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Study of Measured and Model-Based Generated Turbine Performance Maps Within a 1D Model of a Heavy-Duty Diesel Engine Operated During Transient Conditions

机译:在瞬态条件下运行的重型柴油发动机1D模型中测量和基于模型的涡轮机性能图的研究

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One-dimensional engine simulation codes are today frequently used for turbocharger matching in stationary engine operation. Due to the turbocharger's slow response, simulation tools that can predict the engine transient performance are desired. In this work a commercial turbine modelling software was used for turbine performance map generation for a wide operational range. It is based on semi-empirical models and requires turbine geometry data as input. The generated maps were compared with measured and numerically extrapolated turbine performance maps within a thermodynamic 1D model of an HD diesel engine operated in transient conditions. The thermodynamic engine model was verified against engine test cell data. The results show that the model-based generated performance turbine maps give similar results as the maps generated from measured turbine performance data. For performance prediction of turbines employed on reciprocating internal combustion engines especially when operated during transient conditions there is still a need for model improvement.
机译:一维发动机仿真代码今天经常用于固定发动机操作中的涡轮增压器匹配。由于涡轮增压器的慢响应,需要预测发动机瞬态性能的仿真工具。在这项工作中,将商用涡轮机建模软件用于较宽的运行范围的涡轮性能图生成。它基于半经验模型,需要涡轮机几何数据作为输入。将所生成的图与在瞬态条件下操作的HD柴油发动机的热力学1D模型中的测量和数值外推的涡轮机性能图进行比较。热力学发动机模型针对发动机测试单元数据进行了验证。结果表明,基于模型的生成的性能涡轮机映射与从测量的涡轮机性能数据产生的地图提供类似的结果。对于在往复式内燃机上采用的涡轮机的性能预测,特别是在瞬态条件下操作时仍然需要模型改进。

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