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Research on the Power Recovery of Diesel Engines with Regulated Two-Stage Turbocharging System at Different Altitudes

机译:调高两级涡轮增压系统在不同海拔高度对柴油机动力恢复的研究

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Recovering the boost pressure is very important in improving the dynamic performance of diesel engines at high altitudes. A regulated two-stage turbocharging system is an adequate solution for power recovery of diesel engines. In the present study, the change of boost pressure and engine power at different altitudes was investigated, and a regulated two-stage turbocharging system was constructed with an original turbocharger and a matched low pressure turbocharger. The valve control strategies for boost pressure recovery, which formed the basis of the power recovery method, are presented here. The simulation results showed that this system was effective in recovering the boost pressure at different speeds and various altitudes. The turbine bypass valve and compressor bypass valve had different modes to adapt to changes in operating conditions. The boost pressure recovery could not ensure power recovery over the entire operating range of the diesel engine, because of variation in overall turbocharger efficiency. The fuel-injection compensation method along with the valve control strategies for boost pressure recovery was able to reach the power recovery target.
机译:恢复增压压力对于改善高海拔地区柴油机的动态性能非常重要。调节的两级涡轮增压系统是柴油发动机动力回收的适当解决方案。在本研究中,研究了不同高度下增压压力和发动机功率的变化,并构造了带有原始涡轮增压器和匹配的低压涡轮增压器的调节两级涡轮增压系统。本文介绍了用于增压恢复的阀控制策略,该策略构成了功率恢复方法的基础。仿真结果表明,该系统可以有效地恢复不同速度和不同高度的增压压力。涡轮旁通阀和压缩机旁通阀具有不同的模式,以适应工况变化。由于总体涡轮增压器效率的变化,增压恢复无法确保柴油发动机整个工作范围内的功率恢复。燃油喷射补偿方法以及用于增压恢复的气门控制策略能够达到功率恢复目标。

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