Identification of "WS" geothermal field system by analyzing TE, TM, and TE-TM of 2D magnetotelluric inversion models

Triana Triana, T. Yulianto, U. Harmoko, I. Takodama
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Abstract

Magnetotelluric data has been carried out at the "WS" geothermal field to analyze the resistivity model resulting from 2D inversion of magnetotelluric data in TE, TM and TE-TM modes. Base on the three models produced, the mode is determined to produce the most representative model to assist in the interpretation of the "WS" geothermal system. There is a step of modes separation, namely TE (Tranverse Electric) and TM (Transverse Magnetic) modes in processing MT data. Each mode produces a 2D model with different conductivity properties. The analysis results of the three modes explain that TE mode is dominated by low resistivity with a range of values of 10-35 Ωm and medium resistivity with a value range of 35-250 Ωm and a vertical resistivity contrast. The TM mode describes the high resistivity in the Southwest and the center of the track with a value of more than 470 sehinggam resulting in lateral resistivity contrast. While the TE-TM mode produces a model that is not much different from TM mode, only the distribution of the resistivity value is a combination with TE mode. This mode describes the distribution of resistivity both vertically and laterally. Based on the analysis of the three modes, it can be concluded that the TE-TM mode is the mode that produces the most representative model. Interpretation model shows that from the TE-TM mode we have a low resistivity distribution (10-35 Ωm) represent a cap rock zone, reservoir rock with a medium resistivity distribution (35-380 Ωm), resistive zone with a high resistivity distribution (more than 380 Ωm), and the existence of the three of faults structures ro be a controller system of the "WS" geothermal.
通过分析二维大地电磁反演模型的TE、TM和TE-TM识别“WS”地热田系统
利用“WS”地热田大地电磁资料,分析了大地电磁资料在TE、TM和TE-TM模式下二维反演得到的电阻率模型。根据所产生的三个模型,确定该模型产生最具代表性的模型,以辅助“WS”地热系统的解释。MT数据处理过程中有一个模式分离步骤,即TE(横电)模式和TM(横磁)模式。每种模式都会产生具有不同电导率特性的二维模型。三种模式的分析结果说明,TE模式以低电阻率(10-35 Ωm)和中电阻率(35-250 Ωm)为主,并有垂直电阻率对比。TM模式描述了西南和轨迹中心的高电阻率,其值大于470 sehingham,从而实现了横向电阻率对比。TE-TM模态得到的模型与TM模态相差不大,只是电阻率值的分布与TE模态结合。该模式描述了电阻率的垂直和横向分布。通过对三种模式的分析,可以得出TE-TM模式是产生最具代表性模型的模式。解释模型表明,在TE-TM模式下,低电阻率分布(10-35 Ωm)代表盖层带,中电阻率分布(35-380 Ωm)代表储层带,高电阻率分布(超过380 Ωm)代表电阻率带,三个断裂构造的存在是“WS”地热的控制系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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