Advancing Sustainable Geothermal Energy: A Case Study of Controlled Source Audio-Frequency Magnetotellurics Applications in Qihe, Shandong

Author:

Zhang Hui1ORCID,Nie Fajian2

Affiliation:

1. College of Geosciences and Engineering, North China University of Water Resources and Electric Power, Zhengzhou 450046, China

2. School of Petroleum Engineering, Yangtze University, Wuhan 430110, China

Abstract

Geothermal energy is a key part of sustainable and renewable energy strategies, especially for clean heating in northern regions. This study focuses on Qihe County in Shandong Province, applying a controlled source audio-frequency magnetotellurics (CSAMT) method to investigate deep karst geothermal reservoirs. This research addresses the complex geological conditions and electromagnetic interference in the region, aiming to improve sustainable geothermal resource development. The findings indicate that the geothermal reservoir in the study area primarily consists of Ordovician limestone, characterized by moderate burial depth, high water volume, and elevated water temperature. Integrating CSAMT with vertical electrical sounding (VES) and radiometric surveying has clearly defined the deep aquifer layers and major water-controlling fault structures. Drilling verification results demonstrate the significant effectiveness of the integrated geophysical methods employed, providing reliable technical support for deep geothermal exploration in similar regions. This study makes a significant contribution to the scientific and technical foundation necessary for the sustainable development and utilization of geothermal resources, supporting the broader goals of environmental sustainability and renewable energy.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Reference30 articles.

1. New development of the electromagnetic (EM) methods for deep exploration;Di;Chin. J. Geophys.,2019

2. Study on the thermal reservoir characteristics of karst geothermal fields in Tianjing city;Sui;Geol. Resour.,2019

3. The application of multiple non-seismic methods to geothermal exploration in Qihe Shandong Province;Zhang;Geophys. Geochem. Explor.,2020

4. Geothermal exploration using gravity gradiometry—A Salton Sea example;Kohrn;Geotherm. Resour. Counc. Trans.,2011

5. Analysis and Interpretation of the gravity data to delineate subsurface structural geometry of the Olkaria geothermal reservoir, Kenya;Omollo;Geothermics,2023

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