期刊文献+
共找到5篇文章
< 1 >
每页显示 20 50 100
分段胶结充填法非胶结充填体顶水高度的力学模型 被引量:4
1
作者 张爱卿 吴爱祥 +3 位作者 王贻明 王洪江 尹升华 王正英 《中国有色金属学报》 EI CAS CSCD 北大核心 2021年第6期1686-1693,共8页
为了预防分段胶结充填过程中非胶结充填体顶水高度过大导致充填挡墙破坏而发生跑浆事故,在满足一定假设条件和必要前提的基础上,建立非胶结充填体顶水高度力学模型,并进行理论求解。以某铁矿充填采场为工程分析实例,采用控制变量法(CVM... 为了预防分段胶结充填过程中非胶结充填体顶水高度过大导致充填挡墙破坏而发生跑浆事故,在满足一定假设条件和必要前提的基础上,建立非胶结充填体顶水高度力学模型,并进行理论求解。以某铁矿充填采场为工程分析实例,采用控制变量法(CVM)研究非胶结充填体顶水高度随充填沉降比和充填挡墙承受荷载的变化规律。结果表明:在充填挡墙承受荷载一定的前提下,非胶结充填体顶水高度随着充填沉降比的增大而不断增大,呈二次多项式关系;在充填沉降比一定的前提下,非胶结充填体顶水高度随着充填挡墙承受荷载的增大而不断增大,呈线性关系。最终得到某铁矿充填采场非胶结充填体安全顶水高度值为2 m,与工程实测结果相同,研究具有一定的工程实用意义。 展开更多
关键词 非胶结充填体 顶水高度 挡墙 力学模型
下载PDF
水资源保护条件下非胶结膏体充填开采技术 被引量:1
2
作者 孙晓光 周华强 甘建东 《山东煤炭科技》 2016年第5期31-32,34,共3页
梅林庙煤矿井田范围内有哈头才当一级水源保护区,为保护水资源,开发出了6 m大采高年产千万吨工作面非胶结膏体充填开采技术,该技术不仅可以保护水资源,还可以处理矸石,取代采空区灌浆防灭火系统,实现绿色开采。
关键词 水源保护区 大采高 绿色开采
下载PDF
水资源保护条件下非胶结膏体充填开采技术
3
作者 孙晓光 周华强 甘建东 《陕西煤炭》 2016年第4期65-68,共4页
梅林庙井田范围内有哈头才当一级水源保护区。为了保护水资源,开发出6 m大采高年产千万吨工作面非胶结膏体充填开采技术。该技术不仅保护了水资源,还可以处理矸石,取代采空区灌浆防灭火系统,实现绿色开采。
关键词 水源保护区 大采高 年产千万吨工作面 绿色开采
下载PDF
某矿山充填体下回采矿体安全顶柱厚度预测研究 被引量:4
4
作者 辛春波 许红坤 徐芃 《有色金属(矿山部分)》 2018年第1期24-28,39,共6页
为实现提前达产,某地下开采生产矿山采用上下两个中段(-130m和-410m)同时回采,其中上部中段(-130m中段)采用分段空场法回采,采空区由废石或非胶结尾砂充填处理。为保证下部中段回采的安全稳定,需在充填体下方留设一定厚度的顶柱。作者... 为实现提前达产,某地下开采生产矿山采用上下两个中段(-130m和-410m)同时回采,其中上部中段(-130m中段)采用分段空场法回采,采空区由废石或非胶结尾砂充填处理。为保证下部中段回采的安全稳定,需在充填体下方留设一定厚度的顶柱。作者通过理论分析计算及数值计算相结合的方式对安全顶柱厚度进行预测研究,为保障下中段回采的安全性、提高资源回收率及有效控制地压提供技术支撑。 展开更多
关键词 非胶结充填体 安全顶柱 理论分析 数值计算
下载PDF
Failure mechanisms and destruction characteristics of cemented coal gangue backfill under compression effect of non-uniform load
5
作者 FENG Guo-rui GUO Wei +5 位作者 QI Ting-ye LI Zhu CUI Jia-qing WANG Hao-chen CUI Ye-kai MA Jing-kai 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第8期2676-2693,共18页
Backfill mining is one of the most important technical means for controlling strata movement and reducing surface subsidence and environmental damage during exploitation of underground coal resources. Ensuring the sta... Backfill mining is one of the most important technical means for controlling strata movement and reducing surface subsidence and environmental damage during exploitation of underground coal resources. Ensuring the stability of the backfill bodies is the primary prerequisite for maintaining the safety of the backfilling working face, and the loading characteristics of backfill are closely related to the deformation and subsidence of the roof. Elastic thin plate model was used to explore the non-uniform subsidence law of the roof, and then the non-uniform distribution characteristics of backfill bodies’ load were revealed. Through a self-developed non-uniform loading device combined with acoustic emission (AE) and digital image correlation (DIC) monitoring technology, the synergistic dynamic evolution law of the bearing capacity, apparent crack, and internal fracture of cemented coal gangue backfills (CCGBs) under loads with different degrees of non-uniformity was deeply explored. The results showed that: 1) The uniaxial compressive strength (UCS) of CCGB increased and then decreased with an increase in the degree of non-uniformity of load (DNL). About 40% of DNL was the inflection point of DNL-UCS curve and when DNL exceeded 40%, the strength decreased in a cliff-like manner;2) A positive correlation was observed between the AE ringing count and UCS during the loading process of the specimen, which was manifested by a higher AE ringing count of the high-strength specimen. 3) Shear cracks gradually increased and failure mode of specimens gradually changed from “X” type dominated by tension cracks to inverted “Y” type dominated by shear cracks with an increase in DNL, and the crack opening displacement at the peak stress decreased and then increased. The crack opening displacement at 40% of the DNL was the smallest. This was consistent with the judgment of crack size based on the AE b-value, i. e., it showed the typical characteristics of “small b-value-large crack and large b-value-small crack”. The research results are of significance for preventing the instability and failure of backfill. 展开更多
关键词 cemented coal gangue backfill non-uniform load degree of non-uniformity of load failure mode crack opening displacement
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部