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Thermal expansion measurements in fresh and saline ice using fiber optic strain gauges and multipoint temperature sensors based on Bragg Gratings

机译:使用光纤应变仪和基于布拉格光栅的多点温度传感器测量新鲜和盐水冰的热膨胀

摘要

This paper describes the use of Fiber Bragg Grating (FBG) sensors to investigate the thermomechanical properties of saline ice. FBG sensors allowed laboratory measurements of thermal expansion of ice samples with a range of different sizes and geometries. The high sampling frequency, accuracy, and resolution of the FBG sensors provide good quality data across a temperature range from 0°C to −20°C. Negative values of the effective coefficient of thermal expansion were observed in ice samples with salinities 6 ppt, 8 ppt, and 9.4 ppt. A model is formulated under which structural transformations in the ice, caused by temperature changes, can lead to brine transfer from closed pockets to permeable channels, and vice versa. This model is compared to experimental data. Further, in experiments with confined floating ice, heating as well as thermal expansion due to vertical migration of liquid brine, caused by under-ice water pressure, was observed.
机译:本文介绍了使用光纤布拉格光栅(FBG)传感器来研究盐冰的热机械性质。 FBG传感器允许实验室测量各种尺寸和几何形状的冰样的热膨胀。 FBG传感器的高采样频率,准确性和分辨率可在0°C至-20°C的温度范围内提供高质量的数据。在盐度为6 ppt,8 ppt和9.4 ppt的冰样品中观察到有效热膨胀系数为负值。建立了一个模型,在该模型下,温度变化引起的冰中结构变化可导致盐水从封闭的囊体转移到可渗透的通道,反之亦然。将该模型与实验数据进行比较。此外,在使用受限浮冰的实验中,观察到由于冰水压力不足引起的液体盐水垂直迁移导致的加热以及热膨胀。

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