首页> 外文期刊>Journal of natural gas science and engineering >Performance enhancement of horizontal underground-to-inseam gas drainage boreholes with double-phase-grouting sealing method for coal mining safety and clean gas resource
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Performance enhancement of horizontal underground-to-inseam gas drainage boreholes with double-phase-grouting sealing method for coal mining safety and clean gas resource

机译:具有双相灌浆密封方法的水平地下煤气排水井的性能增强,用于煤炭挖掘安全和清洁气体资源

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Underground to inseam (UIS) borehole gas drainage is of significance for improving mining safety and turning hazardous methane into a clean gas resource. However, in the horizontal UIS borehole sealing by adopting cement-grout-based sealing method, an upper gap frequently occurs in the sealing section after cement-grout solidification, which could potentially be an air-leakage path and consequently decrease drainage efficiency. Despite extensive previous investigations on borehole sealing, very few studies have been reported in addressing the upper gap issue to enhance drainage performance. In this study, the air-leakage flow models in concentric ring and off-center ring seal gap of horizontal borehole were established. Then by adopting new expansive composite sealing (ECS) material, a double-phase-grouting (DPG) sealing method was developed to seal the upper gap. Based on theoretical fundamentals of seal-gap leakage, procedures and explanations of DPG sealing method were discussed. Finally, coalmine field trials were conducted to examine effects of DPG sealing method. Results show that: (1) there are positive correlations between air leakage quantity into borehole and the gap width, borehole diameter, pressure differences and eccentricity ratio. While the air leakage amount is negatively related to fluid viscosity and sealing-section length; and (2) because of adopting ECS material and the second-phase grouting specially designed for upper gap sealing, DPG sealing method is capable of sealing upper gap well to improve sealing quality. It mainly reflects in increasing drained gas concentration and prolonging the period of high-methane-concentration drainage. In comparison with traditional sealing method, the mean gas flow with DPG sealing method averagely rises by 30%. Outcomes of this study are expected to provide an effective way to solve upper gap issue and enhance drainage performance of horizontal UIS boreholes.
机译:地下到内孔(UIS)钻孔气体排水对于改善采矿安全性并将危险甲烷转化为清洁气体资源具有重要意义。然而,在通过采用基于水泥灌浆的密封方法的水平UIS钻孔密封中,在水泥 - 灌浆凝固之后,在密封部分中经常发生上间隙,这可能是空气泄漏路径,从而降低排水效率。尽管先前对钻孔密封进行了广泛的调查,但据报道了很少有研究在解决上部间隙问题中以提高排水性能。在这项研究中,建立了横向钻孔的同心环和偏心环密封间隙的空气泄漏流动模型。然后通过采用新的膨胀复合密封(ECS)材料,开发了双相灌浆(DPG)密封方法以密封上间隙。基于密封间隙泄漏的理论基础,讨论了DPG密封方法的程序和解释。最后,进行了煤矿现场试验以检查DPG密封方法的影响。结果表明:(1)空气泄漏量与间隙宽度,钻孔直径,压力差和偏心率之间存在正相关性。虽然空气泄漏量与流体粘度和密封截面长度负相关; (2)由于采用ECS材料和专门设计用于上间隙密封的二相灌浆,DPG密封方法能够密封上间隙,以提高密封质量。它主要反映了越来越多的煤气浓度和延长高甲烷浓度引流的时期。与传统的密封方法相比,具有DPG密封方法的平均气体流速平均升高30%。预计本研究的结果将提供解决上部间隙问题的有效方法,提高水平UIS钻孔的排水性能。

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