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DIGITAL SPECKLE PHOTOGRAMMETRY TECHNIQUES APPLIED TO MONITORING HIGH TEMPERATURE STEAM PIPES

机译:数字斑点摄影测量技术应用于监控高温蒸汽管

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Digital Speckle Photogrammetry (DSP) is proving to be a very useful technique for studying, in the laboratory, the distribution of strain about cracks and other defects in stressed specimens. This non-contact technique is able to resolve strain gradients over a small physical area, for example across a weld heat affected zone. The technique has good potential for use as a condition monitoring tool for a variety of components in electrical power stations. In addition this measurement technique could also be applied to monitor the integrity of critical components of newer generation plant, such as wind turbine generator blades.There are, however, many installation problems to be overcome. For example, there is the need to have regard for the hostile environment in steam generating plant and the demanding conditions to which wind turbine blades are subjected. Ideally the outputs from individual DSP sensors would be used for continuous remote monitoring. However, DSP measurements can also be useful each time the plant is shut down during a plant outage; which would be used to complement data from existing proven rugged monitoring methods. This paper describes ongoing work to develop a ruggedised digital speckle 'sensor' and associated image capture system.
机译:数字斑点摄影测量(DSP)被证明是一种非常有用的学习技术,在实验室中,裂缝和其他缺陷在应激标本中的菌株分布。该非接触技术能够在小物理区域上解析应变梯度,例如穿过焊接热影响区域。该技术具有良好的用途作为电力站各种部件的状态监测工具。此外,还可以应用该测量技术来监测较新一代植物的关键部件的完整性,例如风力涡轮发电机刀片。然而,要克服许多安装问题。例如,需要考虑蒸汽发生设备中的敌对环境以及受到风力涡轮机叶片的苛刻条件。理想情况下,各个DSP传感器的输出将用于连续远程监控。然而,每次工厂停机期间关闭时,DSP测量也可能有用;这将用于补充来自现有经过验证的崎岖监测方法的数据。本文介绍了开发粗糙化的数字斑点“传感器”和相关图像捕获系统的持续工作。

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