首页> 外文期刊>Pure and Applied Geophysics >Thermal Investigation in the Cappadocia Region, Central Anatolia-Turkey, Analyzing Curie Point Depth, Geothermal Gradient, and Heat-Flow Maps from the Aeromagnetic Data
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Thermal Investigation in the Cappadocia Region, Central Anatolia-Turkey, Analyzing Curie Point Depth, Geothermal Gradient, and Heat-Flow Maps from the Aeromagnetic Data

机译:Cappadocia地区的热调查,中央扎洛尼亚 - 土耳其,分析来自航空磁数据的居里点深度,地热梯度和热流图

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摘要

AbstractIn this study, curie point depth (CPD), heat flow, geothermal gradient, and radiogenic heat production maps of the Cappadocian region in central Anatolia are presented to reveal the thermal structure from the aeromagnetic data. The large, circular pattern in these maps matches with previously determined shallow (2?km in average) depression. Estimated CPDs in this depression filled with loose volcano-clastics and ignimbrite sheets of continental Neogene units vary from 7 to 12?km, while the geothermal gradient increases from 50 to 68?°C/km. Heat flows were calculated using two different conductivity coefficients of 2.3 and 2.7 Wm?1?K?1. The radiogenic heat production was also obtained between 0.45 and 0.70 μW?m?3in this area. Heat-flow maps were compared with the previous, regional heat-flow map of Turkey and significant differences were observed. In contrast to linear heat-flow increment through the northeast in the previous map in the literature, produced maps in this study include a large, caldera-like circular depression between Nevsehir, Aksaray, Nigde, and Yesilhisar cities indicating high geothermal gradient and higher heat-flow values. In addition, active deformation is evident with young magmatism in the Neogene and Quaternary times and a large volcanic cover on the surface. Boundaries of volcanic eruption centers and buried large intrusions are surrounded with the maxspots of the horizontal gradients of magnetic anomalies. Analytic signal (AS) map pointing-out exact locations of causative bodies is also presented in this study. Circular region in the combined map of AS and maxspots apparently indicates a possible caldera.]]>
机译:的两个不同的电导系数计算热流> 1 ?k <上标>?1 。在该地区的0.45至0.70μWΩ0μWΔM<上标> 3 /上标>之间也获得了辐射性热量。将热流图与原来的土耳其的区域热流图进行了比较,并且观察到显着差异。与在文献中以前的地图中的东北地图中的线性热流量增加相反,本研究的产生图包括Nevsehir,Aksaray,Nigde和yesilhisar城市之间的大型火山口状圆形凹陷,所述是具有高地热梯度和更高的热量 - 流程值。此外,在Neogene和第四纪时期的幼小岩浆中具有主动变形和表面上的大火山盖。火山喷发中心的边界和埋地的大型入侵包围磁异常水平梯度的最大值。本研究还提出了分析信号(AS)地图指出致病机构的确切位置。组合地图中的圆形区域和MAXPOTS的圆形区域显然表示可能的Caldera。 ]]>

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