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AN END-USER'S GUIDE TO CENTRIFUGAL PUMP ROTORDYNAMICS

机译:离心泵圈子动力学的最终用户指南

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This tutorial outlines the basics of pump rotordynamics in a form that is intended to be Machinery End User friendly. Key concepts will be defined in understandable terms, and analysis and testing options will be presented in summary form. The presentation will explain the reasoning behind the API-610 rotor and structural vibration evaluation requirements, and will summarize key portions of API-684 "API Standard Paragraphs Covering Rotordynamics" as it applies to centrifugal pumps. Pump rotordynamic problems, including the bearing and seal failure problems that they may cause, are responsible for a significant amount of the maintenance budget and lost-opportunity cost at many refineries and electric utilities. This tutorial discusses the typical types of pump rotordynamic problems, and how they can be avoided in most cases by applying the right kinds of vibration analysis and evaluation criteria during the pump design and selection/application process. Although End Users seldom are directly involved in designing a pump, it is becoming more typical that the reliability-conscious End User or his consultant will audit whether or not the OEM has performed due diligence in the course of his pump design. In the case of rotordynamics, important issues include where the pump is operating on its curve (preferably close to BEP), how close the pump rotor critical speeds and rotor-support structural natural frequencies are to running speed or other forcing frequencies, how much vibration will occur at bearings or within close running clearances for expected worst case imbalance and misalignment, and whether or not the rotor system is likely to behave in a stable, predictable manner. When and why rotordynamics analysis or finite element analysis might be performed will be discussed, as well as what kinds of information these analyses can provide to an end user that could be critical to reliable and trouble-free operation. A specific case history will be presented in the context of typical or particularly problematic situations that plants have faced, and what types of solutions were effective at inexpensively providing a permanent fix.
机译:本教程概述了泵圈动力学的基础知识,以旨在成为机械最终用户友好的形式。关键概念将以可理解的术语定义,分析和测试选项将以摘要表格呈现。演示文稿将解释API-610转子背后的推理和结构振动评估要求,并将总结API-684“API标准段落覆盖圈动力学的关键部分”,因为它适用于离心泵。泵圈动力问题,包括可能导致的轴承和密封故障问题,负责大量的维护预算和许多炼油厂和电力公用事业的机会成本。本教程讨论了典型的泵旋转动力问题,以及在大多数情况下如何通过应用泵设计和选择/应用过程中的振动分析和评估标准来避免它们。虽然最终用户很少直接参与设计泵,但可靠性意识的最终用户或其顾问将审核OEM在他的泵设计过程中是否审核,这变得越来越典型。在旋转动力学的情况下,重要的问题包括泵在其曲线上运行的位置(优选地接近BEP),泵转子临界速度和转子支撑结构自然频率是运行速度或其他强制频率的近距离,多大振动将发生在轴承或闭合运行间隙中,以进行预期最坏情况的不平衡和未对准,以及转子系统是否可能以稳定,可预测的方式行事。将讨论何时以及为何可以进行旋转性分析或有限元分析,以及这些分析的信息可以向最终用户提供可能对可靠和无故障操作至关重要的最终用户。将在植物面临的典型或特别有问题的情况下呈现特定情况历史,以及廉价地提供永久性修复的解决方案有效的解决方案。

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