ELECTROMAGNETIC IMAGES OF A VOLCANIC ZONE

被引:55
作者
JONES, AG [1 ]
DUMAS, I [1 ]
机构
[1] ECOLE POLYTECH MONTREAL,MONTREAL H3C 3A7,PQ,CANADA
基金
加拿大自然科学与工程研究理事会;
关键词
D O I
10.1016/0031-9201(93)90137-X
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Data from 20 magnetotelluric (MT) soundings in the Coast belt of southwestern British Columbia, Canada, in the vicinity of volcanic Mounts Meager and Cayley (approximately 150 km north of Vancouver), are analysed to determine both the internal electrical conductivity structure of the Garibaldi volcanic belt and the regional conductivity structure. Galvanic distortion effects on the data are removed using Groom-Bailey tenser decomposition, and the regional 2D responses are determined in a survey-consistent reference coordinate frame for 1D and 2D modelling and inversion. The remaining unknowns, the site gain at each location, are estimated by requiring the long-period asymptotes of the E-polarization rho(a) curves to be the same, and alternatively are derived as part of the 2D inversion procedure. Positive correlations are observed between an increased temperature gradient at a depth of about 200 m, a zone of enhanced electrical conductivity and drilling results. The zone of enhanced conductivity is interpreted to be due to montmorillonite-dominated clay alteration minerals which form the cap rock of the geothermal reservoir. Below this cap, the zone is electrically resistive owing to the chlorite and sericite which form the reservoir itself. The volcanic belt is underlaid by highly resistive (more than 10 000 Omega m) crystalline rock, beneath which is a deep conductive region (less than 70 Omega m) beginning at a depth of 12 km. The cause of this crustal zone of enhanced conductivity is thought to be free saline water possibly released by metamorphic devolatilization from the downgoing Juan de Fuca slab. Within this conductive layer is a region of high conductivity directly beneath the volcanic belt, which we interpret as the magma source body for the belt. Sensitivity studies imply that the upper crustal resistive zone underlies the whole complex, although a weakly conductive, thin, vertical channel, representative of a magma conduit from the deep source body to the near surface, cannot be excluded.
引用
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页码:289 / 314
页数:26
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