涡轮增压器轴承座内传热模拟

E. Zadorozhnaya, V. Hudyakov, S. Sibiryakov
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引用次数: 1

摘要

现代世界发动机制造趋势的特点是生产强制发动机。最流行和最有前途的强迫方法是使用涡轮增压器。轴颈轴承的效率决定了TCR的可靠性,TCR应结构简单、紧凑、可靠和廉价,同时提供可接受的转子动力学、噪声、振动和刚度速度特性。轴承单元的最佳性能是通过流体动力润滑实现的,这取决于最佳的操作和温度条件。在设计阶段必须考虑轴承组件的最高工作温度。本文的目的是开发一种计算涡轮增压器轴承座传热的算法,以评估径向轴承的热状态对其性能和转子动力学的影响。在ANSYS软件包和开发的软件中进行了仿真。从实验数据中得到了计算的边界条件。仿真的结果是确定了涡轮增压器壳体内的温度场和热场,以及在部件热膨胀影响下间隙的变化值。在与其他作者所得结果对比的基础上,对所得结果进行了验证。得出了热变形对转子动力学和轴承流体力学特性影响的结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of heat transfer in a turbocharger bearing housing
Modern world trends in engine building are characterised by the production of forced engines. The most popular and promising forcing method is the use of a turbocharger. The efficiency of journal bearings determines the reliability of TCR, which should be structurally simple, compact, reliable and inexpensive, while providing acceptable characteristics of rotor dynamics, noise, vibration and stiffness speeds. The best performance of the bearing unit is achieved with hydrodynamic lubrication, which depends on optimal operating and temperature conditions. The maximum operating temperature of the bearing assembly must be taken into account at the design stage. The purpose of this article is to develop an algorithm for calculating the heat transfer in the turbocharger bearing housing in order to assess the effect of the thermal state of the radial bearing on its performance and on the dynamics of the rotor. The simulation was carried out in the ANSYS software package and the developed software. The boundary conditions for the calculation were obtained from experimental data. The result of the simulation was the determination of temperatures and thermal fields in the turbocharger housing, as well as the values of the change in clearances under the influence of thermal expansion of parts. Verification of the results was carried out on the basis of comparison with the results obtained by other authors. Conclusions were drawn about the effect of thermal deformations on the rotor dynamics and the hydromechanical characteristics of the bearing.
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