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Influence of varying bedding thickness of underclay on floor stability 被引量:1
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作者 Jessu Kashi Vishwanath Kostecki Todd Ray +1 位作者 Spearing Anthony John Spencer Zhang Jixiong 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2017年第3期517-523,共7页
The variation in bedding thickness of the weak immediate floor has long been a challenge in the lllinois basin coal mines when it comes to floor stability. The vertical thickness of the immediate floor is not constant... The variation in bedding thickness of the weak immediate floor has long been a challenge in the lllinois basin coal mines when it comes to floor stability. The vertical thickness of the immediate floor is not constant throughout the mines and can vary over short horizontal distances. The biggest misconception from a design standpoint is to use the maximum or average thickness found from core logs taken from various locations on the mine property. The result of this practice is oversized pillars in the areas where the weak immediate floor has thinned vertically. This over-design leaves coal in situ which could have otherwise been extracted. This paper presents a plane strain numerical model to illustrate the effect of a change in bedding thickness of a weak immediate floor across one or two coal pillars. The floor bearing capacity of the variable floor below each pillar where then compared to the consistent floor. The results show that the varying bedding thickness of weak underclay has an impact on the bearing capacity of the floor. Geometrically with the decrease in bedding thickness for constant pillar width, the B/H ratio increases exponentially. The influence of varying bedding thickness on the floor bearing capacity is apparent at higher B/H ratios. The floor bearing capacity under a single pillar is in variable floor model if the average thickness remains constant. For single pillar, the average of the bedding thickness can be considered and for pillars in a panel, and a safety factor has been proposed to take into account this change in bedding thickness. 展开更多
关键词 bedding thickness klnderclay Fireclay Illinois Basin Floor bearing capacity Floor safety factor
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层理特征对油页岩水力压裂裂缝扩展规律影响的数值模拟研究 被引量:7
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作者 李彦伟 朱超凡 +3 位作者 曾壹坚 水浩澈 范存翰 郭威 《煤田地质与勘探》 EI CAS CSCD 北大核心 2023年第11期44-54,共11页
目前水力压裂是油页岩储层开发的主要技术手段之一,油页岩层理特征的差异对压后裂缝形态起主要影响作用,目前研究大多聚焦在层理发育程度对裂缝扩展的影响,忽略层理厚度本身对水力裂缝扩展的影响。以鄂尔多斯盆地旬邑地区油页岩为研究对... 目前水力压裂是油页岩储层开发的主要技术手段之一,油页岩层理特征的差异对压后裂缝形态起主要影响作用,目前研究大多聚焦在层理发育程度对裂缝扩展的影响,忽略层理厚度本身对水力裂缝扩展的影响。以鄂尔多斯盆地旬邑地区油页岩为研究对象,基于线弹性断裂力学理论,构建应力-损伤-渗流的水力压裂裂缝扩展模型,并采取全局FEM-CZM的数值模拟方法,分析层理厚度、层理间距、地应力场对水力压裂裂缝扩展的影响规律,对比不同影响因素下裂缝的破坏类型、裂缝长度和层理沟通面积。结果表明:(1)层理厚度影响层理面对水力裂缝的拦截能力,在层理厚度较大时,会导致裂缝在层理面上扩展的倾向更强,发生张拉破坏,所对应的裂缝长度和层理沟通面积更大。(2)层理间距影响水力裂缝到达层理面的时间,较小的层理间距水力裂缝会直接穿透层理面,较大的层理间距增加裂缝扩展的阻力,伴随层理间距越大,发生张拉破坏,水力裂缝长度和层理沟通面积越大。(3)地应力场决定水力裂缝扩展方向,垂向地应力差较大时,垂向应力会对层理有压实作用,导致更容易穿透层理面扩展,垂向地应力差较小时,水力裂缝在层理面扩展多发生弯曲、分支情况,所对应裂缝长度和层理沟通面积均增加。建议在压裂施工选址方面选择层理厚度较大、层理间距较大、垂向地应力场较小的区域,更有利于形成高效渗流传热通道,该研究可为旬邑地区油页岩水力压裂施工提供指导。 展开更多
关键词 油页岩 水力压裂 层理厚度 层理间距 地应力 数值模拟 裂缝扩展规律 鄂尔多斯盆地
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高速铁路膨胀土路堑基床换填厚度试验研究 被引量:3
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作者 王炳龙 杨龙才 周顺华 《铁道建筑技术》 2008年第6期68-71,共4页
结合合肥-南京新建时速200km客货共线的建设,在膨胀土路堑地段进行了动载试验,得到了模拟荷载作用下路基动应力沿深度的衰减规律、弹性变形和塑性变形,并从强度、变形等方面探讨了膨胀土路堑的换填厚度,为高速铁路膨胀土路堑地段设计提... 结合合肥-南京新建时速200km客货共线的建设,在膨胀土路堑地段进行了动载试验,得到了模拟荷载作用下路基动应力沿深度的衰减规律、弹性变形和塑性变形,并从强度、变形等方面探讨了膨胀土路堑的换填厚度,为高速铁路膨胀土路堑地段设计提供了依据。 展开更多
关键词 高速铁路 膨胀土 动载试验 基床换填厚度
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