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Did You Know That The Surface Electricity Method Could Be Used for Geothermal Exploration?

Views: 8     Author: Site Editor     Publish Time: 2024-03-15      Origin: Site

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Did you know that the surface electricity 

method could be used for geothermal exploration?

photobank


OIP-C


Underground hot water is a new type of environmental protection energy. Compared with coal resources, it is not only environmentally friendly, clean and less polluting, but also a kind of renewable energy. In recent years, with the improvement of people's living standards, the quality of life and the concept of survival change, geothermal energy more and more popular with the people, geothermal development, medical and health care (bath), heating, tourism and real estate development at an organic whole, has good social and economic benefits, broad application prospect. With the rapid development of economy, the development of geothermal resources is increasing, and the survey of geothermal resources has been carried out in various places. The geoelectromagnetic method and direct current sounding method have played an irreplaceable role in the exploration.


Exploring the use of surface electrical methods in geothermal activity detection, this innovative approach delves into the complex web of underground energy, allowing us a glimpse into the hidden depths of geothermal potential on earth. By using the power of the current under the earth's surface, researchers were able to reveal the geothermal mystery with strong precision through instrument feedback data, so we need to know what are the characteristics of our power plants?


未标题-1

Electrical anomaly characteristics of underground hot water.

The resistivity of rock and water is closely related to the temperature. When the temperature of water is filled with hot water, the higher the temperature, the lower the resistivity of water, the lower the water, the higher the resistivity between ordinary water and underground hot water.

未标题-2

Characteristics of electrical anomaly of geological structures.

In the selection of experimental subjects, the strata need to have the transverse layered distribution characteristics, different strata have different electrical conductivity, in the lateral electrical conductivity is relatively uniform. When the stratum is uniform and continuous, the visual resistivity contour of the corresponding ground electric section is uniform and smooth, and when the longitudinal fault and other structures are distributed, the uniform change law of the transverse horizon is destroyed, and the resistivity contour shows obvious errors in the transverse direction, which is the geophysical premise of detection.



The application of the surface electricity method in geothermal exploration is a multi-faceted process, involving numerous complex calculations and complex instruments. Through electrode placement and careful analysis of resistivity data, scientists were able to map a complex network of underground geological structures that accommodate geothermal reservoirs. This complex electrons and current provides a window into the dynamic world of geothermal energy, revealing the complex interactions that shape our earth's underground landscape. So what working methods do we need to use in the field?


we should determine what methods to use according to the purpose and task of the work, the topographic and geological conditions of the survey area, and in order to better complete the geological task of the work, we will briefly introduce two methods today:

未标题-3

Controlled source audio earth electromagnetic method.

未标题-4

DC vertical electric depth measuring method.


The key to unlocking the full potential of the surface method lies in careful interpretation of the data and a detailed understanding of the geological processes. By piecing together the puzzle of resistivity maps and cross-sectional profiles, professional researchers are able to build a comprehensive picture of the underground geothermal landscape. This intricate body of data provides valuable insights into the location, size, and temperature of geothermal reservoirs, paving the way for the sustainable use of this sustainable energy source.



In short, the application of surface electricity detection in geothermal exploration represents a breakthrough leap for us to explore and release the full potential of the earth's natural resources. By combining the power of technology with the precision of scientific inquiry, researchers are able to delve into the core of the Earth's geothermal energy potential, paving the way for a sustainable and environmentally friendly future.








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