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841.
为研究影响综放开采覆岩“两带”高度预测模型,采用理论分析与经验公式方法系统分析影响覆岩“两带”高度的因素,包括覆岩岩性、覆岩组合结构、煤层赋存状态、顶板控制方法、开采厚度、工作面走向长度与倾向长度、工作面推进速度、覆岩破坏残余变形;并将上述因素划分为采矿地质因素、顶板控制方法、采煤工作面三维尺寸设计参数、时间因素4类;基于此建立综放开采“两带”高度预测模型,并通过工程实例对比、现场实测等方法进行合理性验证。结果表明:芦沟矿与盛泰矿2个工作面的“两带”高度预测值均在实测值范围之内,说明得出的回归式预测效果较好,验证综放开采“两带”高度预测模型的合理性。  相似文献   
842.
为分析复杂条件下隧道洞口段稳定性问题,建立基于Mohr-Coulomb准则的岩石弹塑性损伤-渗流耦合模型,利用完全隐式的向后欧拉算法编制弹塑性损伤模型的应力积分程序。在此基础上,利用ABAQUS平台的子程序接口实现耦合模型的有限元计算。将该模型应用于福建某洞口段隧道工程的围岩稳定性评价中,分析不同降雨强度下洞口段结构的安全系数、位移及损伤值的变化规律。结果表明:隧道洞口段结构的安全系数、损伤区和位移均会随着降雨进程的发展发生变化,雨季应加强监测频率。  相似文献   
843.
Olive mill wastewater (OMW), a by-product of the olive-mill industry, is produced in large amounts in Mediterranean countries. The presence of indigenous phosphate deposits in some countries like Tunisia provides an incentive for direct application or local chemical treatment at low cost to improve the solubility of low reactive phosphate rocks (PRs). The use of naturally occurring low-molecular weight organic acids (LMWOAs) that are present in OMW represents a new perspective in PR research and a possible solution for the recycling of the OMW. The present work was aimed at evaluating, under natural situations (field of olive trees), the effects of agronomic application of OMW (amounts applied: 30, 60 m(3) ha(-1)) with PR (amounts applied: 150 kg ha(-1)) on olive trees soil properties. We measured organic C, nitrogen (N), extractable phosphorus (P), exchangeable calcium (Ca), and exchangeable potassium (K), as well as other properties (pH and electrical conductivity). Our data provide evidence that agronomic application of OMW with PR has important effects on soil properties. Increases in organic C, total N, extractable P and exchangeable potassium (K) were found after the first agronomic application of OMW and PR. These increases were only temporary, following the second agronomic application of OMW and PR, significant reductions were detected in the extractable soil P (19.67 mg kg(-1) in the control soil vs. 8.99 mg kg(-1) in the amended soil). Changes in the extractable soil P could alter plant productivity and plant community structure because shifts in nutriment availability can affect the balance between limiting and non-limiting nutrients.  相似文献   
844.
In China, coal mine waste rock (CMWR) produced during coal mining and processing is still increasing significantly as a result of coal production which has huge environmental impact. CMWR reduction and utilization is a major issue for coal enterprises and government to reduce the surface footprint and the public environmental impact. Tiefa coalfield, an old coalfield with 60 years of coal exploitation, was selected as a case to study the methods to minimize the environmental impacts of CMWR piles in a short period. We argue that a systematic design on CMWR utilization is needed on the basis of a usage evaluation which takes consideration of CMWR source, compositions, and proximate analysis. Mine design is crucial and the base for reducing the CMWR generation at the headstream. Placing roadway into coal seam rather than rock, panel optimization, and parametric analysis for mining technique were conducted in Tiefa coalfield. A promising technology of CMWR backfill under the ground was employed with a resultant increase of coal recovery rate. The surface CMWR recycling depends on brick making, electricity generating, and rehabilitation of subsided land. The practice of the presented methods indicates that the CMWR piles on Tiefa coalfield may disappear in 3 years, which could significantly reduce the environmental impacts of CMWR dumps. The technologies conducted in Tiefa coalfield developed a model of CMWR reduction and utilization for Chinese coal mines.  相似文献   
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