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The effect of seam dip on the application of the longwall top coal caving method for inclined thick seams

机译:煤层倾角对倾斜厚煤层长壁综放法应用的影响

摘要

This thesis presents the results of research into the potential of underground mining methods applicable to inclined thick seams (thickness greater than 3.5m, and seam dip of 15 - 35 degree) in the Quangninh coalfield, Vietnam. The primary objectives of this research are to investigate the most suitable underground methods applicable to inclined thick seams in the Quangninh coalfield and to improve understanding of the operational and geotechnical issues associated with the application of chosen methods in thick seams with steeply dipping conditions.From a risk and operational assessment, the Longwall Top Coal Caving (LTCC) method is considered most appropriate for inclined thick seams under the current mining conditions in Vietnam. The LTCC method offers great potential for the efficient extraction of thick seams by caving coal from the upper section during the mining of the lower section. This significantly reduces the development cost per tonne. Compared to High reach Single Pass Longwalling, the LTCC method offers a low extraction height, resulting in smaller and less expensive equipment and better face conditions.Results from this study identified that for extracting an inclined thick seam, the face retreating along the strike has better operational advantages and better cavability than the face retreating updip or downdip of the seam. The operational issues of the LTCC method when extracting inclined seams are: the stability of the support, transport in the mine, and the difficulties in roof control at the transition between face ends and the gateroads. In terms of geotechnical issues, better cavability of the top coal is anticipated for flat coal seams compared to inclined seams. In addition, the chain pillar for flat coal seams is subjected to a higher vertical stress distribution than that of inclined ones.An improved cavability assessment method for the categorisation of the cavability of the top coal with four categories, ranging from 1 (excellent cavability) to 4 (very poor cavability), was suggested to assist the feasibility and design stages of the LTCC application. The cavability assessment method was conducted by numerical analysis combined with back analysis from the database obtained from past LTCC practices.
机译:本文介绍了越南Quangninh煤田适用于倾斜厚煤层(厚度大于3.5m,煤层倾角为15-35度)的地下采矿方法的潜力。这项研究的主要目的是研究适用于Quangninh煤田倾斜厚煤层的最合适的地下方法,并加深对与在陡倾条件下的厚煤层中应用所选方法相关的操作和岩土技术问题的认识。风险和运营评估方面,在越南当前的采矿条件下,长壁放顶煤法(LTCC)被认为最适合于倾斜的厚煤层。 LTCC方法通过在下部开采期间从上部放下煤来有效开采厚煤层,具有很大的潜力。这大大降低了每吨的开发成本。与高程单程长壁开采相比,LTCC开采方法具有较低的抽采高度,从而使设备更小,更便宜,并且具有更好的工作面条件。本研究结果表明,对于开采倾斜的厚煤层,沿走向走向后退的工作面具有更好的开采效果相对于后撤煤层的操作优势和可挖性更好。在提取倾斜煤层时,LTCC方法的操作问题是:支护的稳定性,在矿井中的运输以及在工作面端部和闸口之间过渡处的顶板控制方面的困难。在岩土工程方面,与倾斜煤层相比,扁平煤层的表层煤具有更好的可模性。此外,扁平煤层的链柱承受的垂直应力要大于倾斜煤层的垂直应力分布。一种改进的可蚀性评估方法,用于对顶煤的可蚀性进行分类,分为四类,从1种(优异的可蚀性)建议使用4到4(非常差的可模腔性)来协助LTCC应用的可行性和设计阶段。通过从过去的LTCC实践获得的数据库中进行的数值分析和反向分析相结合,进行了空洞性评估方法。

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