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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Mechanical properties of shale-gas reservoir rocks — Part 1: Static and dynamic elastic properties and anisotropy
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Mechanical properties of shale-gas reservoir rocks — Part 1: Static and dynamic elastic properties and anisotropy

机译:页岩气储集层岩石力学性能第1部分:静动态弹性特性和各向异性

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Understanding the controls on the elastic properties of reservoir rocks is crucial for exploration and successful production from hydrocarbon reservoirs. We studied the static and dynamic elastic properties of shale gas reservoir rocks from Barnett, Haynesville, Eagle Ford, and Fort St. John shales through laboratory experiments. The elastic properties of these rocks vary significantly between reservoirs (and within a reservoir) due to the wide variety of material composition and microstructures exhibited by these organicrich shales. The static (Young’s modulus) and dynamic (P- and S-wave moduli) elastic parameters generally decrease monotonically with the clay plus kerogen content. The variation of the elastic moduli can be explained in terms of the Voigt and Reuss limits predicted by end-member components. However, the elastic properties of the shales are strongly anisotropic and the degree of anisotropy was found to correlate with the amount of clay and organic content as well as the shale fabric. We also found that the first-loading static modulus was, on average, approximately 20% lower than the unloading/reloading static modulus. Because the unloading/reloading static modulus compares quite well to the dynamic modulus in the rocks studied, comparing static and dynamic moduli can vary considerably depending on which static modulus is used.
机译:理解储层岩石弹性特性的控制对于油气藏的勘探和成功生产至关重要。我们通过实验室实验研究了来自Barnett,Haynesville,Eagle Ford和Fort St.John页岩的页岩气储层岩石的静态和动态弹性特性。这些岩石的弹性性质在储层之间(以及储层内)有显着差异,这是由于这些富含有机质的页岩展现出各种各样的物质组成和微观结构。静态(杨氏模量)和动态(P和S波模量)弹性参数通常随粘土和干酪根含量的增加而单调降低。弹性模量的变化可以通过端部构件预测的Voigt和Reuss极限来解释。然而,页岩的弹性很强的各向异性,并且各向异性程度与粘土和有机物含量以及页岩织物的数量有关。我们还发现,第一次加载静态模量平均比卸载/重新加载静态模量低约20%。由于卸载/再加载的静态模量与所研究的岩石中的动态模量相比非常好,因此根据使用的静态模量,比较静态模量和动态模量会发生很大变化。

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