首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Stress heterogeneities and failure mechanisms induced by temperature and pore-pressure increase in volcanic regions
【24h】

Stress heterogeneities and failure mechanisms induced by temperature and pore-pressure increase in volcanic regions

机译:火山区温度和孔隙压力诱导的应力异质性和失效机制

获取原文
获取原文并翻译 | 示例
       

摘要

We study the strain and stress fields produced by temperature and pore pressure increases within and outside a Thermo-Poro-Elastic (TPE) inclusion (the source region), embedded within a medium (the matrix) in isothermal drained conditions. This model is suitable to describe a crustal region in a volcanic environment pervaded by hot pressurized fluids released by an underlying magma chamber. After introducing the pertinent constitutive relations, a formal solution for the displacement field is provided in terms of the Green's function for an elastic medium with drained isothermal elastic moduli, employing a generalization of Eshelby (1961) procedure. If an unbounded medium is considered, a displacement potential can be introduced, obeying the Laplace equation within the source region and the Poisson equation within the matrix. If a spherically symmetric source region is considered, simple analytical solutions are obtained for the displacement, the strain and the stress fields, showing that thrust faulting mechanisms are promoted within the source region while normal faulting mechanisms prevail in the embedding matrix. Employing reasonable numerical values for the thermo-poro-elastic parameters, suitable to describe highly porous sedimentary rock, strain and stress variations are found to be significant even for moderate changes of temperature and pore pressure. Variations of the Coulomb failure function are high in the TPE region and are strongly dependent on the friction coefficient and pore pressure. Application of these results to the 1982-84 and 2011-13 unrest episodes at Campi Flegrei caldera (Italy) suggests that an oblique dike intrusion across a previously unfaulted TPE region took place with a mixed tensile-thrust dislocation mechanism in both events, as previously inferred from accurate inversion of geodetic data. (C) 2019 Elsevier B.V. All rights reserved.
机译:我们研究了通过温度和孔隙压力产生的应变和应力场,在等温排出条件下嵌入介质(基质)内的热沟弹性(TPE)包含(源区)内外。该模型适于描述由由下面的岩浆室释放的热加压流体遍及的火山环境中的地壳区域。在引入相关的本构关系之后,在绿色的弹性介质的函数方面提供了对位移场的正式解决方案,其具有排出的等温弹性模量的弹性介质,采用eShelby(1961)程序的概括。如果考虑了未绑定的介质,则可以引入位移电位,遵循源区内的拉普拉斯方程和矩阵内的泊松方程。如果考虑球形对称源区,则可以获得简单的分析解决方案,用于位移,应变和应力场,表明在源区内促进推力故障机制,而在嵌入矩阵中占地正常断层机制。采用用于热孔弹性参数的合理数值,适于描述高度多孔沉积岩,应变和应力变化,即使对于温度和孔隙压力的中等变化,也是显着的。 TPE区域的库仑破坏功能的变化很高,并且强烈取决于摩擦系数和孔隙压力。这些结果将这些结果应用于Campi Flegrei Caldera(意大利)的1982-84和2011-11-111-13骚乱表明,在先前展开的TPE地区倾斜地侵入两种事件中的混合拉伸脱位机制,如前所述从大地测量数据的准确倒置推断。 (c)2019 Elsevier B.v.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号