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Lithospheric structure of western Anatolia and the Aegean Sea using GOCE-based gravity field models

机译:西部安纳托利亚和爱琴海的岩石结构使用基于Goce的重力场模型

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Western Anatolia and the Aegean Sea are one of the most active seismic and deformation zones between the Eurasian and African tectonic plates. Due to its tectonic features, there have been severe earthquakes in western Anatolia and the Aegean Sea, both in historical and in the instrumental period. It is important to determine the effect of the stress-load effect of these earthquakes on the lateral elements of western Anatolia and the effect of gravitational loads. The best fitting GOCE gravity field model combined with EGM2008 is used to determine the lithospheric structure of the study area at large scale. The comparison of GOCE gravity field models with ground truth terrestrial gravity data, reducing the omission error of the models using EGM2008 (spatial scales similar to 100 km down to 10 km) and ERTM2160 models (similar to 10 km to similar to 250 m), suggests that the GOCE-DIR4 model performs best in the Izmir region, used as an assessment area located in the westernmost part of the western Anatolia region, with a root mean square error of similar to 8.5 mGal. The free-air gravity anomaly differences between the GOCE-DIR4 model and EGM2008 up to degree and order (d/o) 240 reaches up to 14 mGal indicating the added value of using GOCE models in western Anatolia and the Aegean Sea. Different from previous geophysical studies in the region that used the planar Bouguer gravity anomalies computed from land gravity data alone, in this study, 3D Moho depths and 3D lithosphere-asthenosphere boundary (LAB) depths and effective elastic thickness values arc calculated from the spherical Bouguer gravity anomalies both on land and marine areas. The spherical Bouguer anomaly is obtained by subtracting the EARTH2014 topographic/bathymetric model derived gravity effect of the topography from those of the GOCE-DIR4 plus EGM2008 combined global gravity field model. The Moho depth that changes between 25-41 km and the isostatic Moho depth that changes between 19-52 km are computed to investigate the compensation conditions. The LAB depth is found to be between 129-145 km. Another parameter that controls the lithospheric structure, temperature variations of LAB depth are also calculated using empirical equations and found to be between 1309-1316 degrees C. The effective elastic thickness values calculated by LithoFLEX software are in the range of 4 to 20 km in the study area. As a result, the spherical Bouguer anomalies, the Moho depth, the LAB depth and the LAB temperature in western Anatolia determined at 5' spatial resolution for the first time using a GOCE and EGM2008 combined gravity field model to investigate the geodynamic effect of the Hellenic Arc mechanism in comparison with earthquake distributions.
机译:安纳托利亚和爱琴海是欧亚和非洲构造板材之间最活跃的地震和变形区之一。由于其构造特征,西安纳托利亚和爱琴海都有严重地震,无论是历史和乐器时期。重要的是确定这些地震应力载荷对西沙洛尼亚侧面元素的影响和引力载荷的效果。与EGM2008相结合的最佳拟合Goce重力场模型用于确定大规模研究区域的岩石结构。 Goce Gravity Field模型与地面真理地重力数据的比较,使用EGM2008(类似于100 km低至10km)的模型的省略误差(类似于10km)和ertm2160型号(与250米类似)相比(类似于10km),建议,Goce-Dir4模型在Izmir地区表现最佳,用作位于西部Anatolia地区最西部地区的评估区域,具有类似于8.5 mgal的根均方误差。 Goce-Dir4模型与EGM2008之间的自由空气重力异常差异高达度和订单(D / O)240达到最多14名MGAL,表明使用西部安纳托利亚和爱琴海的衰减模型的附加值。与以前的地球物理研究不同,使用从单独的土地重力数据计算的平面Bouguer重力异常,在本研究中,3D Moho深度和3D岩石圈 - 近距离界面(实验室)深度和有效的弹性厚度值由球形Bouguer计算的弧形土地和海域的重力异常。通过减去地形/碱基/碱基模型从GoCE-DIR4加上EGM2008组合的全球重力场模型中减去地形的地形/碱基/碱基模型的重力效应来获得球形Bouguer异常。 Moho深度在25-41公里之间的变化和等静电Moho深度之间的变化,计算在19-52公里之间的变化,以调查补偿条件。实验室深度被发现在129-145公里之间。控制岩石结构的另一个参数,使用经验方程计算实验室深度的温度变化,发现在1309-1316摄氏度之间。Lithoflex软件计算的有效弹性厚度值在4到20公里的范围内研究区。结果,球形Bouguer异常,Moho深度,实验室深度和实验室温度在西部的AnaTolia在使用Goce和EGM2008组合的重力场模型中首次确定5英尺的空间分辨率,以研究希腊的地磁效应弧机制与地震分布相比。

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