首页> 外文期刊>Surveys in Geophysics: An International Review Journal of Geophysics and Planetary Sciences >Seismic b-Values, Bouguer Gravity and Heat Flow Data Beneath Eastern Anatolia, Turkey: Tectonic Implications
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Seismic b-Values, Bouguer Gravity and Heat Flow Data Beneath Eastern Anatolia, Turkey: Tectonic Implications

机译:土耳其东部安纳托利亚下方的地震b值,布格重力和热流数据:构造意义

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In this paper, we analyze the relationships between the seismic b-values, Bouguer gravity and heat flow data in the Eastern Anatolia region of Turkey. For this purpose, spatial distributions of b-value, Bouguer gravity and heat flow have been presented for different depths and locations. In distinction to previous studies which have used only two parameters (gravity and seismic b-value or heat flow and seismic b-value), we have combined seismic b-values, Bouguer gravity and heat flow data to determine the new results on the active tectonics of the Eastern Anatolia region. Our analysis shows that there are significant and robust correlations amidst the heat flow data, Bouguer gravity anomaly and seismic b-values. The crustal structure is thick in areas where the large negative gravity anomalies and low b-values are observed. On the contrary, the regions with positive gravity anomalies and high b-values are likely to be associated with magma chambers or crustal low-velocity zones. We also provide some evidence suggesting that high b-values and high heat flow values can be related to the magmatic activities beneath the volcanic chain in the Eastern Pontide orogenic belt. Consequently, we have reached some conclusions for the Eastern Anatolia region: (1) The Moho to surface is rather thick and earthquakes are relatively smaller beneath the volcanic chain where the high heat flow values are observed, (2) a southward subduction model could have existed for the development of the Pontides during the late Mesozoic-Cenozoic era, (3) hot and unstable mantle lid zones or a lithosphere deprived of mantle under the study region is much more plausible, (4) a southward movement of the subduction plate and a northward extension of the Black Sea increase the state of stress along the trench axis and decrease the b-value, and (5) these movements may load the stress energy to the fault zones, thereby causing the catastrophic earthquakes in the Eastern Anatolia region.
机译:在本文中,我们分析了土耳其安那托利亚东部地区地震b值,布格重力和热流数据之间的关系。为此,已经针对不同的深度和位置给出了b值,布格重力和热流的空间分布。与仅使用两个参数(重力和地震b值或热流和地震b值)的先前研究不同,我们结合了地震b值,布格重力和热流数据来确定主动模型上的新结果。安纳托利亚东部地区的构造。我们的分析表明,在热流数据,布格重力异常和地震b值之间存在显着且强大的相关性。在观察到较大的负重力异常和低b值的地区,地壳结构较厚。相反,具有正重力异常和高b值的区域很可能与岩浆室或地壳低速带有关。我们还提供了一些证据,表明高b值和高热流值可能与东蓬蒂德造山带火山链下的岩浆活动有关。因此,我们对东部安纳托利亚地区得出了一些结论:(1)火山表面之下的莫霍面相当厚,火山链下方的地震相对较小,那里观察到了较高的热流值;(2)南俯冲模型可能具有(3)研究区域下炎热而不稳定的地幔盖区或缺少地幔的岩石圈似乎更合理,(4)俯冲板块向南运动,并且黑海向北延伸会增加沿沟槽轴的应力状态并降低b值,并且(5)这些运动可能会将应力能量加载到断层带,从而在安纳托利亚东部地区造成灾难性地震。

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