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On the quantitative determination of coal seam thickness by means of in-seam seismic surveys

机译:煤层内地震勘探定量确定煤层厚度的研究

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摘要

By means of in-seam seismic (ISS) surveys carried out at Karvina coal mine of OKD, Czech Republic, in two neighbouring panels it is shown how the distribution of coal seam thickness can be investigated if the coal seam consists of almost pure coal. The coal seam under investigation was considerably affected by erosion, which resulted in thickness changes amounting from similar to 30 cm up to similar to 4.40 m. First, by applying ISS-tomographic inversion to the group travel times for a constant frequency value, the distribution of the related group velocity was determined, which showed the extension of the erosions within the survey areas. By correlating the group velocity distribution with known values of the coal seam thickness along a gate, a relation in terms of a polynomial approximation between these quantities could be derived. This relation is specific for a chosen frequency value and resolves in general only some of the thickness range. For the application presented in this paper, a value of 200 Hz was chosen for the constant frequency value by which a range of coal seam thicknesses from about 100 cm to about 300 cm was resolved. This was the main objective of the surveys. For the investigation of a greater variation of coal seam thickness (or even the complete thickness distribution), the described procedure has to be repeated for different constant frequency values. The final thickness map then has to be combined from the individual results for the different constant frequency values. The thickness range that was investigated by the surveys was in good agreement with the thickness encountered by mining the panel.
机译:通过在捷克共和国OKD的Karvina煤矿进行的缝内地震(ISS)调查,在两个相邻的面板中显示了如果煤层几乎由纯煤组成,则如何研究煤层厚度的分布。所研究的煤层受到侵蚀的影响很大,其厚度变化范围从大约30 cm到大约4.40 m。首先,通过将ISS断层扫描反演应用于恒定频率值的群体旅行时间,确定相关群体速度的分布,这表明了调查区域内侵蚀的扩展。通过使群速度分布与沿门的煤层厚度的已知值相关,可以得出这些量之间的多项式近似关系。该关系特定于所选的频率值,并且通常仅解析某些厚度范围。对于本文提出的应用,为恒定频率值选择200 Hz的值,通过该值可解决从大约100 cm到大约300 cm的煤层厚度范围。这是调查的主要目的。为了研究煤层厚度(甚至整个厚度分布)的更大变化,必须针对不同的恒定频率值重复上述过程。然后,对于不同的恒定频率值,必须从各个结果中组合最终的厚度图。通过调查研究的厚度范围与开采面板时遇到的厚度非常吻合。

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