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Effects of multiple heating-cooling cycles on the permeability and microstructure of a mortar

机译:多次加热-冷却循环对砂浆渗透性和微观结构的影响

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摘要

Cement-based materials can be used as a sealing layer in compressed air energy storage (CAES) underground storage caverns to ensure airtightness. This experimental study investigated the effects of multiple heating-cooling cycles with variations in the gas permeability, porosity, and microstructure of a mortar sample. Three different temperature ranges, namely, 20-50 degrees C, 20-60 degrees C and 20-70 degrees C, were selected according to different operation conditions of the CAES plants. The results showed that the gas permeability decreases with an increase in temperature in the heating process within each temperature cycle due to a reduction in the pore volume. After the sample was subjected to multiple heating cooling cycles, the gas permeability has an overall increasing tendency with an increase in cycle number, and the magnitude of the permeability increase is related to the maximum cycling temperature. The microstructure observed by SEM indicates that the temperature cycles will induce some microcracks, which are mainly distributed on the cement matrix surface and in the interfacial transition zone (ITZ) between the cement matrix and sand aggregate. The expansion of the existing cracks and appearance of new cracks caused by a temperature effect led to an increase in the gas permeability. (C) 2018 Elsevier Ltd. All rights reserved.
机译:水泥基材料可用作压缩空气能量存储(CAES)地下存储洞穴中的密封层,以确保气密性。这项实验研究调查了多个加热-冷却循环的影响,这些变化具有砂浆样品的透气性,孔隙率和微观结构的变化。根据CAES工厂的不同运行条件,选择了三个不同的温度范围,即20-50摄氏度,20-60摄氏度和20-70摄氏度。结果表明,由于孔体积的减小,在每个温度周期内加热过程中气体渗透率随温度的升高而降低。样品经过多次加热冷却循环后,气体渗透率总体上随循环次数的增加而增加,并且渗透率的增加幅度与最大循环温度有关。扫描电镜观察到的微观结构表明,温度循环会引起一些微裂纹,这些裂纹主要分布在水泥基体表面和水泥基体与砂骨料之间的界面过渡区(ITZ)中。由温度效应引起的现有裂纹的扩展和新裂纹的出现导致气体渗透率的增加。 (C)2018 Elsevier Ltd.保留所有权利。

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