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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Measurement of Capillary Pressure Curve of DNAPL in a Water-Saturated Sandstone Fracture
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Measurement of Capillary Pressure Curve of DNAPL in a Water-Saturated Sandstone Fracture

机译:水饱和砂岩裂缝中DNAPL的毛细压力曲线的测量

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This paper describes a methodology for the measurement of the capillary pressure curve of dense nonaqueous phase liquids (DNAPLs) in a water-saturated sandstone induced fracture. Details of specimen preparation, capillary barrier design, and capillary pressure measurement setup, procedure, and results are given. The aperture distribution of the induced fracture was estimated using the X-ray computed tomography (CT) technique. The primary drainage or invasion of DNAPLs in the water-saturated induced fracture was simulated using the invasion percolation (IP) approach. It was found that the invasion process was highly dependent on the spatial distribution of the fracture apertures. The IP model matched the experimentally measured entry pressure very well but deviated from the measured capillary pressure curve at the midrange and high nonwetting phase saturations. The IP model tended to yield an L-shaped function with a fairly flat portion at the midrange saturation and a sharp rise at the high end. The measured capillary pressure curve was observed to follow the well-known Brooks-Corey porous media function. These discrepancies between the measured and predicted results could be attributed to the fact that the IP model did not consider the effects of fracture surface roughness and undulation. For a fracture with small apertures, these two factors could make the fracture behave more as a porous medium than a parallel-plate channel.
机译:本文介绍了一种用于测量水饱和砂岩致裂中致密非水相液体(DNAPLs)的毛细管压力曲线的方法。给出了样品制备,毛细管屏障设计,毛细管压力测量设置,步骤和结果的详细信息。使用X射线计算机断层扫描(CT)技术估算诱发骨折的孔径分布。使用入侵渗滤(IP)方法模拟了水饱和诱导裂缝中DNAPLs的主要排水或入侵。已经发现,侵入过程高度取决于裂缝孔的空间分布。 IP模型与实验测得的入口压力非常吻合,但与中值和高非润湿相饱和度下测得的毛细管压力曲线存在偏差。 IP模型倾向于产生一个L形函数,其中频饱和度的部分相当平坦,而高端则急剧上升。观察到的毛细管压力曲线遵循众所周知的Brooks-Corey多孔介质功能。测量结果和预测结果之间的这些差异可能归因于以下事实:IP模型未考虑裂缝表面粗糙度和起伏的影响。对于具有小孔的裂缝,这两个因素可能使裂缝表现为比平行板通道更像多孔介质。

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