电法地热勘探

C. Thanassoulas
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引用次数: 18

摘要

地球物理电方法在地热田研究中起着重要的作用。由于它们具有较大的电阻率对比,因此在地热研究的几乎所有阶段都得到了广泛应用。所采用的不同技术和方法因所寻求的目标而异。本文对电法在地热勘探中的应用作了初步综述。然后对典型地热田进行了描述,并对其所遇到的地层电性参数的影响进行了评述。简要介绍了各种电法的基本原理,并指出了它们在特定地热目标上的应用。最后以米洛斯/希腊高焓地热田为例进行了实例分析。在本报告中,除了对所讨论的每个主题进行了广泛的参考外,更多的是侧重于各种地热目标与所应用的电方法之间的关系,而另一方面则强调了对断裂带和断层的研究。在地热研究中,最重要的目标是最新的,因为它们被认为是最有前途的生产钻孔的钻探地点。
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Geothermal exploration using electrical methods

Geophysical electrical methods play an important role in the study of geothermal fields. They are widely used, by virtue of large resistivity contrasts encountered in them, in almost all stages of geothermal research. The different techniques and the methodologies employed, vary according to the target sought.

In this work, initially a general review of the use of the electrical methods in geothermal exploration is given. Then a description of a typical-form geothermal field is presented and its impact to electrical parameters of the geological formations encountered in it is commented.

The basic elements of the various electrical methods are described in a short form, and their application on the specific geothermal targets is pointed out.

As an example, the Milos/Greece high-enthalpy geothermal field case history is finally presented.

In this presentation, apart from the extensive references for each topic discussed, more weight has been put on the relationbetween the various geothermal targets and the electrical methodologies applied for on one hand, while on the other hand emphasis has been put on the study of fracture zones and faults. The latest are the most important targets in geothermal research since they are considered as the most promising drilling sites for productive drillholes.

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