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首页> 外文期刊>Open Journal of Geology >Tectonic Control of the Theistareykir Geothermal Field by Rift and Transform Zones in North Iceland: A Multidisciplinary Approach
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Tectonic Control of the Theistareykir Geothermal Field by Rift and Transform Zones in North Iceland: A Multidisciplinary Approach

机译:冰岛北部裂谷和转换带对Theistareykir地热田的构造控制:多学科方法

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This paper presents a multidisciplinary structural analysis of a 165 km~(2) area in the Northern Rift Zone and the Tjörnes Fracture Zone of Iceland, and unravels the tectonic control of the Theistareykir geothermal field and its surroundings. About 10729 fracture segments (faults, open fractures, joints) are identified in the upper Tertiary to Holocene igneous series. The segments were extracted from aerial images and hillshade, and then analyzed in terms of number of sets, geometry, motions, frequency, and relative age. The correlation with surface geothermal manifestations, resistivity, earthquakes, and occasional well data reveals the critical regional and local fractures at the surface, reservoir level and greater depth. The main conclusions of this study are: 1) The structural pattern consists of N-S rift-parallel extensional fractures and the Riedel shears of the transform zone striking NNE, ENE, E-W, WNW and NW, which compartmentalize together the blocks at any scale. 2) The en échelon segmentation shows strike and oblique slips on the Riedel shears, with a dextral component on the WNW and NW planes and a sinistral component on the NNE to ENE faults. 3) Fractures form under the influence of the transform mechanism and the effect of rifting becomes significant only with time. 4) The WNW dextral oblique-slip Stórihver Fault of the transform zone has a horsetail splay that extends eastwards into the geothermal field. There, this structure, along with few NW, ENE, NNE and N-S fractures, controls the alteration, alignment of fumaroles, emanating deep gases. These fractures also rupture during natural or induced earthquakes. 5) The resistivity anomalies present en échelon geometries controlled by the six fracture sets. These anomalies display clockwise and anticlockwise rotations within the upper 8 km crustal depth, but at 8 km depth, only three sets (the N-S rift structures, and the E-W and the NW Riedel shears) are present at the rift and transform plate boundaries. Results of this study are relevant to resource exploration in other complex extensional contexts where rift and transform interact. ö öö.
机译:本文对冰岛北部裂谷带和Tjörnes断裂带的165 km〜(2)区域进行了多学科的结构分析,并阐明了Theistareykir地热田及其周围地区的构造控制。在第三纪至全新世火成岩系列中识别出约10729个断裂段(断层,开放性裂缝,关节)。从航拍图像和山体阴影中提取这些片段,然后根据集合的数量,几何形状,运动,频率和相对年龄进行分析。与地表地热表现,电阻率,地震和偶发井数据的相关性揭示了地表,储层和更大深度的关键区域和局部裂缝。这项研究的主要结论是:1)结构模式由N-S裂隙平行伸展裂缝和NNE,ENE,E-W,WNW和NW组成的转换带的Riedel剪切组成,这些块在任何规模上都将区块分隔开。 2)enéchelon分割显示了Riedel剪切机上的走滑和倾斜滑移,WNW和NW平面上有一个右旋分量,NNE到ENE断层上有一个左旋分量。 3)在变形机制的影响下断裂形成,裂口的影响仅随时间而变大。 4)转换带的WNW右旋斜滑Stórihver断层有一个马尾形张开,向东延伸到地热田中。在那里,这种结构以及少量的西北,ENE,NNE和N-S裂缝控制着富马ole的蚀变,排列,散发着深层气体。这些裂缝在自然或人为地震中也会破裂。 5)电阻率异常呈现出由六个裂缝组控制的整个埃赫朗几何形状。这些异常显示了在上8 km地壳深度内的顺时针和逆时针旋转,但是在8 km深度处,在裂谷和转换板块边界处仅出现了三套(N-S裂谷结构以及E-W和NW Riedel剪切机)。这项研究的结果与裂痕和转化相互作用的其他复杂扩展环境中的资源勘探有关。 ööö。

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