在实时温度下对砂岩的机械和透性行为进行实验研究
Zhinan Lin1, Wenjie Huang1, Jiankun Yang2
1College of Civil and Architectural Engineering, Guangxi University of Science and Technology, Liuzhou, 545006, China.
Scientific reports
|November 17, 2025
概括
调查砂岩的研究.
科学领域:
- 地质技术工程 地质技术工程
- 岩石机械学 岩石机械学
- 地热能源 地热能源
背景情况:
- 深层地质环境带来了独特的热水力机械 (THM) 挑战.
- 了解不同温度下的砂岩行为对于地下基础设施至关重要.
- 现有的研究往往缺乏实时温度状况分析.
研究的目的:
- 在实时温度条件下探索砂岩机械和透性质的演变.
- 分析影响砂岩THM特性的微结构变化.
- 为在高地热道中对周围岩石稳定性评估提供理论支持.
主要方法:
- 在25°C至95°C的砂岩样本上进行了热液力机械 (THM) 合试验.
- 使用Rock Top多场合测试仪测量强度,变形和透性.
- 使用扫描电子显微镜 (SEM) 进行微观结构分析.
主要成果:
- 砂岩的强度最初增加,然后随着温度的增加而下降;峰值应变非线性增加.
- 透性显示出最初的下降,随后增加,温度灵敏度低于限制压力.
- 微观结构分析显示,在更高温度 (75°C95°C) 时,孔隙和裂缺陷增加.
结论:
- 温度显著改变了砂岩的机械性能和透性.
- 微观结构缺陷是这些属性变化的根本原因.
- 这些发现支持对围绕岩石的深地热道的稳定性评估.
相关概念视频
Specific Heat
66.9K
The specific heat capacity of a substance refers to the energy required to increase the temperature of one gram of that substance by one degree Celcius. Specific heat capacity is often represented in calories (cal), grams (g), and degrees Celsius (oC), but can also be expressed in joules (J), kilograms (kg), and Kelvin (K), among other units.
For example, increasing the temperature of one gram of water by 1°C requires one calorie of heat energy and can be written as 1 cal/g-°C, or...
For example, increasing the temperature of one gram of water by 1°C requires one calorie of heat energy and can be written as 1 cal/g-°C, or...
66.9K
Permeability of Concrete
447
Permeability in the context of concrete refers to how easily liquids or gases can pass through the material. This quality is crucial for assessing the water-tightness and durability of concrete structures and their resistance to chemical attacks. Concrete permeability can be determined through comparative laboratory tests. These tests typically involve sealing a concrete specimen from the sides, applying water pressure to the top surface with pressure, and measuring the amount of water passing...
447
Porosity and Absorption of Aggregate
721
Aggregates contain pores of varying sizes; while some are completely enclosed within the particles, others open onto the surface, allowing water to penetrate. The porosity of aggregates is a major factor contributing to the overall porosity of concrete, given that aggregates constitute about three-quarters of concrete's volume.
When all pores in an aggregate are filled with water, the aggregate is considered saturated and surface-dry. If left in dry air, water will evaporate until the...
When all pores in an aggregate are filled with water, the aggregate is considered saturated and surface-dry. If left in dry air, water will evaporate until the...
721
Unsoundness of Aggregate due to Volume Change
341
Unsoundness in aggregates due to volume changes is primarily caused by the physical alterations aggregates undergo, such as freezing and thawing, thermal changes, and wetting and drying. Unsound aggregates, when subjected to these changes, result in volume change upon disintegration. This, in turn, contributes to the deterioration of concrete, including scaling, pop-outs, and cracking. Particular types of aggregates, such as porous flints, cherts, and those containing clay minerals, are...
341
Testing Water Quality
333
When the quality of water for concrete preparation is uncertain, its impact on the setting time of cement and compressive strength of mortar is assessed by comparison with de-ionized or distilled water benchmarks. American Society for Testing and Materials (ASTM) C1602 requires the setting times to be within 90 minutes of the control, British Standard (BS) 3146:1980 allows a 30-minute variance in the initial setting, while British Standards European Norm (BS EN) 1008 specifies initial setting...
333
Masonry in Cold and Hot Weather Conditions
322
In cold weather, masonry construction requires specific precautions to ensure mortar does not freeze before curing, as this can significantly weaken its strength and watertightness. Mortar temperature should be maintained between 60°F and 80°F to support proper hydration and curing. Below 40°F, mortar water must be heated, but should not exceed 120°F as high temperatures can reduce mortar's compressive and bond strength.
Other key practices include keeping masonry units...
Other key practices include keeping masonry units...
322


