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首页> 外文期刊>Arabian journal of geosciences >Simulations on the micro-seepage rules of gas and water based on micro-CT/CFD and the related contrastive analysis
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Simulations on the micro-seepage rules of gas and water based on micro-CT/CFD and the related contrastive analysis

机译:基于Micro-CT / CFD的气体和水的微渗流规则模拟及相关对比分析

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This study first employed micro-computed tomography technique for scanning the gas-fat coal sample; then, using Avizo software, coal's micro-pore structure model was established; finally, seepage behaviors of gas and water in the coal under a pressure of 3 MPa were simulated. Through comparison, it can be concluded that both gas pressure and water pressure decreased gradually along the seepage direction; at a same seepage length, water's maximum seepage pressure significantly exceeded that of gas; gas's velocity flow lines were overall fuller than water's flow lines; using a same pore model, gas's migration velocity far exceeded that of water; In terms of mass flow rate, water exceeded gas. The effluent mass flow rate at the outlet was smaller than the influent mass flow rate at the inlet. Overall, with the increase in the seepage length, gas and water's mean seepage pressures and mass flow rates all decreased gradually, while their mean seepage velocities fluctuated greatly. Since the pores at the different coal cross-sections were developed to different degrees, the heterogeneity of the coal structure meant that the cross-sectional area of the pore channel varied irregularly along the seepage direction. The fitting curve can be reduced to three classes: logistic linear regression curve, Boltzmann function curve, Exp Dec curve, or poly curve.
机译:本研究首先采用了用于扫描气体脂肪煤样品的微计算断层扫描技术;然后,使用Avizo软件,建立了煤的微孔结构模型;最后,模拟了3MPa压力下煤中的气体和水的渗流行为。通过比较,可以得出结论,气压和水压沿渗流方向逐渐降低;在相同的渗流长度下,水的最大渗流压力显着超过气体;气体的速度流线比水流线更大;使用相同的孔模型,气体的迁移速度远远超过水;就质量流量而言,水超过了气体。出口处的流出物质量流速小于入口处的进水质量流速。总的来说,随着渗流长度的增加,气体和水的平均渗流压力和质量流量均逐渐下降,而其平均渗流速度大大波动。由于不同煤横截面上的孔开发为不同程度,因此煤结构的异质性意味着孔通道的横截面积沿渗流方向不规则地变化。拟合曲线可以减少到三类:逻辑线性回归曲线,Boltzmann函数曲线,exp dec曲线或多曲线。

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