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首页> 外文期刊>Journal of structural geology >Eshelby's solution for ellipsoidal inhomogeneous inclusions with applications to compaction bands
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Eshelby's solution for ellipsoidal inhomogeneous inclusions with applications to compaction bands

机译:Eshelby解决方案,用于椭圆形非均质夹杂物,应用于压实带

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Eshelby's solution for an ellipsoidal inhomogeneous inclusion in an infinite elastic body is applied to compaction and shear-enhanced compaction bands in the Aztec sandstone at Valley of Fire State Park, NV. The inclusion and matrix are linear elastic and isotropic, but have different elastic moduli, and a remote stress represents tectonic loading. A prescribed uniform strain within the inclusion accounts for inelastic compaction for a porosity change from 25 to 10%. Differences in elastic moduli between the matrix and inclusion are based on laboratory data. We generalize earlier results, limited to 2D and axisymmetric geometries, by considering ellipsoids with different intermediate and greatest axial lengths, consistent with field observations. Stiffness contrasts and non-circular tip-line shapes produce modest concentrations of the remote stress, but compaction strains of 1-10% produce significant triaxial compressive stress concentrations, which presumably are responsible for band propagation. The plastic strain is triaxial, but dominated by the normal strain across the inclusion. The stress diminution on the band flank is easily overcome by minor increases in the tectonic loading, enabling bands to be closely spaced. For the shear-enhanced band, if the plastic shear and normal strains are approximately equal, the ratio of shear to normal stress is about 1.3 at the tip.
机译:埃舍尔比将椭圆形不均匀包裹体包含在无限弹性体中的解决方案被应用于内华达州火州立公园谷的阿兹台克砂岩的压实和剪切增强压实带。夹杂物和基体是线性弹性和各向同性的,但是具有不同的弹性模量,并且遥远的应力代表构造载荷。夹杂物内规定的均匀应变导致孔隙率从25%变为10%的无弹性压缩。基质和内含物之间的弹性模量差异基于实验室数据。我们通过考虑具有不同中间长度和最大轴向长度的椭球体,将有限的二维和轴对称几何形状的早期结果推广到现场观察。刚度的对比和非圆形的尖端线形状会产生适度的远端应力集中,但是1-10%的压实应变会产生明显的三轴压缩应力集中,这大概是带传播的原因。塑性应变是三轴的,但以夹杂物上的法向应变为主。通过轻微增加构造载荷可以轻松克服条带侧面的应力减小,从而使条带之间的间距很小。对于剪切增强带,如果塑性剪切和法向应变近似相等,则尖端处的剪切力与法向应力之比约为1.3。

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