整体涡轮增压器模型对LP-EGR发动机瞬态和稳态性能预测的影响

J. Serrano, F. Arnau, L. González, Alejandro Gómez-Vilanova, S. Guilain
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引用次数: 0

摘要

涡轮增压发动机是内燃机的标准动力系统类型,用于火花点火和压缩点火概念。传统的涡轮增压器建模依赖于基于涡轮增压器制造商提供的地图的查找表。这些地图是唯一可靠的信息来源。它们既用于往复式发动机与涡轮增压器之间的匹配,也用于进一步的发动机优化和性能分析。在过去的几年里,很明显,只有这些图对于诸如后处理进口温度(涡轮出口),中冷器进口温度(压缩机出口)和发动机低负荷BSFC等变量的详细计算是无用的。本文展示了一项综合研究,该研究量化了仅使用查找表与计算涡轮增压器摩擦损失、传热和气体动力学的模型的误差,并以一种共轭方式进行了比较。该研究以一台欧5发动机为研究对象,该发动机在负载瞬态工况下运行,并在稳态工况下使用LP-EGR电路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of a Holistic Turbocharger Model in the Prediction of Engines Performance in Transient Operation and in Steady State With LP-EGR
Turbocharged engines are the standard powertrain type of internal combustion engines for both spark ignition and compression ignition concepts. Turbochargers modeling traditionally rely in look up tables based on turbocharger manufacturer provided maps. These maps as the only secure source of information. They are used both for the matching between reciprocating engine and the turbocharger and for the further engine optimization and performance analysis. In the last years have become evident that only these maps are not being useful for detailed calculation of variables like after-treatment inlet temperature (turbine outlet), intercooler inlet temperature (compressor outlet) and engine BSFC at low loads. This paper shows a comprehensive study that quantifies the errors of using just look up tables compared with a model that accounts for friction losses, heat transfer and gas-dynamics in a turbocharger and in a conjugated way. The study is based in an Euro 5 engine operating in load transient conditions and using a LP-EGR circuit during steady state operation.
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