首页> 外文会议>Annual Boulder damage symposium >Measurement of laser power resistance of fibers for PIV systems
【24h】

Measurement of laser power resistance of fibers for PIV systems

机译:用于PIV系统纤维激光电力电阻的测量

获取原文

摘要

Particle Image Velocimetry (PIV) is a well known measurement protocol for analyzing the dynamic behavior of fluids in liquid or gaseous phases (granulate analysis is also possible). With respect to the demands of the measurement accuracy, a high fluence at the observation zone is required. Presently, this can only be realized by using very precisely aligned equipment and high power laser pulses. For industrial applications a simpler set-up is needed. Thus the research project is aimed at the development of a portable endoscopic-based solution which requires the guidance of laser light through optical fibers. The realization of such an optical fiber system is a technical challenge since the high instantaneous energies, which exist in the laser pulse, can cause irreversible damage to the optical fiber. Consequently, the main goal is the determination of the maximum fluences, that different fiber core bulk materials can tolerate, and the comparison of these results with the maximum achievable fluence when transmitting light through optical fibers. A simple theoretical modeling tool for the approximation of the power handling capability was developed. Based on this theoretical analysis, Laser Zentrum Hannover examined the impacts that laser pulses and fiber materials have on light incoupling and guidance. An experimental set-up was developed to investigate the laser light resistance of different fiber bulk materials as well as the fibers themselves. This paper introduces the measurement set-up and the results of LIDT measurements of several fiber core materials. Furthermore, the fiber measurement set-up, achievable fluences, transmission efficiencies as well as the typical fiber damage behavior are presented.
机译:粒子图像速度(PIV)是众所周知的测量方案,用于分析液态或气态阶段中的流体的动态行为(粒状分析也是可能的)。关于测量精度的要求,需要在观察区的高通量。目前,这只能通过使用非常精确的对准设备和高功率激光脉冲来实现。对于工业应用,需要更简单的设置。因此,研究项目旨在开发一种基于内窥镜的基于内窥镜的解决方案,这需要通过光纤引导激光。这种光纤系统的实现是技术挑战,因为存在于激光脉冲中的高瞬时能量,这可能导致光纤对光纤造成不可逆转的损坏。因此,主要目标是测定最大流速,不同的纤维核心散装材料可以耐受,并且这些结果与通过光纤传输光时的最大可实现的流量的比较。开发了一种简单的理论建模工具,用于近似功率处理能力。基于这种理论分析,激光Zentrum汉诺威对光输送和指导的影响检查了激光脉冲和纤维材料的影响。开发了一种实验装置,以研究不同纤维散装材料以及纤维本身的激光耐光性。本文介绍了几种纤维芯材料的测量设置和LIDT测量结果。此外,介绍了纤维测量设置,可实现的流量,传输效率以及典型的纤维损伤行为。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号