INTERPRETATION OF GEOTHERMAL SYSTEM IN DOLOK MARAWA, SIMALUNGUN DISTRICT, NORTH SUMATERA USING MAGNETOTELLURIC DATA
The Magnetotelluric (MT) method is a geophysical method that is widely used for geothermal exploration because it has a deep penetration of up to hundreds of kilometres. The MT method can describe a 2Dimensional (2D) geothermal system by utilizing the relationship between the magnetic field and t...
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Format: | Theses |
Language: | Indonesia |
Online Access: | https://digilib.itb.ac.id/gdl/view/52007 |
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Institution: | Institut Teknologi Bandung |
Language: | Indonesia |
Summary: | The Magnetotelluric (MT) method is a geophysical method that is widely used for geothermal
exploration because it has a deep penetration of up to hundreds of kilometres. The MT method
can describe a 2Dimensional (2D) geothermal system by utilizing the relationship between the
magnetic field and the electric field which produces a model in the form of resistivity to depth.
The MT method is applied to the Dolok Marawa area by using 43 sound points. This method
is used to determine the resistivity structure beneath the earth's surface and interpret the
geothermal system in the region. In this study, the quality of MT data has been improved by
rotating the data as well as static correction using co-kriging.
The results showed that the geoelectric strike was NW-SE (northwest southeast). The 2D MT
modelling results in the Dolok Marawa area show a thin layer with a resistivity of 10-100
ohm.m near the surface. In the next layer, there is a conductive layer with a small resistivity
value of 10 ohm.m which is interpreted as a clay cap. In the lower layer, there is a layer with
a resistivity of 10-100 ohm.m which is interpreted by the reservoir zone. In the next layer, there
is a resistive zone with a large resistivity of 100 ohm.m which is interpreted to be associated
with limestone rock and the heat source of the Mount Bahtopu area. The heat source in the
Dolok Marawa area is indicated by andesite intrusion. There is a low resistivity zone that is
not continuous in the study area which is indicated to be related to the geological structure
which is the way for the emergence of the geothermal system manifestations. |
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