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Modeling and Analysis of a Turbocharged Diesel Engine with Variable Geometry Compressor System

机译:具有变几何压缩机系统涡轮增压柴油机的建模与分析

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In order to increase the efficiency of automotive turbochargers at low speed without compromising the performance at maximum boost conditions, variable geometry compressor (VGC) systems, based on either variable inlet guide vanes or variable geometry diffusers, have been recently considered as a future design option for automotive turbochargers. This work presents a modeling, analysis and optimization study for a Diesel engine equipped with a variable geometry compressor that help understand the potentials of such technology and develop control algorithms for the VGC systems. A cycle-averaged engine system model, validated on experimental data, is used to predict the most important variables characterizing the intake and exhaust systems (i.e., mass flow rates, pressures, temperatures) and engine performance (i.e., torque, BMEP, volumetric efficiency), in steady-state and transient conditions. The model is used to explore the engine system sensitivity to the VGC control input; in particular, its effect on the engine performance and compressor stability is evaluated. A preliminary optimization for steady-state (open-loop) control of the VGC system is then proposed.
机译:为了提高汽车涡轮增压器的效率,在不影响最大升压条件下的性能,可变几何压缩机(VGC)系统,基于可变入口导向叶片或可变几何漫射器,最近被视为未来的设计选项适用于汽车涡轮增压器。这项工作提出了配备有可变几何压缩机的柴油发动机的建模,分析和优化研究,有助于了解这种技术的潜力,并为VGC系统开发控制算法。验证在实验数据上的周期平均发动机系统模型,用于预测表征进气和排气系统的最重要变量(即质量流量,压力,温度)和发动机性能(即扭矩,BMEP,体积效率),在稳态和瞬态条件下。该模型用于探索发动机系统对VGC控制输入的敏感性;特别地,评估其对发动机性能和压缩机稳定性的影响。然后提出了VGC系统的稳态(开环)控制的初步优化。

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