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The World Stress Map database release 2016: Crustal stress pattern across scales

机译:世界压力地图数据库发布2016年:横跨尺度的地壳压力模式

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Knowledge of the present-day crustal in-situ stress field is a key for the understanding of geodynamic processes such as global plate tectonics and earthquakes. It is also essential for the management of geo-reservoirs and underground storage sites for energy and waste. Since 1986, the World Stress Map (WSM) project has systematically compiled the orientation of maximum horizontal stress (S-Hmax). For the 30th anniversary of the project, the WSM database has been updated significantly with 42,870 data records which is double the amount of data in comparison to the database release in 2008. The update focuses on areas with previously sparse data coverage to resolve the stress pattern on different spatial scales. In this paper, we present details of the new WSM database release 2016 and an analysis of global and regional stress pattern. With the higher data density, we can now resolve stress pattern heterogeneities from plate-wide to local scales. In particular, we show two examples of 40 degrees-60 degrees S-Hmax rotations within 70 km. These rotations can be used as proxies to better understand the relative importance of plate boundary forces that control the long wave-length pattern in comparison to regional and local controls of the crustal stress state. In the new WSM project phase IV that started in 2017, we will continue to further refine the information on the S-Hmax orientation and the stress regime. However, we will also focus on the compilation of stress magnitude data as this information is essential for the calibration of geomechanical-numerical models. This enables us to derive a 3-D continuous description of the stress tensor from point-wise and incomplete stress tensor information provided with the WSM database. Such forward models are required for safety aspects of anthropogenic activities in the underground and for a better understanding of tectonic processes such as the earthquake cycle.
机译:本日地壳原位应力领域的知识是了解全球板块和地震等地球动力学过程的关键。它对于管理地质水库和地下储存地点来说也是必不可少的。自1986年以来,世界压力地图(WSM)项目系统地编译了最大水平应力的方向(S-HMAX)。对于该项目的30周年,WSM数据库已大大更新,具有42,870个数据记录,与2008年数据库发布相比的数据量增加了两倍。更新着眼于具有先前稀疏数据覆盖的区域以解决压力模式在不同的空间尺度上。在本文中,我们介绍了2016年新的WSM数据库发布的详细信息,并分析了全球和区域压力模式。具有较高的数据密度,我们现在可以从板宽到本地尺度解析应力模式异质性。特别是,我们在70 km内显示了两个40度-60度S-Hmax旋转的示例。这些旋转可以用作代理,以更好地理解控制长波长图案的板边界力的相对重要性与地壳应力状态的区域和局部控制相比。在2017年开始的新WSM项目第四阶段,我们将继续进一步改进关于S-HMAX定位和压力制度的信息。但是,我们还将专注于应力幅度数据的编译,因为此信息对于校准地质力学数值是必不可少的。这使我们能够从提供WSM数据库提供的点亮和不完全应力张量信息的应力张量的3-D连续描述。这种前向模型是在地下的人为活动的安全方面所必需的,并更好地了解地震周期等构造过程。

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