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Reverse engineering methodology as a way of steam turbine blades designing for Loviisa Nuclear Power

机译:逆向工程方法作为Loviisa核电蒸汽轮机叶片设计的一种方法

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This article concerns a reverse engineering-based design process of last stage blade (LSB) for other original equipment manufacturer (oOEM). For Loviisa Power Plant (Finland) GE designed and delivered a set of oOEM LSBs to be fit into existing low pressure (LP) turbine module steam path. Although cost competitiveness is a one of major selection criterion for steam turbine spare parts components supplier, diversification of suppliers is also a strategic for power plant owner. Considered here is a process of reengineering of oOEM LSB and all relevant challenges related to this process especially management of geometry deviations between reverse-engineered and oOEM blade. In this article, there are a design steps described taken to qualify reverse-engineered design. Moreover, a manufacturing process of the LSB is shown.
机译:本文涉及针对其他原始设备制造商(oOEM)的末级刀片(LSB)基于逆向工程的设计过程。 GE为Loviisa电厂(芬兰)设计并交付了一套oOEM LSB,以适合现有的低压(LP)涡轮模块蒸汽通道。尽管成本竞争力是蒸汽轮机备件供应商的主要选择标准之一,但供应商的多元化也是电厂所有者的一项战略。这里考虑的是oOEM LSB的重新设计过程以及与此过程相关的所有相关挑战,尤其是反向工程刀片与oOEM刀片之间的几何形状偏差管理。在本文中,描述了用于验证反向工程设计的设计步骤。此外,示出了LSB的制造过程。

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