首页> 外文会议>World Tribology Congress III 2005 vol.1 >ADVANCES IN NONLINEAR ROTORDYNAMICS OF PASSENGER VEHICLE TURBOCHARGERS: A VIRTUAL LABORATORY ANCHORED TO TEST DATA
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ADVANCES IN NONLINEAR ROTORDYNAMICS OF PASSENGER VEHICLE TURBOCHARGERS: A VIRTUAL LABORATORY ANCHORED TO TEST DATA

机译:乘用车涡轮增压器的非线性转子动力学研究:测试数据的虚拟实验室

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Passenger vehicle turbochargers (TCs) offer increased IC engine power and efficiency. TCs operate at high rotational speeds and use engine oil in their bearing support system comprising of inner and outer lubricant films acting in series. The hydrodynamic bearings induce instabilities, i.e. subsynchronous shaft motions over wide operating speed ranges. Yet, the motions are well bounded limit enabling the TC continuous operation. Due to the lack of accurate and efficient predictive nonlinear tools, turbocharger rotordynamic design followed, until recently, costly test stand iteration. Presently, a rotordynamics model coupled to a bearing lubrication model calculates the nonlinear motions of TCs and delivers predictions of TC shaft dynamic response for practical conditions. The software emulates a virtual laboratory, effectively aiding to design better TC products with increased reliability in a shorter cycle time. Predictions of the nonlinear model compare well with recorded TC shaft motions, both in amplitude and frequency content. The benchmarking lends credence to the validity of the integrated computational model.
机译:乘用车涡轮增压器(TC)提供更高的IC发动机功率和效率。 TC在高转速下运行,并在其轴承支撑系统中使用机油,该轴承支撑系统由内部和外部润滑膜串联而成。液力轴承引起不稳定性,即在较宽的运行速度范围内轴同步运动。但是,运动范围有限,可实现TC连续运行。由于缺乏准确和有效的预测非线性工具,直到最近,涡轮增压器的转子动力学设计才开始进行昂贵的试验台迭代。目前,与轴承润滑模型耦合的转子动力学模型可计算出TC的非线性运动,并根据实际情况提供TC轴动态响应的预测。该软件可模拟虚拟实验室,有效地帮助设计更好的TC产品,并在较短的周期时间内提高了可靠性。非线性模型的预测与已记录的TC轴运动的幅度和频率含量都很好。基准测试证明了集成计算模型的有效性。

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