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Field Machining - Rehabilitation of Hydro Turbine Embedded Components

机译:现场加工-水轮机嵌入式部件的修复

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This paper analyzes hydro turbine rehabilitation in regard to the field machining of embedded components. Field machining of hydro turbine embedded components such as stay rings is often required if the location and condition of the embedded components are not within design operational specifications.The alignment and condition of hydro turbine components are effected by powerhouse settling, concrete growth, seismic activity, maintenance practices, and unnatural circumstances. These factors can cause discharge rings to not be eccentric with stator cores limiting generation capacity, upper stay ring flanges to be out of level effecting shaft bearing performance, and wicket gate stem bores to not be plumb or eccentric increasing the chance of failure.These alignment problems can be remedied by means of field machining. Embedded components can easily be corrected or modified to improve and increase unit longevity. Hydro turbine perpendicularity and parallel conditions can be reestablished. Damaged critical surfaces can be overlaid with cavitation resistant materials. Modernization features such as o-ring grooves or wicket gate end seals can be added. Field machining is a custom process that can be preformed to any hydro turbine configuration.The correction of a hydro turbine unit's alignment is one of the central goals of a rehabilitation project. The process of field machining can be integrated into any rehabilitation schedule with minimal impact to the total duration of the project. If field machining is approached with the goal to optimize the balance between cost, risk, and schedule, the final outcome ensures a successful unit reassembly. This paper will present a detailed overview of a typical rehabilitation field machining scoping process, machining life cycle, and their results.
机译:本文分析了嵌入式零件的现场加工方面的水轮机修复技术。如果嵌入式部件的位置和状况不在设计操作规范之内,则经常需要对水轮机嵌入式部件(如止动环)进行现场加工。 水轮机组件的对准和状况受动力室沉降,混凝土生长,地震活动,维护实践和不自然环境的影响。这些因素可能导致排放环与定子铁芯不偏心,从而限制发电能力,上支撑环法兰不平整,从而影响轴承的性能,并且闸门杆孔不垂直或偏心,从而增加了发生故障的可能性。 这些对准问题可以通过现场加工来解决。嵌入式组件可以很容易地进行校正或修改,以提高和延长设备的使用寿命。可以重新建立水轮机的垂直度和平行条件。损坏的关键表面可能会覆盖上抗气蚀材料。可以添加现代化功能,例如O形圈槽或闸门端密封。现场加工是一种定制过程,可以执行为任何水轮机配置。 修复水轮机单元的对准是修复项目的主要目标之一。现场加工过程可以集成到任何修复计划中,而对项目的总工期影响最小。如果以优化成本,风险和进度之间的平衡为目标进行现场加工,则最终结果可确保成功进行单元重组。本文将详细介绍典型的修复现场加工范围界定过程,加工生命周期及其结果。

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