压概念的热力学潜力。

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