ISSN 1006-3021 CN11-3474/P
Published bimonthly started in 1979
甘肃天水大地热流特征及热异常成因机制
  
关键词:geothermal heat flow  rock thermal conductivity  rock heat production rate  thermal anomaly genesis mechanisms
基金项目:甘肃省有色金属地质勘查局兰州矿产勘查院项目“甘肃省天水地区地温场特征及其主控因素研究”(编号: YSJG2023-03)
作者单位E-mail
赵欣妍 中国地质科学院地质力学研究所
自然资源部北京地壳应力应变野外科学观测研究站
中国地质调查局油气地质力学重点研究室 
1638548260@qq.com 
唐晓音 中国地质科学院地质力学研究所
自然资源部北京地壳应力应变野外科学观测研究站
中国地质调查局油气地质力学重点研究室 
xytang2019@126.com 
郭东宝 自然资源部黄河上游战略性矿产资源重点实验室&兰州大学地质科学与矿产资源学院
甘肃省西部矿产资源重点实验室
西部环境教育部重点实验室&兰州大学资源环境学院
甘肃省有色金属地质勘查局兰州矿产勘查院 
 
陈程 中国地质科学院地质力学研究所
自然资源部北京地壳应力应变野外科学观测研究站
中国地质调查局油气地质力学重点研究室 
 
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摘要:
Heat Flow Characteristics and Thermal Anomaly Genesis in Tianshui, Gansu
      The Tianshui area is located in the southeast of Gansu Province. It is rich in geothermal resources and is a favorable prospective area for geothermal exploration. As a critical parameter characterizing the thermal state, terrestrial heat flow data is used for evaluating geothermal resources in a given area. However, relevant research in the Tianshui region is relatively limited, and there is a scarcity of heat flow data, making it difficult to characterize the regional geothermal field in this area. To address this deficiency, this study measured the thermal properties of different rock types in the Tianshui area. By combining the existing data on Moho temperature and depth, as well as the corresponding crustal stratification in the region, new heat flow values were calculated, and a terrestrial heat flow contour map was generated. Based on these results, the spatial distribution characteristics of terrestrial heat flow and the mechainisms behind thermal anomalies were discussed. The study revealed that the heat flow in Tianshui area exhibits a spatial distribution trend of “high in the southwest and low in the northeast”. The mechanism for thermal anomalies in the central and southern regions is hypothesized to be related to the upwelling of high-temperature materials due to the uplift of the asthenosphere and basal subduction in this region. These thermal materials form a low-velocity, high-conductivity layer in the shallow crust, which acts as a heat source, leading to the formation of thermal anomalies at the surface. The mechanism for thermal anomalies in the western region is speculated to be caused by the weak material flow from the Qinghai-Tibet Plateau that passes through the middle to lower crust of the Qinling Mountains and reaches the western Tianshui area, inducing thermal anomalies in this region. Additionally, the spatial distribution of faults in the study area shows a notable correlation with areas of high geothermal flux and hot spring outcrops. The deep fault zone along the northern margin of the western Qinling Mountains serves as a primary thermal conduction pathway, facilitating the transfer of deep heat materials and heat to the shallow crust. Furthermore, relative shear movements between blocks may also generate additional heat.
ZHAO Xinyan,TANG Xiaoyin,GUO Dongbao,CHEN Cheng.2025.Heat Flow Characteristics and Thermal Anomaly Genesis in Tianshui, Gansu[J].Acta Geoscientica Sinica,46(6):1199-1209.
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