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AMIKON is a high-tech enterprise specialized in professional sales of industrial automation components, and is committed to improving the level of world automation parts supply.
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1 Purpose This Wind Application Guide outlines best practices in condition monitoring solutions (CMS) for the wind turbine power generation industry using GE’s Bently Nevada products, services and capabilities. 2 Scope This document describes the wind turbine monitoring and diagnostics objectives, product and sales strategy, business case, ROI justification, implementation process and other related information to achieve a well-qualified and successful customer implementation. This document will help you understand the customers' different technical, operational and commercial needs and tailor a suitable successful solution to meet them.
Complementary solutions that address other areas of the turbine or specific services also are available from GE. Although details about these solutions are outside the scope of this document, this guide will reference them so that you can appreciate GE's additional capabilities. 3.2 Mechanical Overview Wind turbines transfer wind energy into electrical power. They consist of three main parts: the tower, blades, and nacelle.
3.1 General Wind farm owners/operators seek to achieve optimum availability and power generation from their wind farms throughout their 20- to 25-year life expectancy. These objectives are aligned to various operational, availability and financial targets to meet power purchase agreements (PPAs) and/or shareholder objectives. GE’s objective is to provide customers with the insight and foresight to be able to identify issues and trends and convert them into actionable information. Enabling customers to transition from traditional time-based maintenance activities to more proactive performance-based maintenance helps significantly reduce asset risk and escalating operation and maintenance (O&M) costs. The primary purpose of implementing an online CMS in a wind turbine is to provide early detection of issues, identify trends and ultimately mitigate the risk of catastrophic failures. Wind turbines are complex machines that are based on a drivetrain containing several critical components. They often operate in hostile environments, facing excessive heat, icing, and aerodynamic and mechanical forces. Nacelles, which house the drivetrain, often weigh in excess of 60 tons and are elevated more than 100 meters above ground level (AGL). Many drivetrain components (main bearing, gearbox and generator) are susceptible to various known failure modes. Undertaking up-tower condition-based proactive maintenance substantially reduces avoidable up-tower repairs. GE’s primary focus is to provide solutions for early detection of deterioration and potential failure within the drivetrain. This is achieved with sophisticated vibration measurement technology that detects, alarms and notifies operators on changes of state.