蔚县盆地地热成因机制与地质构造作用相关性分析

    Correlation analysis between geothermic genetic mechanism and geological tectonics in Yuxian Basin

    • 摘要: 为研究盆地型地热资源成因,以蔚县盆地为研究区,通过收集资料、地热地质调查、一般水样取样分析、大地电磁测深、地热流体降压实验、地热流体样品取样及全分析等方法和手段查明蔚县盆地地热资源分布及条件,并划定5个地热异常区。从地质构造视角,进一步划分了3个地热地质区,分别为壶流河断裂以北单斜构造地热区、壶流河断裂以南断陷盆地地热区、松枝口—右所堡断裂以东基岩隆起地热区。基于断陷、沉积、断裂构造、岩浆活动等地质构造作用,采用分析归纳的方法研究其与地热成因机制的相关性。研究表明: 蔚县盆地地质构造作用为地热资源的形成提供了基础条件; 断陷和沉积作用使蔚县盆地形成了良好的碳酸盐岩热储层和盖层,使其具有良好的热储条件; 断裂不仅是导通深部热能的通道,也是浅层水入渗的途径; 深部岩浆活动促生了构造格架,同时也不断地提供深部热能。研究区兼具矿盆、水盆、热盆的特征,研究成果可为今后盆地型热储勘查提供借鉴依据。

       

      Abstract: In order to study the basin-type geothermal resources genesis, the authors took Yuxian Basin as the study object to conduct the distribution and conditions of geothermal resources in Yuxian Basin through data collection, geothermal geological survey, routine water sample collection and analysis, MT survey, deep geothermal fluid depressurization experiment, geothermal fluid sample collection and comprehensive analysis. And 5 geothermal anomaly areas were delineated. From the perspective of geological structure, three geothermal geological zones have been further divided in the demarcated abnormal area mentioned above, including the geothermal area with monoclinal structure in the northern Huliuhe Fault, the geothermal area in the fault depression basin in the southern Huliuhe Fault, and bedrock uplift area in the eastern Songzhikou-Yousuobu Fault. Based on geological tectonic action such as faulting, sedimentation, fault structures and magmatic activities, the correlation between the geological tectonic action and the mechanism of geothermal genesis was studied by the method of analysis and induction. The research show that the geological tectonic processes in Yuxian Basin provided basic conditions for the formation of geothermal resources. The faulting and sedimentary processes enabled Yuxian Basin to form excellent carbonate rock thermal reservoirs and cover layers, making a favorable thermal storage conditions. Fracture is not only a channel for conducting deep thermal energy, but also a way for shallow water to infiltrate. Deep magmatic activities have given rise to structural frameworks and continuously provided deep thermal energy. This basin has the characteristics of a mineral basin, a water basin and a thermal basin. This research results could provide references for future exploration of basin-type geothermal reservoir.

       

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