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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Thermal conductivity of thermally damaged Beishan granite under uniaxial compression
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Thermal conductivity of thermally damaged Beishan granite under uniaxial compression

机译:单轴压缩下热损伤北山花岗岩的导热系数

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Investigations of the thermal conductivity of thermally damaged Beishan granite under uniaxial compression were conducted. Rectangular prism specimens preconditioned at 105 degrees C were heated at different temperatures (400, 550 and 650 degrees C) and then cooled to room temperature (27 degrees C) for testing. Using the transient plane source (TPS) method, in combination with a servo-controlled compression machine and an acoustic emission (AE) monitoring system, lateral thermal conductivities, stress-strain relations and AE responses of the thermally treated specimens during uniaxial compression were measured. The effects of thermal treatment temperature on the strength, deformation and AE parameters were analyzed. The lateral thermal conductivity evolution characteristics for the specimens in the deformation process were studied. The stress-and-deformation-dependent lateral thermal conductivities were also evaluated. The experimental results indicate that the lateral thermal conductivity varies nonlinearly with increasing axial stress due to closure, initiation and propagation of microcracks within the specimens. Moreover, significant differences exist in the lateral thermal conductivity behaviors between the specimens subjected to different temperature treatments. Furthermore, to reveal the influence of cracking behaviors on the thermal conductivity of the thermally damaged specimens in compression, numerical modeling was performed using PFC and the simulation results agree well with the experimental data.
机译:进行了单轴压缩下热损伤北山花岗岩的导热系数的研究。在105℃下预处理的矩形棱镜样本在不同的温度下加热(400,550和650℃),然后冷却至室温(27℃)以进行测试。使用瞬态平面源(TPS)方法与伺服控制压缩机和声发射(AE)监测系统的组合,测量了在单轴压缩期间热处理试样的横向热导率,应力 - 应变关系和AE反应。分析了热处理温度对强度,变形和AE参数的影响。研究了变形过程中标本的横向导热率进化特性。还评估了应力和变形依赖性横向热导率。实验结果表明,由于封闭,起始和在样本内微裂纹的闭锁,引发和传播,横向导热率随着轴向应力而变化。此外,在经受不同温度处理的试样之间的横向导热行为中存在显着差异。此外,为了揭示裂化行为对压缩中的热损伤样本的导热率的影响,使用PFC进行数值建模,并且模拟结果与实验数据很好。

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