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相关概念视频

Residual Stresses01:26

Residual Stresses

207
Residual stresses reside in a structure even after removing the original stress inducer. This phenomenon often arises from varied plastic deformations across different parts of a structure. Consider a rod stretched beyond its yield point. It will not regain its original length due to permanent deformation. Even after load removal, the rod does not entirely lose stress because of uneven plastic deformations, resulting in residual stresses. The computation of these stresses in structures is...
207
Effects of Creep01:25

Effects of Creep

117
Creep in concrete, the gradual deformation under prolonged stress, significantly impacts the integrity of structures. For reinforced concrete beams, it can be a vital design consideration, as it increases deflection, sometimes necessitating additional design measures. In columns, especially slender ones under eccentric loads, creep can cause buckling, compromising their stability. However, creep can be beneficial in indeterminate structures by mitigating stresses that arise from shrinkage,...
117
Plastic Behavior01:21

Plastic Behavior

192
A material's elastic behavior is characterized by the disappearance of stress once the load is removed, allowing the material to return to its original state. However, when stress surpasses the yield point, yielding commences, marking the onset of plastic deformation or permanent set. This change from elastic to plastic behavior is influenced by the peak stress value and the duration before the load is removed. An intriguing observation occurs when a specimen is loaded, unloaded, and...
192
Creep in Concrete01:22

Creep in Concrete

182
Creep refers to the time-dependent increase in strain under a sustained load, excluding other time-dependent deformations associated with shrinkage, swelling, and thermal expansion in concrete. The primary mechanism behind creep involves the loss of physically adsorbed water from the calcium silicate hydrate within the hydrated cement paste. This process is further exacerbated by concrete's non-linear stress-strain relationship, microcrack development in the interfacial transition zone, and...
182
Superplasticizers01:30

Superplasticizers

81
Superplasticizers are advanced admixtures that enhance the workability of concrete by lowering the water content without compromising the strength of the material. These substances are highly effective water reducers, improving concrete flow, making it easier to work with, and enabling concrete to reach inaccessible areas or densely reinforced sections without mechanical vibration. The key components in superplasticizers are either sulfonated melamine or naphthalene formaldehyde condensates,...
81
Quarrying of Stone01:15

Quarrying of Stone

103
Quarrying is the process of extracting stone from a quarry, where specialized techniques are employed to remove large blocks of stone safely and efficiently. This process can involve controlled explosions or more precision-oriented methods such as cutting and drilling.
One common method involves using a diamond belt saw to cut large blocks from the quarry face. These blocks can be about 50 feet long and 12 feet high. After the initial vertical cut, drilling is performed at the base of the...
103

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相关实验视频

Updated: Jun 12, 2025

A Uniaxial Compression Experiment with CO2-Bearing Coal Using a Visualized and Constant-Volume Gas-Solid Coupling Test System
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超高水材料填充对压力降低和煤柱采矿期间能量释放的影响:一个案例研究.

Keke Xing1,2, Jingyi Cheng1, Zheng Zhen1

  • 1School of Mines, China University of Mining and Technology, Xuzhou, Jiangsu, 221116, China.

Heliyon
|September 23, 2024
PubMed
概括

超高水位填充有效地挖掘深层隔离的煤柱,减少压力和能量释放. 这项技术减轻了岩石破裂的风险,对资源枯竭的矿山显著有前途.

关键词:
补充身体的压力 身体的压力.填充矿山采矿的背后填充微观地震活动.带式煤炭柱柱是什么意思?

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科学领域:

  • 采矿工程 采矿工程 采矿工程
  • 地质技术工程 地质技术工程
  • 资源恢复 资源回收 资源回收

背景情况:

  • 对于中国东部资源枯竭的矿山而言,地带煤柱采矿至关重要.
  • 由于强度和耐用性问题,传统的回填方法在深层支柱采矿中面临超高含水量材料的挑战.

研究的目的:

  • 调查超高水位填充技术的可行性和有效性,以开采深度隔离的煤柱.
  • 评估这项技术对压力,能量释放和岩石爆裂风险的影响.

主要方法:

  • 理论分析 理论分析
  • 数字模拟 数字模拟
  • 现场监测 现场监测 现场监测
  • 面板的工程案例研究c8301

主要成果:

  • 与洞穴挖掘相比,超高水填充显著减少了29.6%的峰值应力和51.5%的弹性能量.
  • 采矿面板c8301使用这种方法减少了微地震和释放的能量,减轻了岩石爆裂风险.
  • 现场监测证实了地震活动和能量释放的减少,验证了该技术的有效性.

结论:

  • 超高水回填技术是开采深度隔离煤柱的可行和有效方法.
  • 该技术显示出在资源枯竭的煤矿中应用的巨大潜力,提高了安全性和资源回收.