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Dynamic Distribution of Longwall Mining-Induced Voids in Overlying Strata of a Coalbed

机译:煤层上覆岩层长壁开采诱发孔隙的动态分布

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摘要

Mining-induced voids provide essential channels for heat and mass transfer in disturbed strata. A group of dynamic distribution models of voidage was proposed to investigate the heterogeneous distribution and dynamic change of longwall mining-induced voids in overlying strata of a coalbed. It indicated that the voidage distribution has an evident periodicity and heterogeneity due to the periodical and inconsistent fractured subsidence of each key stratum with different thicknesses, strengths, and loads. Disturbed by longwall mining, the degree of difficulty of development increases successively from the pores and from the bed-separation fissures to the fractured fissures. In the caved zone, the porosity distribution along the coalbed strike and dip always presents a U-type appearance. In the fractured zone, the distribution shape of the transverse voidage alters from a narrow inverted U-type to a wide M-type, but the longitudinal voidage distribution always presents as an M-type from the narrow to the wide with time. The voids successively open and then gradually close from deep to shallow strata, and along mining operations they advance direction and present an arch-type distribution called the void-rich arch. The peak voidage near the mining face periodically extends forward with the advance of the mining operations and is slightly higher than near the starting line. The models and results might be applied to guide coalbed methane extraction, water influx prevention, coal fire prevention and control, and so on.
机译:采矿引起的孔隙为扰动地层中的热量和质量传递提供了必要的通道。提出了一组孔隙动态分布模型,研究了煤层上覆地层中长壁开采引起的孔隙的非均质分布和动态变化。结果表明,孔隙度分布具有明显的周期性和非均质性,这是由于厚度,强度和载荷不同的每个关键层的周期性沉降和不一致的沉降所致。受长壁开采的干扰,发育的困难程度从孔隙,从层裂裂缝到断裂裂缝依次增加。在凹陷区,沿煤层走向和倾角的孔隙度分布始终呈现U型外观。在断裂区,横向空隙的分布形状从窄的倒U型变为宽的M型,但纵向空隙的分布随时间随从窄到宽总是呈M型。空隙先后打开,然后从深层到浅层逐渐关闭,沿着采矿作业,它们前进方向并呈现出称为富空隙拱的拱型分布。随着采矿作业的进行,开采工作面附近的峰值空隙周期性地向前延伸,并且比起始线附近略高。该模型和结果可用于指导煤层气的开采,水的涌入预防,煤的火灾防治等。

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