首页> 外文会议>ASME turbo expo: turbomachinery technical conference and exposition >OPTIMIZATION OF A 900 MM TILTING-PAD JOURNAL BEARING IN LARGE STEAM TURBINES BY ADVANCED MODELING AND VALIDATION
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OPTIMIZATION OF A 900 MM TILTING-PAD JOURNAL BEARING IN LARGE STEAM TURBINES BY ADVANCED MODELING AND VALIDATION

机译:通过高级建模和验证优化大型汽轮机中900毫米倾斜垫轴颈轴承的性能

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Modernization of steam turbine components can extend the life of a power plant, decrease maintenance costs, increase service intervals and improve operational flexibility. However, this can also lead to challenging demands for existing components such as bearings, e.g., due to increased rotor weights. Therefore, a careful design and evaluation process of bearings is of major importance. This paper describes the advanced modeling methods applied for the optimization of a novel 900 mm three-pad tilting pad journal bearing followed by validation results that showed a high bearing temperature sensitivity to the fresh oil supply temperature during operation. The bearing was especially developed to cope with increased rotor weights within the framework of low pressure steam turbine modernizations at two similar 1000 MW nuclear power plants. With a static bearing load of approximately 2.7 MN at a rotor speed of 1500 rpm, it represents one of the highest loaded applications for tilting pad journal bearings in turbomachinery worldwide. After identification of the reasons for the sensitivity, advanced modeling methods were applied to optimize the bearing. For this purpose, a more comprehensive bearing model was developed taking into account the direct lubrication at the leading edge of the pads and the thermo-mechanical pad deformation. For the latter, a co-simulation between the bearing computation code and structural mechanics software was performed. The results of the entire analyses indicated modifications of bearing and pad clearance, pad pivot position, circumferential and axial pad length as well as pad thickness. Furthermore, the oil distribution into the pads was optimized by modifying the orifices within the bearing. The optimized bearing was then implemented on both units and proved its excellent operational behavior at increased fresh oil supply temperatures of up to 55°C. In addition, inspections during scheduled outages after 18 months of operation and subsequent restarts with reproducible bearing behavior confirmed the robustness of the optimized bearing. In conclusion, the application of advanced modeling methods proved to be the key success factor in the optimization of this bearing, which represents an optimal solution for large steam turbine and generator rotor train applications.
机译:汽轮机组件的现代化改造可以延长电厂的使用寿命,降低维护成本,增加维修间隔并提高操作灵活性。但是,例如由于转子重量增加,这也可能导致对诸如轴承之类的现有部件的挑战性需求。因此,仔细设计和评估轴承的过程至关重要。本文介绍了先进的建模方法,这些方法用于优化新型900毫米三垫瓦可倾瓦瓦轴颈轴承,其后的验证结果表明,轴承温度对运行期间的新鲜供油温度具有很高的敏感性。该轴承是专门为在两个类似的1000 MW核电站的低压蒸汽轮机现代化框架内应对转子重量增加而开发的。在1500 rpm的转子转速下,轴承的静态载荷约为2.7 MN,是全世界涡轮机械中可倾瓦轴承的最高载荷应用之一。在确定了敏感性的原因之后,采用了先进的建模方法来优化轴承。为了这个目的,考虑到在垫的前缘处的直接润滑和热机械垫的变形,开发了更全面的轴承模型。对于后者,进行了轴承计算代码和结构力学软件之间的联合仿真。整个分析的结果表明,轴承和轴瓦间隙,轴瓦枢轴位置,轴瓦周向和轴向长度以及轴瓦厚度都有变化。此外,通过修改轴承内的孔口,可以优化分配到轴瓦中的油。然后在两个单元上均采用了优化的轴承,并证明了其在高达55°C的新鲜机油供应温度下具有出色的运行性能。此外,在运行18个月后的计划内停机期间进行的检查以及随后的可再现轴承性能重启均证实了优化轴承的坚固性。总之,事实证明,先进的建模方法的应用是优化该轴承的关键成功因素,它代表了大型蒸汽轮机和发电机转子轮系应用的最佳解决方案。

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