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束状孔分层落矿采矿方法研究
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作者 陈何 《有色金属工程》 CAS 北大核心 2024年第2期114-118,共5页
针对球形药包分层崩落采矿法落矿分层厚度小、采场生产能力较低的问题,基于束状孔爆破理论,研发束状孔分层落矿采矿方法。束状孔爆破具有增强破岩作用的爆破效应。4~5个炮孔组成的束状孔,采用当量球形药包装药,爆破分层高度为单孔球形... 针对球形药包分层崩落采矿法落矿分层厚度小、采场生产能力较低的问题,基于束状孔爆破理论,研发束状孔分层落矿采矿方法。束状孔爆破具有增强破岩作用的爆破效应。4~5个炮孔组成的束状孔,采用当量球形药包装药,爆破分层高度为单孔球形药包爆破的2~3倍。束状孔分层落矿采矿方法采用束状深孔当量球形药包漏斗爆破,束状炮孔间距7~8 m,采用普通工业炸药爆破。每次分层爆破落矿高度5~8 m,贫化率8%,损失率10%,大块率<5%,采场生产能力1 800~2 400 t/d。与单孔球形药包爆破VCR法比较,大块率降低10%~20%,采场生产能力提高1倍以上。束状孔分层落矿采矿方法是一种适用于厚大矿体、中厚急倾斜矿体的大规模高效开采方法。 展开更多
关键词 束状孔分层落矿采矿方法 当量球形药包 漏斗爆破 分层爆破 大规模采矿
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减少采场中出现岩墙、岩帽的途径 被引量:2
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作者 梁庭祥 王晶军 《有色金属(矿山部分)》 北大核心 2003年第3期8-8,47,共2页
强化管理,改进技术,可以有效地提高大爆破的质量,减少或避免岩墙、岩帽的产生,为正常的生产活动减轻压力。
关键词 采场 岩墙 岩帽 爆破质量 落矿方法 中深孔爆破法 有底柱分段崩落法 采矿方法
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Statistic constitutive equation of top-coal damage for fully mechanized coal face with sublevel caving 被引量:2
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作者 翟新献 《Journal of Coal Science & Engineering(China)》 2008年第1期6-11,共6页
Under the action of abutment pressure in front of fully mechanized coal face with sublevel caving(CFSC),top-coal over CFSC deformed.In the process of whole de- formation of top-coal,it changed from continuum elastic m... Under the action of abutment pressure in front of fully mechanized coal face with sublevel caving(CFSC),top-coal over CFSC deformed.In the process of whole de- formation of top-coal,it changed from continuum elastic mass to non-continuum plastic mass contained fissures,become a loose body.According to its bearing characteristics and mechanical properties,top-coal mass can be divided into four deformation zones along the winning direction of CFSC,i.e.initial stress zone,elastic zone,plastic zone and loose zone.Top-coal in plastic zone located in the post-peak zone of the stress-strain curve for top-coal.With equivalent strain principle of damage mechanics and mathemati- cal theory of statistic,combining the movement law of top-coal,set up a constitutive equa- tion with damage statistics for top-coal in different position in CFSC.The equation illus- trated the mathematical relationship among top-coal bearing capacity,horizontal confining pressure along the winning direction of CFSC and mechanical properties of top-coal mate- rial.The conclusions not only provide a basis for numerical computer simulations on damage deformation and failure mechanism for top-coal,but also further promote the ap- plication of damage mechanics in CFSC. 展开更多
关键词 coal seam fully mechanized coal face with sublevel caving (CFSC) top-coaldamage constitutive equation
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Deformation of mining caving zone grouting compound rock under overlying strata pressure
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作者 杨逾 缪协兴 +1 位作者 刘文生 李兴华 《Journal of Coal Science & Engineering(China)》 2008年第4期594-596,共3页
To solve the problem of surface subsidence caused by mining,the main method is to reasonably process coal mining space.'Mining caving zone high-pressure grouting pulverized coal ash hydromass controlling roof and ... To solve the problem of surface subsidence caused by mining,the main method is to reasonably process coal mining space.'Mining caving zone high-pressure grouting pulverized coal ash hydromass controlling roof and overlying strata movement' technology is one of processing methods.After grouting pulverized coal ash hydromass in mining caving zone,formed one kind of special material which is used to support roof and effec- tively control the subsidence of overlying strata.For the accurate calculation of roof mining subsidence at grouting state,based on the characteristics of such materials,established its constitutive equation based on certain assumptions,gave deformation calculation method when the compound rock supports overlying strata,lay foundation for the actual calculation of subsidence of overlying strata after grouting and the promotion of mining caving zone grouting technology. 展开更多
关键词 mining caving zone GROUTING compound rock compression quantity overlying rock controlling
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