积极的干预压缩控制用于采矿前的屋顶倒塌和采矿影响
Zhanshan Shi1,2, Jun Wang3, Jianfeng Hao2
1Erdos Research Institute, Liaoning Technical University, Erdos, 017000, China.
Scientific reports
|March 29, 2025
概括
本研究介绍了一种主动的避免策略,以控制煤矿中周围岩石变形. 这种方法可以减少11%的道路变形,提高采矿操作期间的安全性.
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
- 岩石机械 岩石机械
背景情况:
- 屋顶倒塌在返回空中公路中,在煤炭开采业务中带来了重大挑战,特别是在经过粗地区时.
- 了解屋顶倒塌的原因,如高静态负荷和采矿压力,对于有效控制至关重要.
研究的目的:
- 分析了在李家煤矿沿着高峰的肋骨上屋顶倒塌的特点和原因.
- 为周围岩石控制提出和评估早期干预减压控制技术.
主要方法:
- 进行了现场调查和数值模拟,以分析屋顶倒塌特征.
- 基于莫尔-库伦标准建立了一个数值模型,以确定影响因素.
- 开发并实施了一种以"主动避免"为中心的早期干预减压控制技术.
主要成果:
- 周围岩石的变形受到静态负荷,采矿压力,岩石特性和减压效应的影响.
- 干预的最佳时间是当工作面距离屋顶倒塌区域20米时,避开路径分为20米.
- 积极干预的减压技术使周围岩石变形减少了约11%.
结论:
- 早期主动干预减压技术在减少道路周围岩石变形方面是有效的.
- 开发的"主动避免"战略为控制煤矿屋顶倒塌提供了实用和有效的解决方案.
- 在经过避开道路后恢复使用原始道路,可以确保经济效益,同时保持安全.
相关概念视频
Quarrying of Stone
864
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...
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...
864
Posttensioned Masonry Walls
661
Post-tensioned masonry walls use high-strength steel rods or flexible tendons to enhance the strength and efficiency of masonry structures. These elements are securely anchored to the foundation and extend vertically either within the cores of the masonry units or between the masonry wythes. The construction process involves building the wall with these tensioning elements in place and allowing the mortar to fully cure.
Following the curing process, the tensioning begins. Steel rods are...
661
Slump Test
1.8K
The slump test is a widely used method to measure the workability of concrete. It employs a 12-inch high truncated cone mold that tapers from eight inches at the base to four inches at the top. Before testing, the mold is securely attached to a flat base and dampened.
Concrete is poured into the mold in three layers to conduct the test. Each layer is compacted 25 times with a steel tamping rod, which has a five-eighths-inch diameter and a rounded end, to ensure even distribution and eliminate...
Concrete is poured into the mold in three layers to conduct the test. Each layer is compacted 25 times with a steel tamping rod, which has a five-eighths-inch diameter and a rounded end, to ensure even distribution and eliminate...
1.8K
Impact Strength of Concrete
753
Impact strength in concrete is a critical measure that reflects the material's capability to endure the forces applied during pile driving and when supporting machinery foundations that experience impulsive loads. It is also essential when handling precast concrete components to prevent accidental damage. The impact strength is assessed by observing the concrete's resistance to repeated impacts and energy absorption capacity. A key indicator of significant damage to concrete is when it...
753
Design Example: Managing Concrete Workability
421
This example deals with managing the workability of concrete for a raft foundation project under hot weather conditions. Workability is crucial for ensuring the concrete is easy to place, compact, and finish. In this scenario, a slump test — a common method to measure the workability of fresh concrete — initially indicated low workability. This was attributed to the rapid water loss from the concrete mix, exacerbated by the high temperatures causing the course aggregates to heat up.
421
Bioreactor Controls-I
103
Maintaining optimal conditions within fermenters is essential for maximizing microbial productivity and ensuring process efficiency. This lesson focuses on key parameters—temperature, foam, pH, carbon dioxide, oxygen, and pressure—and their precise measurement and control strategies in fermentation systems.Temperature ControlTemperature regulation is critical due to the exothermic nature of many fermentation processes. In small laboratory fermenters, temperature is commonly...
103


