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基于蓝宝石光纤布拉格光栅的多点温度传感器在某商业发电厂锅炉中的应用

Application of Sapphire-Fiber-Bragg-Grating-Based Multi-Point Temperature Sensor in Boilers at a Commercial Power Plant.

作者信息

Yang Shuo, Homa Daniel, Heyl Hanna, Theis Logan, Beach John, Dudding Billy, Acord Glen, Taylor Dwyn, Pickrell Gary, Wang Anbo

机构信息

Center for Photonics Technology, The Bradley Department of Electrical and Computer Engineering, Virginia Polytechnic Institute and State University (Virginia Tech), Blacksburg, VA 24061, USA.

Department of Material Science and Engineering, Virginia Polytechnic Institute and State University (Virginia Tech), Blacksburg, VA 24061, USA.

出版信息

Sensors (Basel). 2019 Jul 21;19(14):3211. doi: 10.3390/s19143211.

Abstract

Readily available temperature sensing in boilers is necessary to improve efficiencies, minimize downtime, and reduce toxic emissions for a power plant. The current techniques are typically deployed as a single-point measurement and are primarily used for detection and prevention of catastrophic events due to the harsh environment. In this work, a multi-point temperature sensor based on wavelength-multiplexed sapphire fiber Bragg gratings (SFBGs) were fabricated via the point-by-point method with a femtosecond laser. The sensor was packaged and calibrated in the lab, including thermally equilibrating at 1200 °C, followed by a 110-h, 1000 °C stability test. After laboratory testing, the sensor system was deployed in both a commercial coal-fired and a gas-fired boiler for 42 days and 48 days, respectively. The performance of the sensor was consistent during the entire test duration, over the course of which it measured temperatures up to 950 °C (with some excursions over 1000 °C), showing the survivability of the sensor in a field environment. The sensor has a demonstrated measurement range from room temperature to 1200 °C, but the maximum temperature limit is expected to be up to 1900 °C, based on previous work with other sapphire based temperature sensors.

摘要

对于发电厂而言,在锅炉中实现易于获取的温度传感对于提高效率、减少停机时间并降低有毒气体排放至关重要。当前技术通常作为单点测量进行部署,主要用于检测和预防由于恶劣环境导致的灾难性事件。在这项工作中,通过飞秒激光逐点法制造了基于波长复用蓝宝石光纤布拉格光栅(SFBG)的多点温度传感器。该传感器在实验室进行了封装和校准,包括在1200°C下进行热平衡,随后进行110小时、1000°C的稳定性测试。经过实验室测试后,该传感器系统分别在一台商用燃煤锅炉和一台燃气锅炉中部署了42天和48天。在整个测试期间,传感器的性能保持一致,在此期间它测量的温度高达950°C(有一些温度超过1000°C的波动),显示了该传感器在现场环境中的生存能力。该传感器已证明的测量范围为室温至1200°C,但根据之前对其他基于蓝宝石的温度传感器的研究,预计最高温度极限可达1900°C。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c52/6679512/03c091e94e97/sensors-19-03211-g001.jpg

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