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Gas recovery potential of sandstones from tight gas reservoirs

机译:致密气藏中砂岩的采气潜力

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The aim of our experimental study is to characterize experimentally the petro-physical properties of a set of sandstones originating from different depths from a single tight gas field, in order to improve our knowledge on their gas recovery potential. The initial characterization of these sandstones is performed in the dry state, and in the "as received" states: porosity, initial water saturation level, and gas permeability at a confining pressure of 5 MPa. For two different samples under increasing confining pressure, we have evaluated the water saturation threshold, above which no more gas passes through the porous network, owing to hydraulic cut-off, to be about 63-68%. Then, at intermediate saturation level (on the order of 40%), two different sample types were identified, depending on whether their relative gas permeability is affected, or not, by confining pressure. For one sample of each type, poro-elastic experiments show that the variation in normalized matrix bulk modulus (due to confining pressure increase) may be attributed to the closure of portions of the connected pore network. Finally, to ascertain the above, a dedicated test was designed to measure the pore volume changes under confinement, simultaneously to volumetric strains. Whenever pore volume variation is significantly higher than volumetric strains, pore trapping is identified;;otherwise, microstructure changes are mainly attributed to crack closure.
机译:我们的实验研究的目的是通过实验表征一组来自单个致密气田的不同深度的砂岩的岩石物理性质,以提高我们对天然气采收潜力的认识。这些砂岩的初始特征是在干燥状态下以及在“接收状态”下进行的:孔隙度,初始水饱和度和围压为5 MPa时的气体渗透率。对于两个不同围压增加的样品,我们评估了水饱和度阈值,由于水力截止,该阈值以上没有更多的气体通过多孔网络,约为63-68%。然后,在中等饱和水平(大约40%)上,根据围压是否影响其相对气体渗透率,确定了两种不同的样品类型。对于每种类型的一个样品,孔隙弹性实验表明,归一化基质体积模量的变化(由于围压增加)可能是由于连通孔网部分的封闭所致。最后,为了确定上述内容,设计了专用测试来测量封闭条件下与体积应变同时发生的孔体积变化。每当孔体积变化显着高于体积应变时,就会识别出孔捕获;否则,微结构变化主要归因于裂纹闭合。

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