Citation: | Wei SC, Liu F, Zhang W, et al. 2022. Research on the characteristics and influencing factors of terrestrial heat flow in Guizhou Province. Journal of Groundwater Science and Engineering, 10(2): 166-183 doi: 10.19637/j.cnki.2305-7068.2022.02.006 |
Ban WT, Duan XQ, Yang Q, et al. 2018. A study of the occurrence law of zonal thermal reservoirs in the Gedong area of Guizhou. Geology and Exploration, 54(2): 0366-0375. (in Chinese) doi: 10.13712/j.cnki.dzykt.2018.02.015
|
Chen MX, Huang GS, Xiong LP, et al. 1988. Geothermics of North China. Beijing: Science Press: 61-70. (in Chinese)
|
Chen P, Zhang BM, Jin B. 2014. Heat-reservoir structure study and its significance of Langgong scenic spot in Huangguoshu, Guizhou. Guizhou Geology, 31(4): 318-322. (in Chinese) doi: 10.3969/j.issn.1000-5943.2014.04.014
|
Chen XY, Jiang ZJ, Xu HY, et al. 2022. Heat control mechanism and productivity optimization of artificial fracture zone structure of dry hot rock in Gonghe Basin. Hydrogeology & Engineering Geology, 49(1): 191-199. (in Chinese)
|
Chen Y, Xu Y, Xu T, et al. 2015. Magmatic underplating and crustal growth in the Emeishan Large Igneous Province, SW China, revealed by a passive seismic experiment. Earth and Planetary Science Letters, 432: 103-114. doi: 10.1016/j.jpgl.2015.09.048
|
Chen ZS. 2021. The formation mechanism of physiotherapy thermomineral water (hot spring) in guizhou and its effect on human health. Ph. D thesis. Guizhou: Guizhou University: 53-166. (in Chinese)
|
Dai CG, Qin SR, Chen JS, et al. 2013. Characteristics of deep concealed faults in Guizhou. Geological Science and Technology Information, 32(6): 1-13. (in Chinese)
|
Ding J, Xiang T, You B, et al. 2019. Analysis on geothermal resources prospecting in Dashan-Xinzhuang area, Xingren County, Guizhou Province. West-China Exploration Engineering, 10: 142-146. (in Chinese) doi: 10.3969/j.issn.1004-5716.2019.10.053
|
Duan QB, Song XQ, Meng FT, et al. 2015. Study on occurrence law of geothermal water in metamorphic rock area of eastern Guizhou. Groundwater, 37(4): 37-39. (in Chinese)
|
Fang SW, Li Q, Chen G, et al. 2020. Study on distribution characteristics of geothermal field in central and Eastern Bijie, Guizhou Province. West-China Exploration Engineering, 10: 130-134. (in Chinese)
|
Feng K, Xu S, Chen A, et al. 2021. Middle permian dolomites of the SW Sichuan Basin and the role of the Emeishan large igneous province in their origin. Marine and Petroleum Geology, 128(3-4): 1-18. doi: 10.1016/j.marpetgeo.2021.104981
|
Furlong KP, Chapman DS. 2013. Heat flow, heat generation, and the thermal state of the lithosphere. Annual Review of Earth and Planetary Sciences, 41: 385-410. doi: 10.1146/annurev.earth.031208.100051
|
GBBGMEDGP (Geological Brigade of Bure of Geology and Mineral Exploration and Development Guizhou Province). 2015. Report on well completion of CK1 geothermal exploration hole in Longjing geothermal water survey in Duyun City, Guizhou Province. 114 Geological Brigade of Bure of Geology and Mineral Exploration and Development Guizhou Province. (in Chinese)
|
GSGP (Geological Survey of Guizhou Province). 2017. Regional geologic annuals of Guizhou. Beijing: Geological Publishing House: 1-788. (in Chinese)
|
Grall C, Henry P, Tezcan D, et al. 2012. Heat flow in the Sea of Marmara Central Basin: Possible implications for the tectonic evolution of the North Anatolian fault. Geology, 40(1): 3-6.
|
Guo C, Qin Y, Lu L. 2018. Terrestrial heat flow and geothermal field characteristics in the Bide-Santang basin, western Guizhou, South China. Energy Exploration & Exploitation, 36(5): 1114-1135. doi: 10.1177/0144598717752364
|
He B, Xu Y, Chung S, et al. 2003. Sedimentary evidence for a rapid, kilometer-scale crustal doming prior to the eruption of the Emeishan flood basalts. Earth and Planetary Science Letters, 213(3-4): 391-405. doi: 10.1016/S0012-821X(03)00323-6
|
He C, Santosh M, Wu J, et al. 2014. Plume or no plume: Emeishan Large Igneous Province in Southwest China revisited from receiver function analysis. Physics of the Earth and Planetary Interiors, 232: 72-78.
|
He L. 2015. Thermal regime of the North China Craton: Implications for craton destruction. Earth-Science Reviews, 140: 14-26. doi: 10.1016/j.earscirev.2014.10.011
|
Hou DG. 2016. Research on reservoir characteristics and recoverability of CBM resources in Songhe mine field, Guizhou province. M.S. thesis. Xuzhou: China University of Mining and Technology: 21-51. (in Chinese)
|
Hu S, He L, Wang J. 2000. Heat flow in the continental area of China: A new data set. Earth and Planetary Science Letters, 179(2): 407-419. doi: 10.1016/S0012-821X(00)00126-6
|
Jiang G, Hu S, Shi Y, et al. 2019. Terrestrial heat flow of continental China: Updated dataset and tectonic implications. Tectonophysics, 753(20): 36-48. doi: 10.1016/j.tecto.2019.01.006
|
Jiang GZ, Gao P, Rao S, et al. 2016. Compilation of heat flow data in the continental area of China (4th edition). Chinese Journal of Geophysis, 59(8): 2892-2910. (in Chinese) doi: 10.6038/cjg20160815
|
Jiang Q, Qiu N, Zhu C. 2018. Heat flow study of the Emeishan large igneous province region: Implications for the geodynamics of the Emeishan mantle plume. Tectonophysics, 724-725: 11-27. doi: 10.1016/j.tecto.2017.12.027
|
Li YL, Yu CS, Jiang ZC, et al. 2021. An experimental study of heating tail water treatment of the Lindian geothermal fields in the Northern Songnen Basin. Hydrogeology & Engineering Geology, 48(1): 188-194. (in Chinese)
|
Liu F, Wang GL, Zhang W, et al. 2020a. Terrestrial heat flow and geothermal genesis mechanism of geothermal resources in northern Ningdu County, Jiangxi Province. Geological Bulletin of China, 39(12): 1883-1890. (in Chinese)
|
Liu Y, Qiu N, Li H, et al. 2020b. Terrestrial heat flow and crustal thermal structure in the northern slope of Tazhong uplift in Tarim Basin. Geothermics, 83: 101709. doi: 10.1016/j.geothermics.2019.101709
|
Lu JR. 1996. Dynamical characteristics of the Emei Mantle Plume. Acta Geoscientia Sinica, 17(4): 424-438. (in Chinese)
|
Lu LL. 2014. Differentiation and geological controls of modern geothermal field in Bide-Santang basin. M. S. thesis. Xuzhou: China University of Mining and Technology: 29-41. (in Chinese).
|
Lu LL, Qing Y, Guo C. 2013. Modern geothermal field and coal seam heating temperature in Buzuo exploration area, Western Guizhou. Coal Geology of China, 25(10): 12-17. (in Chinese)
|
Mao JQ, Zhang QH, Gu SY. 1997. The geological characteristics and tectonic evolution of Shuicheng fault subsidence. Journal of Guizhou University of Technology, 26(2): 1-6. (in Chinese)
|
Mao X, Li K, Wang X. 2019. Causes of geothermal fields and characteristics of ground temperature fields in China. Journal of Groundwater Science and Engineering, 7(1): 15-28. doi: 10.19637/j.cnki.2305-7068.2019.01.002
|
Mu ZM, Wu L. 2021. Genetic analysis of hot mineral water in ZK2 geothermal well, Zhongba, Shiqian, Guizhou. West-China Exploration Engineering, 8: 131-136. (in Chinese)
|
Pollack HN, Hurter SJ, Johnson JR. 1993. Heat flow from the Earth’s interior: Analysis of the global data set. Reviews of Geophysics, 31(3): 367-280. doi: 10.1029/93RG01249
|
Qu NN, Li JB, Zhang XJ, et al. 2019. Study of deep structural feature in Guizhou based on gravity and magnetic data. Progress in Geophysics, 34(5): 1785-1793. (in Chinese) doi: 10.6038/pg2019CC0310
|
Rolandone F, Lucazeau F, Leroy S, et al. 2013. New heat flow measurements in Oman and the thermal state of the Arabian Shield and Platform. Tectonophysics, 589: 77-89. doi: 10.1016/j.tecto.2012.12.034
|
Shellnutt JG. 2014. The Emeishan large igneous province: A synthesis. Geoscience Frontiers, 5: 369-394. doi: 10.1016/j.gsf.2013.07.003
|
Song XQ, Jiang M, Peng Q, et al. 2019. Thermal property parameters and influencing factor analysis of main rock strata in Guizhou province. Acta Geologica Sinica, 93(8): 2092-2103. (in Chinese) doi: 10.19762/j.cnki.dizhixuebao.2019116
|
Song XQ, Peng Q, Xia YL. 2012. Estimation of reservoir temperature and circulation depth of geothermal water of SK08-2 well in Laofenzui metamorphic rock area of Wengan city. Water Saving Irrigation, 10: 24-26. (in Chinese)
|
Sun Y, Lai X, Wignall PB, et al. 2010. Dating the onset and nature of the Middle Permian Emeishan large igneous province eruptions in SW China using conodont biostratigraphy and its bearing on mantle plume uplift models. Lithos, 119(1-2): 20-33. doi: 10.1016/j.lithos.2010.05.012
|
Tian XL. 2016. Occurrence and development of geothermal water in Shiqian fracture. Acta Geologica Sichuan, 36(4): 623-626. (in Chinese)
|
Tu MJ, Li Q, Yi SY. 2019. Study on the occurrence condition of geothermal in Leishan, Guizhou. West-China Exploration Engineering, 7: 154-156. (in Chinese)
|
Wang GL, Lin WJ, Zhang W, et al. 2018. Geothermal Records of China (Southwest Volume II). Beijing: Science Press: 499-525. (in Chinese)
|
Wang GL, Wang WL, Zhang W, et al. 2020. The status quo and prospect of geothermal resources exploration and development in Beijing-Tianjin-Hebei region in China. China Geology, 3: 173-181. doi: 10.31035/cg2020013
|
Wang JY. 2015. Geothermics and its applications. Beijing: Science Press: 56-122. (in Chinese)
|
Wang JY. Huang SP. 1990. Compilation of heat flow data in the China continental area (2rd edition). Seismology and Geology, 12(4): 351-366. (in Chinese)
|
Wang J, Huang SY, Huang GS, et al. 1990. Basic characteristics of the Earth’s temperature distribution in China. Beijing: Geological Publishing House: 1-231. (in Chinese)
|
Wang J, Wang JA, Shen JY, et al. 1995. Heat flow in tarim basin. Earth Science-Journal of China University of Geosciences, 20(4): 399-404. (in Chinese)
|
Wang L, Zhang JW, Chen GY, et al. 2020. Delineation of concealed intermediate-acidic pluton and significance of mineral prospecting in Guizhou province. Geology and Exploration, 20(4): 399-404. (in Chinese) doi: 10.12134/j.dzykt.2020.02.013
|
Wang MZ, Wang SY. 2007. Concerns of developing geothermal resources in Guizhou province and counter measure proposals. Guizhou Geology, 24(1): 9-12. (in Chinese)
|
Wang Z, Rao S, Xiao H, et al. 2021. Terrestrial heat flow of Jizhong depression, China, Western Bohai Bay basin and its influencing factors. Geothermics, 96: 102210. doi: 10.1016/j.geothermics.2021.102210
|
Wu KB, Zeng GQ, Chen GX, et al. 2016. Deep structural features of Guizhou revealed by bouguer gravity anomaly. Geological Science and Technology Information, 35(1): 190-199. (in Chinese)
|
Wu L, Zhao L, Luo XG. 2012. Characteristics of geothermal field and estimation of heat flow in Wudang district of Guiyang. Site Investigation Science and Technology, 3: 41-43. (in Chinese)
|
Xing JS, Yang WR, Xing ZY, et al. 2007. Deep-seated structure characteristics of eastern China and its relation with metal mineralization-concentrated region. Earth Science Frontiers, 14(3): 114-130. (in Chinese)
|
Xiong LP, Hu SB, Wang JA. 1994. Analysis on the thermal conductivity of rocks from SE China. Acta Petrologica Sinica, 10(3): 323-329. (in Chinese)
|
Xiong LP, Hu SB, Wang JY. 1993. Terrestrial heat flow values in southeastern China. Chinese Journal of Geophysics, 36(6): 784-790. (in Chinese)
|
Xiong SQ, Yang H, Ding YY. 2016. Characteristics of Chinese continent Curie point isotherm. Chinese Journal of Geophysics, 59(10): 3604-3617. (in Chinese) doi: 10.6038/cjg20161008
|
Yang RK, Luo W, Pei RW, et al. 2018. Distribution and fluids hydrochemistry characteristics of hydrothermal geothermal resources in Guizhou Province. Geological Survey of China, 5(2): 38-44. (in Chinese) doi: 10.19388/j.zgdzdc.2018.02.06
|
Yang RK, Wang Q, Yang LJ, et al. 2015. Investigation, evaluation and zoning of geothermal resources in Guizhou Province. Guizhou Geological Environment Monitoring Institute: 1-157. (in Chinese)
|
Yang YJ, Ding GL, Xu W, et al. 2020. Tracer test and geothermal resource quantity evaluation based on dynamic data in the Xiaotangshan area of Beijing. Hydrogeology & Engineering Geology, 47(5): 196-200. (in Chinese)
|
Yuan FG. 1997. Geotherm characteristic of the north suburb of Zunyi city. Guizhou Geology, 14(2): 175-178. (in Chinese)
|
Yuan YS, Ma YS, Hu SB, et al. 2006. Present-day geothermal characteristics in South China. Chinese Journal of Geophysics, 49(4): 1118-1126. (in Chinese)
|
Zhang BJ, ZhaoT, Li YY,et al. 2019. The hydrochemical characteristics and its significance of geothermal water in both sides of large fault: Taking northern section of the Liaokao fault in north China as an example. China Geology, 2: 512-521. doi: 10.31035/cg2018132
|
Zhang CW, Li Q. 2015. Research of geotemperature field distribution characteristics and influence factors in Zunyi area. Guizhou Science, 33(2): 65-70. (in Chinese)
|
Zhang J, Huang S, Zuo Y, et al. 2020. Terrestrial heat flow in the baiyinchagan sag, erlian Basin, northern China. Geothermics, 86: 101799. doi: 10.1016/j.geothermics.2019.101799
|
Zhang L, Chen G, Li Q, et al. 2014. Formation condition and exploration prospecting of geothermal water in central Zunyi of Guizhou. Guizhou Geology, 31(1): 60-66. (in Chinese)
|
Zhang YH, Li X, Xu ZX, et al. 2021. An analysis of the genesis and engineering influence of geothermal water in the Kangding tunnel site of the Sichuan-Tibet Railway. Hydrogeology & Engineering Geology, 48(5): 46-53. (in Chinese)
|
Zhu SY. 2020. Study on the characteristics of geothermal water occurrence and water and heat migration in Zhenfeng anticline. M. S. thesis. Guizhou: Guizhou University: 25-28. (in Chinese)
|
[1] | Ying-nan Zhang, Yan-guang Liu, Kai Bian, Guo-qiang Zhou, Xin Wang, Mei-hua Wei, 2024: Development status and prospect of underground thermal energy storage technology, Journal of Groundwater Science and Engineering, 12, 92-108. doi: 10.26599/JGSE.2024.9280008 |
[2] | Meng-lei Ji, Shuai-chao Wei, Wei Zhang, Feng Liu, Yu-zhong Liao, Ruo-xi Yuan, Xiao-xue Yan, Long Li, 2024: Characterization of rock thermophysical properties and factors affecting thermal conductivity−A case study of Datong Basin, China, Journal of Groundwater Science and Engineering, 12, 4-15. doi: 10.26599/JGSE.2024.9280002 |
[3] | Zi-jun Zhuo, Dun-yu Lv, Shu-ran Meng, Jian-yu Zhang, Song-bo Liu, Cui-ling Wang, 2023: Factors driving surface deformations in plain area of eastern Zhengzhou City, China, Journal of Groundwater Science and Engineering, 11, 347-364. doi: 10.26599/JGSE.2023.9280028 |
[4] | Jia-xing Sun, Gao-fan Yue, Wei Zhang, 2023: Simulation of thermal breakthrough factors affecting carbonate geothermal-to-well systems, Journal of Groundwater Science and Engineering, 11, 379-390. doi: 10.26599/JGSE.2023.9280030 |
[5] | Feng Liu, Wei Zhang, Gui-ling Wang, Shuai-chao Wei, Chen Yue, Guang-zheng Jiang, Yu-zhong Liao, 2023: Geothermal anomalies in the Xianshuihe area: Implications for tunnel construction along the Sichuan-Tibet Railway, China, Journal of Groundwater Science and Engineering, 11, 237-248. doi: 10.26599/JGSE.2023.9280020 |
[6] | Yemeli Elida Joelle, Temgoua Emile, Kengni Lucas, Ambrosi Jean-Paul, Momo-nouazi Mathieu, Silatsa-Tedou Francis Brice, Wamba Franck Robean, Tchakam-Kamtchueng Brice, 2021: Hydro-geochemistry of groundwater and surface water in Dschang town (West Cameroon): Alkali and alkaline-earth elements ascertain lithological and anthropogenic constraints, Journal of Groundwater Science and Engineering, 9, 212-224. doi: 10.19637/j.cnki.2305-7068.2021.03.004 |
[7] | Chun-lei GUI, Zhen-xing WANG, Rong MA, Xue-feng ZUO, 2021: Aquifer hydraulic conductivity prediction via coupling model of MCMC-ANN, Journal of Groundwater Science and Engineering, 9, 1-11. doi: 10.19637/j.cnki.2305-7068.2021.01.001 |
[8] | Yu-fei Xi, Ya-bo Zhao, DA Yuen, 2021: Geothermal structure revealed by curie isothermal surface under Guangdong Province, China, Journal of Groundwater Science and Engineering, 9, 114-120. doi: 10.19637/j.cnki.2305-7068.2021.02.003 |
[9] | Wen-kai KANG, Feng LIU, Fei-fan YANG, Hua-jun WANG, 2020: Simulation of heat transfer performance using middle-deep coaxial borehole heat exchangers by FEFLOW, Journal of Groundwater Science and Engineering, 8, 315-327. doi: 10.19637/j.cnki.2305-7068.2020.04.002 |
[10] | ZHOU Nian-qing, LI Tian-shui, ZHAO Shan, ZHAO Shan, XIA Xue-min, 2019: Characteristics of the main inorganic nitrogen accumulation in surface water and groundwater of wetland succession zones, Journal of Groundwater Science and Engineering, 7, 173-181. doi: 10.19637/j.cnki.2305-7068.2019.02.008 |
[11] | ZHOU Bo, WEI Shan-ming, WANG Tao, NIE Yu-peng, WANG Chuan-qi, 2019: Discussion on establishing monitoring networks for temperature fields of shallow thermal energy in Shandong, China, Journal of Groundwater Science and Engineering, 7, 86-93. doi: 10.19637/j.cnki.2305-7068.2019.01.009 |
[12] | SOSI Benjamin, BARONGO Justus, GETABU Albert, MAOBE Samson, 2019: Electrical-hydraulic conductivity model for a weathered-fractured aquifer system of Olbanita, Lower Baringo Basin, Kenya Rift, Journal of Groundwater Science and Engineering, 7, 360-372. doi: DOI: 10.19637/j.cnki.2305-7068.2019.04.007 |
[13] | ZHAO Fang-hua, 2018: Research on single hole heat transfer power of ground source heat pump system, Journal of Groundwater Science and Engineering, 6, 65-70. doi: 10.19637/j.cnki.2305-7068.2018.01.008 |
[14] | GUO Si-jia, GUO Gui-ping, 2018: Enhancement of gaseous mercury (Hg0) adsorption for the modified activated carbons by surface acid oxygen function groups, Journal of Groundwater Science and Engineering, 6, 104-114. doi: 10.19637/j.cnki.2305-7068.2018.02.004 |
[15] | ZHOU Xun, WANG Xiao-cui, CAO Qin, LONG Mi, ZHENG Yu-hui, GUO Juan, SHEN Xiao-wei, ZHANG Yu-qi, TA Ming-ming, CUI Xiang-fei, 2016: A discussion of up-flow springs, Journal of Groundwater Science and Engineering, 4, 279-283. |
[16] | ZHANG Pei-feng, 2016: Thermal stresses analysis of casing string used in enhanced geothermal systems wells, Journal of Groundwater Science and Engineering, 4, 293-300. |
[17] | FENG Guan-hong, XU Tian-fu, ZHU Hui-xing, 2016: Dynamics of fluid and heat flow in a CO2-based injection-production geothermal system, Journal of Groundwater Science and Engineering, 4, 377-388. |
[18] | LIU Yan-guang, ZHU Xi, YUE Gao-fan, LIN Wen-jing, HE Yu-jiang, WANG Gui-ling, 2015: A review of fluid flow and heat transfer in the CO2-EGS, Journal of Groundwater Science and Engineering, 3, 170-175. |
[19] | Yan Zhang, Shuai Song, Jing Li, Fadong Li, Guangshuai Zhao, Qiang Liu, 2013: Stable Isotope Composition of Rainfall, Surface Water and Groundwater along the Yellow River, Journal of Groundwater Science and Engineering, 1, 82-88. |
[20] | Zong-jun Gao, Yong-gui Liu, 2013: Groundwater Flow Driven by Heat, Journal of Groundwater Science and Engineering, 1, 22-27. |
JGSE-ScholarOne Manuscript Launched on June 1, 2024.