Terrestrial heat flow and crustal thermal structure of the Gonghe-Guide area, northeastern Qinghai-Tibetan plateau. (March 2018)
- Record Type:
- Journal Article
- Title:
- Terrestrial heat flow and crustal thermal structure of the Gonghe-Guide area, northeastern Qinghai-Tibetan plateau. (March 2018)
- Main Title:
- Terrestrial heat flow and crustal thermal structure of the Gonghe-Guide area, northeastern Qinghai-Tibetan plateau
- Authors:
- Zhang, Chao
Jiang, Guangzheng
Shi, Yizuo
Wang, Zhuting
Wang, Yi
Li, Shengtao
Jia, Xiaofeng
Hu, Shengbiao - Abstract:
- Highlights: Thermal conductivity and radiogenic heat production of the granitic rocks. New heat flow data from the northeastern Tibetan plateau. Crustal thermal structures of the Gonghe and Guide basins are presented. The thermal effects of a cooling magma chamber on the Gonghe basin were simulated. The thermal genetic mechanism of the Gonghe basin were established. Abstract: The Gonghe-Guide area, which is located at the northeastern edge of the Qinghai-Tibetan Plateau, has the greatest hot dry rock (HDR) geothermal resources exploration and development potential in China. Separated by the Waligong tectonomagmatic belt, the study area includes the Gonghe and Guide basins, which are characterized by distinctly different thermal state and surface thermal manifestations. Although a number of geophysical explorations have been undertaken, studies on fundamental geothermal theory remain scarce, including a lack of high-quality heat flow determinations and thermal structure studies. In this study, we obtained continuous steady-state temperature logs from three deep boreholes (GR2 and DR3 in the Gonghe basin and ZR1 in the Guide basin). The thermal conductivities and radiogenic heat production rates of the outcrop samples gathered from the two basins were measured. The heat-flow values were determined to be 116.3–122.3 mW m −2 for the Gonghe basin, yielding a mean of 119.3 mW m −2 . Two existed heat flow sites (R2 and R3 boreholes) gave an average heat flow of 75 mW m −2 for theHighlights: Thermal conductivity and radiogenic heat production of the granitic rocks. New heat flow data from the northeastern Tibetan plateau. Crustal thermal structures of the Gonghe and Guide basins are presented. The thermal effects of a cooling magma chamber on the Gonghe basin were simulated. The thermal genetic mechanism of the Gonghe basin were established. Abstract: The Gonghe-Guide area, which is located at the northeastern edge of the Qinghai-Tibetan Plateau, has the greatest hot dry rock (HDR) geothermal resources exploration and development potential in China. Separated by the Waligong tectonomagmatic belt, the study area includes the Gonghe and Guide basins, which are characterized by distinctly different thermal state and surface thermal manifestations. Although a number of geophysical explorations have been undertaken, studies on fundamental geothermal theory remain scarce, including a lack of high-quality heat flow determinations and thermal structure studies. In this study, we obtained continuous steady-state temperature logs from three deep boreholes (GR2 and DR3 in the Gonghe basin and ZR1 in the Guide basin). The thermal conductivities and radiogenic heat production rates of the outcrop samples gathered from the two basins were measured. The heat-flow values were determined to be 116.3–122.3 mW m −2 for the Gonghe basin, yielding a mean of 119.3 mW m −2 . Two existed heat flow sites (R2 and R3 boreholes) gave an average heat flow of 75 mW m −2 for the Guide basin, which is approximately that of the regional background heat flow level of the northeastern Tibetan Plateau. The 1-D theoretical crustal thermal structures of the Gonghe and Guide basins were constructed by solving steady-state heat conduction equation. The results show that the Moho temperature and mantle heat flow in the Guide basin were 1016 °C and 27 mW m −2, respectively. However, the temperature field in the Gonghe basin indicated partial melting in the crust. The high temperatures and thus heat flow in the Gonghe basin may suggest the existence of anomalous heat source body in crust. Successful inversions of vertical and horizontal temperature variations of boreholes in the Gonghe basin were obtained by numerically simulating a cooling rectangular magma chamber with a buried depth of 5–6 km and horizontal dimensions of 12–14 km. The study emphasizes that the anomalous heat flow in the Gonghe basin may be the joint thermal effect of: (1) the high regional background heat flow level of the northeastern Tibetan Plateau, which is mainly due to the radiogenic heat of thickened crust; (2) the cooling of a shallow magma chamber, which may be caused by the uplift and denudation of the plateau. … (more)
- Is Part Of:
- Geothermics. Volume 72(2018)
- Journal:
- Geothermics
- Issue:
- Volume 72(2018)
- Issue Display:
- Volume 72, Issue 2018 (2018)
- Year:
- 2018
- Volume:
- 72
- Issue:
- 2018
- Issue Sort Value:
- 2018-0072-2018-0000
- Page Start:
- 182
- Page End:
- 192
- Publication Date:
- 2018-03
- Subjects:
- Heat flow -- Thermal conductivity -- Radiogenic heat production -- Crustal thermal structure -- Magma chamber -- Gonghe-Guide area
Hydrogeology -- Periodicals
Geothermal resources -- Periodicals
Énergie géothermique -- Périodiques
GEOTHERMAL ENGINEERING
GEOTHERMAL ENERGY
GEOTHERMAL EXPLORATION
Geothermal resources
Hydrogeology
Periodicals
Electronic journals
621.44 - Journal URLs:
- http://www.journals.elsevier.com/geothermics/ ↗
http://www.elsevier.com/journals ↗
http://www.sciencedirect.com/science/journal/03756505 ↗ - DOI:
- 10.1016/j.geothermics.2017.11.011 ↗
- Languages:
- English
- ISSNs:
- 0375-6505
- Deposit Type:
- Legaldeposit
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