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ROTORDYNAMIC VALIDATION OF AN ULTRA HIGH SPEED MULTISTAGE CENTRIFUGAL COMPRESSOR STACKED ROTOR

机译:超高速多级离心压缩机叠片转子的转子动力学验证

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The author's company is currently developing some centrifugal compressor prototypes where the traditional rotor design based on shrunk on wheels and spacers is not suitable due to the specific service requirements (e.g. high peripheral speed or high temperature). For instance the development of a new centrifugal compressor technology aimed to reduce the number of compressor units needed to fulfill a given service is ongoing. In order to accomplish this challenging target a very high rotational speed is required together with special "high pressure ratio" centrifugal stages. The rotor mechanical configuration which has been selected here is a stacked configuration where each centrifugal wheel is integral with the relevant shaft portion. The several shaft portions are mated together through high precision toothed connections (Hirth couplings) and the assembly is secured through a pre-stretched tie-rod. This rotor stacked configuration is not typical for the most of the industrial centrifugal compressors (a solid shaft with shrink fitted impellers is the common solution, as anticipated) but it is allowed by API standards, and it is referenced in Turbomachinery technical literature. The rotordynamics of this special prototype is very challenging since it deals with a seven piece stacked rotor running supercritical. An extensive validation program was required in addition to careful design. This is the specific subject of the present paper which will cover the main following items: validation of the "rotor alone" rotordynamic modelization through comparison with the relevant ping test results, selection of special high speed journal bearings, and overview of the low and high speed balancing process. All these steps together finally allowed the author's company to fully demonstrate the soundness of this stacked rotor technology for application in High Pressure Ratio Compression service.
机译:作者的公司目前正在开发一些离心压缩机原型,其中基于轮子和垫片上的传统转子设计,由于特定的服务要求(例如,高周速或高温),不适合。例如,旨在减少满足特定服务所需的压缩机单元数量的新的离心压缩机技术的开发正在进行中。为了实现这一具有挑战性的目标,需要非常高的转速与特殊的“高压比”离心阶段一起。这里选择的转子机械构造是堆叠结构,其中每个离心轮与相关轴部分一体。通过高精度齿连接(HIRTH联接)将多个轴部分连接在一起,并且组件通过预拉伸的扎带固定。该转子堆叠的配置对于大多数工业离心压缩机(具有收缩安装叶轮的实心轴是常见的解决方案,也是预期的),但通过API标准允许,它在涡轮机技术文献中引用。这种特殊原型的旋转性能非常具有挑战性,因为它涉及七件堆叠转子运行超临界。除了仔细设计外,还需要一个广泛的验证计划。这是本文的具体主题,将涵盖主要的以下项目:通过与相关的Ping测试结果,选择特殊的高速期刊轴承的比较验证“单独”旋转动力学建模化,以及低和高的概述速度平衡过程。所有这些步骤最终允许提交人的公司充分展示这款堆叠转子技术的健全性,以便在高压比压缩服务中应用。

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