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A 480?kW/liter direct injection jet ignition rotary valve super-turbocharged positive ignition methanol engine

机译:480?KW /升直喷喷射点火旋转阀超涡轮增压正点火甲醇发动机

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The potentials of direct injection (DI) and jet ignition (JI), assisted turbocharging, and rotary valves to deliver high efficiency, high power density positive ignition (PI) internal combustion engines (ICEs) is here investigated. DI JI and assisted turbocharging has demonstrated to permit ICEs able to deliver peak efficiency above 50% and power density of 340?kW/liter at the 15,000?rpm revolution limiter working overall λ?=?1.45 with gasoline. The further improvement in power density that may be obtained by replacing poppet valves with rotary valves, while also using mechanical, rather than electric, assisted turbocharging, are here numerically investigated A numerical rotary valve ICE, that is adopting super-turbocharging is developed. Results of simulations show the opportunity, working overall λ?=?1.45 with methanol, power densities of 480?kW/liter, while also delivering an about constant torque, and a consequently nearly linear power curve, over an extremely wide range of speeds, up to 24,000?rpm. With gasoline, the power density is 450?kW/liter. The proposed engine design could be used to revive IndyCar racing, with methanol, for improved performance and technical appeal, or in military unmanned aerial vehicles (UAV) with gasoline, for enhanced range, altitude, payload, and maneuverability.
机译:这里研究了直喷式(DI)和喷射点火(JI),辅助涡轮增压和旋转阀以提供高效率,高功率密度正点火(PI)内燃机(ICE)的电位。 DI JI和辅助涡轮增压已经证明,允许在15,000 rpm旋转限制器上工作整体λ=Δ1.1.1.45的340 kW /升高于50%和340 kW /升的功率密度的峰值效率。可以通过用旋转阀替换提升阀的电力密度进一步改善,同时也使用机械,而不是电动,辅助涡轮增压,在此数控旋转阀冰,其采用超涡轮增压。仿真结果显示了机会,整体λ=?1.45用甲醇,电功率密度为480?kw /升,同时还提供关于恒定的扭矩,并且因此几乎是线性电源曲线,在极广泛的速度范围内,高达24,000?rpm。用汽油,功率密度为450?千瓦/升。所提出的发动机设计可用于恢复甲醇的Indycar赛车,以改善性能和技术上吸引力,或者在军用无人驾驶飞行器(UAV)中,用于增强范围,高度,有效载荷和机动性。

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