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Building Stone Condition Monitoring Using Specially Designed Compensated Optical Fiber Humidity Sensors

机译:使用专门设计的补偿式光纤湿度传感器监控建筑石材状况

摘要

This paper presents the design and implementation of a novel optical fiber temperature compensated relative humidity (RH) sensor device, based on fiber Bragg gratings (FBGs) and developed specifically for monitoring water ingress leading to the deterioration of building stone. The performance of the sensor thus created, together with that of conventional sensors, was first assessed in the laboratory where they were characterized under experimental conditions of controlled wetting and drying cycles of limestone blocks, before being employed “in-the-field” to monitor actual building stone in a specially built wall. Although a new construction, this was built specifically using conservation methods similar to those employed in past centuries, to allow an accurate simulation of processes occurring with wetting and drying in the historic walls in the University of Oxford.
机译:本文介绍了一种新型的基于光纤布拉格光栅(FBG)的光纤温度补偿相对湿度(RH)传感器设备的设计和实现,该设备专门用于监控导致建筑石材变质的进水情况。如此创建的传感器以及常规传感器的性能首先在实验室中进行了评估,并在控制条件下对石灰石块的润湿和干燥周期进行了测试,然后在“现场”进行监测。特殊建造的墙壁中的实际建筑石材。尽管是新建筑,但它是使用类似于过去几个世纪的养护方法专门建造的,目的是精确模拟牛津大学历史悠久的城墙中因润湿和干燥而发生的过程。

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