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CONTACTLESS SHAFT TORQUE DETECTION FOR WIDE RANGE PERFORMANCE MEASUREMENT OF EXHAUST GAS TURBOCHARGER TURBINES

机译:非接触式轴扭矩检测,用于废气涡轮增压器涡轮机的宽范围性能测量

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Turbochargers develop away from an auxiliary component - being "off the shelve" - towards an integrated component of the internal combustion engine. Hence, increased attention is paid to the accuracy of the measured turbine and compressor maps. Especially turbine efficiency measurement under engine-relevant operating conditions (pulsed flow) is recently receiving increased attention in the respective research community. Despite various turbine map extrapolation methods, sufficient accuracy of the input test data is indispensable. Accurate experimental data are necessary to achieve high quality extrapolation results, enabling a wide range and precise prediction of turbine behavior under unsteady flow conditions, determined by intermittent operation of the internal combustion engine. The present work describes the first application of a contactless shaft torque measurement technique - based on magnetostriction - to a small automotive turbocharger. The contactless torque measuring system is presented in detail and sensor principle as well as sensor calibration are illustrated. A sensitivity study regarding sensor position influences onto sensor signal proves the robustness and very good repeatability of the system. In the second part of the paper, steady state experimental results from operation on a conventional hot gas test stand over a wide map range are presented. These results are validated against full turbine stage (adiabatic as well as diabatic) CFD results as well as against "cold" efficiency measurements, based on measured inlet and outlet temperatures. The influence and relevance of bearing friction for such measurements is underlined and the improvements on this matter - achieved by direct torque measurement - are demonstrated.
机译:涡轮增压器从辅助部件开发 - 朝向内燃机的集成部件“关闭搁板”。因此,增加了增加的涡轮机和压缩机图的准确性。特别是发动机相关操作条件下的涡轮效率测量(脉冲流量)最近在各个研究界中受到增加的关注。尽管各种涡轮机映射外推方法,但输入测试数据的充分精度是必不可少的。需要精确的实验数据来实现高质量的外推结果,通过内燃机的间歇操作确定,实现了在不稳定的流动条件下的涡轮机行为的宽范围和精确预测。本作本作描述了非接触式轴扭矩测量技术的第一次应用 - 基于磁致伸缩 - 到小型汽车涡轮增压器。无接触式扭矩测量系统详细介绍,并示出了传感器原理以及传感器校准。关于传感器位置对传感器信号影响的灵敏度研究证明了系统的鲁棒性和非常好的可重复性。在纸张的第二部分中,提出了常规热气测试支架在宽地图范围内的稳态实验结果。这些结果针对全涡轮机阶段(绝热以及糖尿病)CFD结果验证,以及基于测量的入口和出口温度的“冷”效率测量。下划线了轴承摩擦对这种测量的影响和相关性,并通过直接扭矩测量来实现对此物质的改进。

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