Research on Mine Seal Stability Under Explosion Load and Ground Pressure In Underground Coal Mines

IF 1.2 4区 工程技术 Q3 MINING & MINERAL PROCESSING Archives of Mining Sciences Pub Date : 2023-07-20 DOI:10.24425/ams.2020.132707
Jianwei Cheng, W. Song, Yi Jing, Xixi Zhang, M. Korzec, M. Borowski, Yue Wang
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引用次数: 7

Abstract

The mine seals in coal mines with a good impact resistance and air tightness are mainly used to isolate abandoned mining areas from active workings. For one thing, it can prevent the leakage of harmful gases, such as toxic gas from abandoned areas. For another, once an underground mine explosion happens, it can effectively block the spread of the explosion between the abandoned mining areas and the active workings. Hence, it is of great significance to study the explosion-proof performance and mechanical properties of the mine seals. First of all, the effect of slotting on the stability of the seals in coal mines under explosion load was explored in this study. By numerical simulations, the mechanical response characteristics of the seals with or without cutting a slot under the explosion load were compared in detail. The results show that slotting improved the stress concentration at the contact surface of surrounding rock by transferring partial impact received by mine seals to the surrounding rocks, thus, to achieve the effect of buffering explosion impact. Besides, such effect will be enhanced with increasing cutting depth into rock, and will stabilize when the depth is 20 cm. On this basis, the mechanical properties and damage of the seals constructed by different materials (standard brick and #C40 concrete) under the explosion load were compared. It was found that once a slot was set, the maximum deformation of the concrete seal was reduced, while the maximum deformation of the brick seal increased. Since the non-deformability of the concrete seal is obviously stronger than that of the brick seal, with the impact resistance stronger than that of the brick seal, the concrete seal is more suitable for slotting. Moreover, the damage of the seals in underground coal mines under the strata ground pressure was studied; the results of which show that the damage state under the ground pressure can be divided into 3 levels, i.e. no damage, minor damage and rapid development of damage. Meanwhile, it was found that the prestressed structure formed by the ground pressure at the level of no damage can enhance the protective effect of the seals in coal mines. However, when the ground pressure was further developed, the seal itself was destroyed and the
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煤矿井下爆炸载荷和地压作用下矿井密封稳定性研究
煤矿密封具有良好的抗冲击性和气密性,主要用于将废弃矿区与活动工作区隔离开来。首先,它可以防止有害气体的泄漏,例如废弃地区的有毒气体。另一方面,一旦地下矿山发生爆炸,它可以有效地阻止爆炸在废弃矿区和活动工作区之间的传播。因此,研究矿用密封件的防爆性能和力学性能具有重要意义。本文首先探讨了切口对煤矿密封件在爆炸载荷作用下稳定性的影响。通过数值模拟,详细比较了在爆炸载荷作用下,有切口密封和无切口密封的力学响应特性。结果表明,开槽通过将密封件受到的部分冲击传递到围岩上,改善了围岩接触面的应力集中,从而达到缓冲爆炸冲击的效果。此外,随着岩石切割深度的增加,这种效果会增强,当切割深度为20cm时,这种效果就会稳定。在此基础上,比较了不同材料(标准砖和#C40混凝土)建造的密封件在爆炸载荷下的力学性能和损伤情况。研究发现,一旦设置槽口,混凝土密封的最大变形减小,而砖密封的最大形变增加。由于混凝土密封的不变形性明显强于砖密封,且抗冲击性强于砖,因此混凝土密封更适合开槽。此外,还研究了地层地压作用下煤矿井下密封的破坏情况;结果表明,地压作用下的损伤状态可分为无损伤、轻微损伤和快速发展损伤三个层次。同时,研究发现,在无损伤的水平上,由地压形成的预应力结构可以增强煤矿密封的保护效果。然而,当地面压力进一步发展时,密封件本身被破坏
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来源期刊
Archives of Mining Sciences
Archives of Mining Sciences 工程技术-矿业与矿物加工
CiteScore
2.40
自引率
16.70%
发文量
0
审稿时长
20 months
期刊介绍: Archives of Mining Sciences (AMS) is concerned with original research, new developments and case studies in mining sciences and energy, civil engineering and environmental engineering. The journal provides an international forum for the publication of high quality research results in: mining technologies, mineral processing, stability of mine workings, mining machine science, ventilation systems, rock mechanics, termodynamics, underground storage of oil and gas, mining and engineering geology, geotechnical engineering, tunnelling, design and construction of tunnels, design and construction on mining areas, mining geodesy, environmental protection in mining, revitalisation of postindustrial areas. Papers are welcomed on all relevant topics and especially on theoretical developments, analytical methods, numerical methods, rock testing, site investigation, and case studies.
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