Long-term stability of a new conductivity-temperature sensor tested on the VENUS cabled observatory

T. Horiuchi, F. Wolk, P. Macoun
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引用次数: 6

Abstract

The stability of the conductivity sensor is a key consideration for the long-term deployments of the instruments on mooring and observatories, because the conductivity measurement is very sensitive to the accumulation of organisms (bio-fouling) inside the sensor. We tested the performance of a conductivity sensor, the ALEC CTW, which features a simple but effective wiper mechanism to keep the sensing cavity of the conductivity cell free of bio-fouling. The sensor was deployed for a period of 12 months on the Victoria Experimental Network Under the Sea (VENUS) observatory, operated by the University of Victoria in British Columbia, Canada. The VENUS observatory provided power and data telemetry to monitor the sensor's performance in real time. A post recovery calibration of the conductivity sensor showed that the wiper mechanism was effective in maintaining the sensors calibration.
一种新的电导率-温度传感器在金星电缆天文台上测试的长期稳定性
电导率传感器的稳定性是系泊和天文台长期部署仪器的关键考虑因素,因为电导率测量对传感器内部生物(生物污染)的积累非常敏感。我们测试了电导率传感器ALEC CTW的性能,该传感器具有简单但有效的刮水机制,以保持电导率电池的传感腔免于生物污染。该传感器在加拿大不列颠哥伦比亚省维多利亚大学运营的维多利亚海底实验网络(VENUS)天文台上部署了为期12个月的时间。金星天文台提供电力和遥测数据,实时监测传感器的性能。电导率传感器恢复后的校准表明,雨刷机构在保持传感器校准方面是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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