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Evaluation of Transient Response of Turbochargers and Turbines Using Database Method for the Nonlinear Forces of Journal Bearings

机译:利用数据库方法评估轴颈轴承非线性力的涡轮增压器和涡轮机瞬态响应

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The paper extents the fluid film bearing database method to arbitrary fixed bearing profiles including floating ring bearings. The method is applied to evaluate rotordynamic response of an automotive turbocharger, modeled as rigid rotor, and of a turbine-generator shaft train for power generation modeled as flexible rotor through the transient transfer matrix method. The methodology claims to render drastically faster evaluation of transient response of rotating systems with nonlinear bearings regardless the complexity of the bearing models implemented. The computational time of transient response is similar to this when short bearing expressions are used. Turbocharger rotordynamic simulation considers the use of nonlinear bearing models as mandatory, and several case studies have to be performed for the definition of key design parameters of floating ring bearings. The bearing database method offers the tool for a severe total time reduction in rotordynamic calculations, with the possibility to implement advanced thermohydrodynamic bearing models to the rotordynamic algorithm as fast as short bearing approximation formulas. Furthermore, the rotordynamic design of large turbine shaft trains is still based on linear harmonic analysis which leads to conservative designs. The database method aims to include the transient response of nonlinear rotor models as a standard procedure in the rotordynamic design of large shaft trains, which nowadays is avoided due to high time cost and complexity.
机译:本文将流体膜轴承数据库方法扩展到任意固定的轴承轮廓,包括浮动环轴承。该方法适用于通过瞬态传递矩阵法评估建模为刚性转子的汽车涡轮增压器和建模为挠性转子的用于发电的涡轮发电机轴系的转子动力学响应。该方法声称,无论所实现轴承模型的复杂性如何,都可以大大更快地评估带有非线性轴承的旋转系统的瞬态响应。使用短轴承表达式时,瞬态响应的计算时间与此类似。涡轮增压器转子动力学仿真将非线性轴承模型的使用视为强制性的,并且必须进行一些案例研究来定义浮动环轴承的关键设计参数。轴承数据库方法为大幅减少转子动力学计算中的总时间提供了工具,并有可能以与短轴承近似公式一样快的速度,将先进的热流体力学轴承模型应用于转子动力学算法。此外,大型涡轮轴系的转子动力学设计仍基于线性谐波分析,这导致了保守的设计。该数据库方法旨在将非线性转子模型的瞬态响应作为标准程序包括在大型轴系的转子动力学设计中,如今由于高昂的时间成本和复杂性而避免了这种方法。

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