4.7 Article

Estimates of reservoir temperatures for non-magmatic convective geothermal systems: Insights from the Ranwu and Rekeng geothermal fields, western Sichuan Province, China

期刊

JOURNAL OF HYDROLOGY
卷 609, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.jhydrol.2022.127668

关键词

Ranwu geothermal field; Convective geothermal systems; Geothermometers; Water-rock reaction; Reservoirs

资金

  1. National Natural Science Foundation of China [41972254, 42102297, 41877208]
  2. Innovative Science and Technology Talents Team Construction Project of Henan Province [CXTD2016053]
  3. China Postdoctoral Science Foundation [2021 M701098]
  4. Special Funds for Higher Education Basic Scientific Research Funds of Henan Province [NSFRF200103, NSFRF210304]

向作者/读者索取更多资源

The Ranwu and Rekeng geothermal fields in Sichuan Province are non-magmatic convective geothermal systems. Ranwu is a mid-low temperature system while Rekeng is high-temperature. The study confirms Ranwu as a mid-low temperature convective system without magma degassing effects, and discourages using Na-K geothermometer due to difficulties in achieving Na-K equilibrium at such temperatures.
The Ranwu and Rekeng geothermal fields are non-magmatic convective geothermal systems located in the western part of the Sichuan Province. The Ranwu field is a mid-low temperature system with relatively weak geothermal manifestations, whiles the Rekeng system is the high-temperature type with strong manifestations. In this study, we first investigate the flow processes of the thermal fluids in Ranwu by analyzing the hydro geochemistry of different thermal springs. Next, we ascertain the existence of shallow or deep reservoirs in the two thermal fields and estimate the reservoir temperatures by analyzing the water-rock interactions. Our findings confirm that the Ranwu geothermal field is a mid-low temperature convective system without magma degassing effects. Only a reservoir with a temperature of 116 C formed beneath Ranwu without any relatively shallow reservoirs. Furthermore, we discourage using Na-K geothermometer for non-magmatic convective geothermal systems because it is difficult to achieve Na-K equilibrium between the fluids and the reservoirs rocks at such relatively low temperatures. Also, the Na-K-Ca geothermometer with beta = 1/3 fails because of the Na-K imbalance in the two geothermal fields. However, Mg-correction improves its accuracy for Mg-rich thermal waters in Ranwu and Rekeng probably because the Mg-K-Ca system correlates better with the reservoir temperatures than the Na-K-Ca system. Additionally, chalcedony and K-Mg geothermometers are valid for estimating the reservoir temperatures of such geothermal systems. Comparable estimates of the two geothermometers could be used to establish the existence of shallow or deep reservoirs.

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