首页> 外文期刊>Journal of Volcanology and Geothermal Research >Using array MT data to image the crustal resistivity structure of the southeastern Taupo Volcanic Zone, New Zealand
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Using array MT data to image the crustal resistivity structure of the southeastern Taupo Volcanic Zone, New Zealand

机译:使用阵列MT数据对新西兰东南陶波火山区的地壳电阻率结构成像

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摘要

Magnetotelluric (MT) data from 169 locations covering a 700 km(2) region in the southeastern part of the Taupo Volcanic Zone, New Zealand, are used to generate a 3-D resistivity inversion model to a depth of 10 km. Isolated zones of low-resistivity (<30 Omega m) below 3 km are imaged in the basement that appear to be associated with the geothermal fields at Rotokawa, Ngatamariki and Ohaaki, but not with the geothermal fields at Orakei-Korako and Te Kopia. These low-resistivity zones are interpreted to be recent intrusions that feed heat and magmatic fluid to the overlying system of hydrothermal convection supplying the geothermal fields. At Rotokawa, hypocentres of thermally induced seismicity coincide with the top of the deep low-resistivity zone and suggest that temperatures sufficient for melting are reached at similar to 4.5 km depth. In most cases these deep low-resistivity zones are located at the margins of areas of low-gravity, which suggests that the intrusions lie at the margins of old caldera collapse structures. The 3-D resistivity model indicates that geological structure and magmatic intrusions play a more direct role than previously envisaged, and significantly influence the overarching system of convective heat and mass transport in the Taupo Volcanic Zone. (C) 2015 Elsevier B.V. All rights reserved.
机译:来自新西兰Taupo火山区东南部700 km(2)区域的169个地点的大地电磁(MT)数据用于生成深度为10 km的3-D电阻率反演模型。在地下室中对低于3 km的低电阻率孤立区域(<30 Omega m)进行了成像,该区域似乎与Rotokawa,Ngatamariki和Ohaaki的地热场有关,但与Orakei-Korako和Te Kopia的地热场无关。这些低电阻率带被解释为是最近的入侵,它们将热量和岩浆流体输送到上层热液对流系统,从而为地热场提供热量。在Rotokawa,热致地震活动的震中与深层低电阻率区域的顶部重合,表明足以融化的温度达到了约4.5 km的深度。在大多数情况下,这些深层的低电阻率区域位于低重力区域的边缘,这表明侵入位于旧的破火山口塌陷结构的边缘。 3-D电阻率模型表明,地质结构和岩浆侵入作用比以前设想的更为直接,并极大地影响了陶波火山区对流热量和物质输送的总体系统。 (C)2015 Elsevier B.V.保留所有权利。

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