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INVESTIGATION AND ANALYSIS OF HIGH THRUST BEARING TEMPERATURE AFTER FIELD OVERHAUL AND RERATE OF A CENTRIFUGAL COMPRESSOR – (PPT)

机译:野外大修后高推力轴承温度的调查与分析离心压缩机 - (PPT)

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A centrifugal compressor in olefins plant charge gas service experienced excessive thrust bearing temperatures after startup following a field overhaul and rerate. While the machine was online, an analytical study was carried out to determine the possible causes for the excessive thrust bearing temperature. The study involved confirmation of the aero load through calculation, verifying the thrust bearing's capacity with the use of computer modeling, and correlation with operating field data to determine the likely cause of thrust bearing distress. A mechanical test of an identical spare bearing was conducted on an existing thrust bearing test rig to confirm the results of the analytical study and field observations. A compressor outage was ultimately required to remedy the thrust bearing issue. A methodical approach to the shutdown work was employed to assure detection and correction of the cause for the thrust bearing distress while minimizing the duration of the plant outage. The approach included full scale oil flow rate testing in the field as well as a comprehensive bearing disassembly and inspection plan. The culprit for the excessive thrust bearing temperature was discovered and corrected allowing for successful compressor operation after restart. This case study examines non-intrusive analysis and test methods to understand the issue without the chance of repeated outages.
机译:烯烃植物电荷气体服务中的离心式压缩机在开创性之后经历了在田间改革和遥远之后开创性的过度推力轴承温度。虽然机器在线,但进行了分析研究以确定过度推力轴承温度的可能原因。该研究涉及通过计算确认航空负荷,验证推力轴承的能力,使用计算机建模,以及与操作现场数据的相关性,以确定推力轴承窘迫的可能原因。在现有推力轴承试验台上进行相同的备用轴承的机械测试,以确认分析研究和现场观测结果。最终需要压缩机停电来弥补推力轴承问题。采用了关闭工作的方法方法,以确保检测和校正推力轴承窘迫的原因,同时最小化植物中断的持续时间。该方法包括该领域的全规模油流量测试以及全面的轴承拆卸和检验计划。发现和校正过大推力轴承温度的罪魁祸首,允许在重启后成功的压缩机操作。本案例研究检查了非侵入式分析和测试方法,以了解问题而无需重复中断。

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