综合分析低勘探复杂地区地热资源形成模式的方法:中国云南省弥渡县案例研究

IF 4.2 3区 工程技术 Q2 ENERGY & FUELS Natural Gas Industry B Pub Date : 2024-02-01 DOI:10.1016/j.ngib.2024.02.001
Longfei Xu , Dawei Zhang , Qianchao Li , Bingsong Yu , Yuanfu Zhang , Hui Tan , Yishan Cheng
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引用次数: 0

摘要

地层模型作为地热资源勘探和评价的重要组成部分,在不同地区具有独特的形成和分布规律。在开发地热资源之前,需要建立可靠的地质模型,以帮助温度预测、有利区域选择和钻井设计研究。本文提供了一种结合地质研究和宽场电磁法分析地热资源形成模型的综合方法。通过分析剖面的断层分布、地层岩性、岩浆岩发育和信号变化,将电阻率剖面转化为地质剖面。综合分析热源、水源、热储、运移条件、盖岩、保存条件等地质要素,研究地质要素与地质剖面的匹配关系,建立地热资源的形成模型。这种方法避免了地质方法和地球物理方法各自的局限性,建立的成藏模型全面、直观、准确,可为地热资源开发提供支持。
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An integrated approach to analyze the formation models of geothermal resources in complicated areas with low exploration: A case study of the Midu County in Yunnan Province, China

As an important component of the exploration and evaluation of geothermal resources, the formation model has unique formation and distribution rule in different regions. Reliable geological models need to be established to help in temperature prediction, favorable area selection, and drilling design studies prior to the development of geothermal resources. This paper provides an integrated approach for analyzing the formation models of geothermal resources by combining geological studies and the wide-field electromagnetic method. The resistivity profile is converted into a geologic profile by analyzing the fault distribution, stratigraphic lithology, magmatic rock development, and signal changes of the profile. Comprehensively analyzing the geological elements including the heat sources, water sources, thermal reservoirs, transport conditions, cap rock, and preservation conditions, we investigate the matching relationship of the geological elements on the geologic profile and establish a formation model of the geothermal resources. This approach avoids the respective limitations of geological and geophysical methods, and the formation model established by this approach is comprehensive, intuitive, and accurate and can provide support for the development of geothermal resources.

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来源期刊
Natural Gas Industry B
Natural Gas Industry B Earth and Planetary Sciences-Geology
CiteScore
5.80
自引率
6.10%
发文量
46
审稿时长
79 days
期刊最新文献
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