科技报告详细信息
Structural health monitoring of wind turbine blades : SE 265 Final Project.
Barkley, W. C. (Walter C.) ; Jacobs, Laura D. ; Rutherford, A. C. (Amanda C.) ; Puckett, Anthony
Los Alamos National Laboratory
关键词: Repair;    Stresses;    Wind Turbines;    Monitoring;    Economics;   
DOI  :  10.2172/1000464
RP-ID  :  LA-UR-06-3240
RP-ID  :  NONE
RP-ID  :  1000464
美国|英语
来源: UNT Digital Library
PDF
【 摘 要 】

ACME Wind Turbine Corporation has contacted our dynamic analysis firm regarding structural health monitoring of their wind turbine blades. ACME has had several failures in previous years. Examples are shown in Figure 1. These failures have resulted in economic loss for the company due to down time of the turbines (lost revenue) and repair costs. Blade failures can occur in several modes, which may depend on the type of construction and load history. Cracking and delamination are some typical modes of blade failure. ACME warranties its turbines and wishes to decrease the number of blade failures they have to repair and replace. The company wishes to implement a real time structural health monitoring system in order to better understand when blade replacement is necessary. Because of warranty costs incurred to date, ACME is interested in either changing the warranty period for the blades in question or predicting imminent failure before it occurs. ACME's current practice is to increase the number of physical inspections when blades are approaching the end of their fatigue lives. Implementation of an in situ monitoring system would eliminate or greatly reduce the need for such physical inspections. Another benefit of such a monitoring system is that the life of any given component could be extended since real conditions would be monitored. The SHM system designed for ACME must be able to operate while the wind turbine is in service. This means that wireless communication options will likely be implemented. Because blade failures occur due to cyclic stresses in the blade material, the sensing system will focus on monitoring strain at various points.

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