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Simulating the complete 2014 hybrid electric Formula 1 cars

机译:模拟完整的2014混合电气式1辆汽车

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In 2014 a new powertrain specification was introduced in to Formula 1. This new specification changed the internal combustion engine to be a 1.6 litre V6 turbocharged spark ignition engine with increased use of Energy Recovery Systems (ERS) in the form of crank and turbo-shaft motor generators, battery and associated cooling and controllers. Fuel flow limits and a limit on the total amount of fuel that can be used in the race means that efficiency of the systems has become a key focus during the development of the 2014 cars. The reduction in engine size and power from the previous season's 2.4L V8s means that the teams now rely much more strongly on the electrical energy from the ERS system to make up for the reduced internal combustion engine performance. In this work we show how a complete physical vehicle model with fully integrated subsystems (powertrain, chassis, etc) can be simulated to yield information on the consequences of a range of ERS (Energy Recovery System) configurations.
机译:2014年,将新的动力总成规范引入式1。这一新规范将内燃机改变为1.6升V6涡轮火花点火发动机,随着曲柄和涡轮轴的形式增加了能量回收系统(ERS)的使用电机发电机,电池和相关冷却和控制器。燃料流量限制和可以在比赛中使用的燃料总量的限制意味着系统的效率已成为2014辆汽车的开发期间的关键重点。从前赛季的2.4L V8S的发动机尺寸和电力的减少意味着该团队现在依赖于来自ERS系统的电能更强烈,以弥补降低的内燃机性能。在这项工作中,我们展示了如何模拟具有完全集成的子系统(动力总成,机箱等)的完整物理车型的方式,以产生关于各种符号(能量回收系统)配置的后果的信息。

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