• 中国出版政府奖提名奖

    中国百强科技报刊

    湖北出版政府奖

    中国高校百佳科技期刊

    中国最美期刊

    Volume 48 Issue 3
    Mar.  2023
    Turn off MathJax
    Article Contents
    Pei Fagen, He Meixing, Fang Hui, Wang Xuben, Qiu Gengen, Zhang Xiaobo, Lü Qinyin, Zhang Yaoyang, Yuan Yongzhen, Wang Xingyu, 2023. Evaluation of Deep Geothermal Resources Potential in the Songliao Basin Based on the Fuzzy Mathematics. Earth Science, 48(3): 1058-1079. doi: 10.3799/dqkx.2022.179
    Citation: Pei Fagen, He Meixing, Fang Hui, Wang Xuben, Qiu Gengen, Zhang Xiaobo, Lü Qinyin, Zhang Yaoyang, Yuan Yongzhen, Wang Xingyu, 2023. Evaluation of Deep Geothermal Resources Potential in the Songliao Basin Based on the Fuzzy Mathematics. Earth Science, 48(3): 1058-1079. doi: 10.3799/dqkx.2022.179

    Evaluation of Deep Geothermal Resources Potential in the Songliao Basin Based on the Fuzzy Mathematics

    doi: 10.3799/dqkx.2022.179
    • Available Online: 2023-03-27
    • Publish Date: 2023-03-25
    • With the high heat flow values and high geothermal gradient values, the Songliao basin is considered as a favorable geothermal resources potential area in China. Although some important developments have been made in previous studies on hot dry rocks in the Songliao basin, there is a lack of important parameters in some domains (such as terrestrial heat flow, geothermal gradient), and there are still controversies over the favorable areas of geothermal resources due to the colletion-based major evaluation data. In this paper, based on a large number of geophysical data, the buried depth of high conductivity layers in the crust, the depth of curie point isotherm, the Moho buried depth and the lithology distribution on Mesozoic base were obtained. Meanwhile, the collected data was integrated, including heat flow, geothermal gradient, earthquake magnitude and the distribution of surface hot springs and geothermal wells. Finally, using the method of fuzzy mathematics, the deep geothermal resources potential in the Songliao basin is evaluated. The main results are as follows: The distribution characteristics of deep geothermal resources in the Songliao basin are "excellent in the middle, good in the southeast, poor in the west and north"; Two favorable areas for deep geothermal resources are obtained, with one of Daqing-Songyuan area, and the other of Zhaodong-Harbin area; The total resources of hot dry rock in the two favorable areas are about 6.236×1022 J(equivalent to 2.128×1012 tce), which indicates that there is great resource potential of hot dry rock in the basin.

       

    • loading
    • Bai, D. H., Zhang, L., Kong, X. R., 1993. A Magnetotelluric Study of the Palaeozoic Collision Zone in the East of Inner⁃Mongolia: Ⅱ. Two⁃Dimensional Modelling. Chinese Journal of Geophysics, 36(6): 773-783 (in Chinese with English abstract).
      Bao, X. H., Zhang, Y., Li, Y., et al., 2017. Evaluation of Development Selection for Enhanced Geothermal System in Songliao Basin. Journal of Jilin University (Earth Science Edition), 47(2): 564-572 (in Chinese with English abstract).
      Bubnov, V. P., Yakovlev, A. G., Aleksanova, E. D., et al., 2007. Magnetotelluric Studies of the East⁃European Craton and Adjacent Regions. Acta Geophysica, 55(2): 154-168. https://doi.org/10.2478/s11600⁃006⁃0034⁃7
      Chen, D., Wyborn, D., 2009. Habanero Field Tests in the Cooper Basin, Australia: A Proof⁃of⁃Concept for EGS. Geothermal Resources Council annual meeting 2009, Reno.
      Cui, J. P., 2004. Study on Geothermal Evolution History and Hydrocarbon Accumulation History in the Hailaer Basin (Dissertation). Northwest University, Xi'an (in Chinese with English abstract).
      Dezayes, C., Castera, J., Helbronn, G., et al., 2009. Regional 3D Model of the Soultz⁃Sous⁃Forêts Geothermal Field (Rhine Graben, France). Geothermal⁃Resource Council Transactions, 33: 175-180.
      Fan, Z. Y., Xiong, S. Q., Yu, C. C., et al., 2020. Geothermal Distribution Characteristics and Sedimentary Basin Geothermal System in the Severe Cold Region of Northeast China. Applied Geophysics, 17(3): 321-337. https://doi.org/10.1007/s11770⁃020⁃0827⁃5
      Fu, W., Hou, H. S., Gao, R., et al., 2019. Fine Structure of the Lithosphere Beneath the Well SK⁃2 and Its Adjacent: Revealed by Deep Seismic Reflection Profile. Chinese Journal of Geophysics, 62(4): 1349-1361 (in Chinese with English abstract).
      Fu, X. F., Sha, W., Wang, L., et al., 2010. Distribution Law of Mantle⁃Origin CO2 Gas Reservoirs and Its Controlling Factors in Songliao Basin. Journal of Jilin University (Earth Science Edition), 40(2): 253-263 (in Chinese with English abstract).
      Goldscheider, N., Mádl⁃Szönyi, J., Eröss, A., et al., 2010. Review: Thermal Water Resources in Carbonate Rock Aquifers. Hydrogeology Journal, 18(6): 1303-1318. https://doi.org/10.1007/s10040⁃010⁃0611⁃3
      Han, X. J., Jin, X., 2002. Geothermal Resource and Thermail Structure in Northeastern China. Geology and Prospecting, 38(1): 74-76 (in Chinese with English abstract).
      Jiang, G. Z., Gao, P., Rao, S., et al., 2016. Compilation of Heat Flow Data in the China Continental Area (4th Edition). Chinese Journal of Geophysics, 59(8): 2892-2910(in Chinese with English abstract).
      Jin, X., Sachio, E., Xu, H. P., 1995. The Heat Flow Profile from Manzhouli to Suifenhe, China. Chinese Science Bulletin, 40(2): 161-163 (in Chinese with English abstract). doi: 10.1360/csb1995-40-2-161
      Kelkar, S., WoldeGabriel, G., Rehfeldt, K., 2016. Lessons Learned from the Pioneering Hot Dry Rock Project at Fenton Hill, USA. Geothermics, 63: 5-14. https://doi.org/10.1016/j.geothermics.2015.08.008
      Kuang, J., Qi, S. H., Wang, S., et al., 2020. Granite Intrusion in Huizhou, Guangdong Province and Its Geothermal Implications. Earth Science, 45(4): 1466-1480 (in Chinese with English abstract).
      Laughlin, A. W., Eddy, A. C., Laney, R., et al., 1983. Geology of the Fenton Hill, New Mexico, Hot Dry Rock Site. Journal of Volcanology and Geothermal Research, 15(1-3): 21-41. https://doi.org/10.1016/0377⁃0273(83)90094⁃X
      Lee, T. J., Song, Y., Park, D. W., et al., 2015. Three Dimensional Geological Model of Pohang EGS Pilot Site, Korea. World Geothermal Congress 2015, International Geothermal Association, Melbourne.
      Li, S. H., Unsworth, M. J., Booker, J. R., et al., 2003. Partial Melt or Aqueous Fluid in the Mid⁃Crust of Southern Tibet? Constraints from INDEPTH Magnetotelluric Data. Geophysical Journal International, 153(2): 289-304. https://doi.org/10.1046/j.1365⁃246x.2003.01850.x
      Li, S. L., Mooney, W. D., Fan, J. C., 2006. Crustal Structure of Mainland China from Deep Seismic Sounding Data. Tectonophysics, 420(1-2): 239-252. https://doi.org/10.1016/j.tecto.2006.01.026
      Li, Y., 2017. Preliminary Study on EGS Geothermal Resources Evaluation and Exploration in the Songliao Basin (Dissertation). Jilin University, Changchun (in Chinese with English abstract).
      Lin, W. J., Liu, Z. M., Ma, F., et al., 2012. An Estimation of HDR Resources in China's Mainland. Acta Geoscientica Sinica, 33(5): 807-811 (in Chinese with English abstract).
      Liu, D. M., Wei, M. H., Sun, M. X., et al., 2022. Classification and Determination of Thermal Control Structural System of Hot Dry Rock. Earth Science, 47(10): 3723-3735 (in Chinese with English abstract).
      Liu, G. X., Zhang, Z. H., Han, J. T., et al., 2006. Features of the Electric Structure of the Lithosphere beneath the Hinggan⁃Inner Mongolia and Jilin⁃Heilongjiang Regions. Geology in China, 33(4): 824-831 (in Chinese with English abstract). doi: 10.3969/j.issn.1000-3657.2006.04.012
      Liu, H. F., Niu, F. L., 2011. Receiver Function Study of the Crustal Structure of Northeast China: Seismic Evidence for a Mantle Upwelling beneath the Eastern Flank of the Songliao Basin and the Changbaishan Region. Earthquake Science, 24(1): 27-33. https://doi.org/10.1007/s11589⁃011⁃0766⁃6
      Liu, X. H., Jiangguo, J. M., 2018. 7 018 m! Write Chinese Wisdom Classics in Depth on the Earth. China Mining News, Beijing (in Chinese).
      Lou, H., Min, L. F., Huang, L., et al., 2014. Study on Potential of Geothermal Resources of Hot Dry Rock in Songliao Basin. Conservation and Utilization of Mineral Resources, (1): 10-14 (in Chinese with English abstract).
      Lu, Z. X., Jiang, D. L., Bai, Y., et al., 2005. Exploration and Research on the Structure of the Crust and Upper Mantlein Northeast China. Seismological Research of Northeast China, 21(1): 1-8 (in Chinese with English abstract). doi: 10.3969/j.issn.1674-8565.2005.01.001
      Lu, Z. X., Xia, H. K., 1993. Geoscience Transect from Dong Ujimqinqi, Nei Mongol, to Donggou, Liaoning, China. Chinese Journal of Geophysics, 36(6): 765-772 (in Chinese with English abstract).
      Lund, J. W., Toth, A. N., 2021. Direct Utilization of Geothermal Energy 2020 Worldwide Review. Geothermics, 90: 101915. https://doi.org/10.1016/j.geothermics.2020.101915
      Lü, Z. W., Sun, S. J., 1996. Wudalianchi Volcano and Cold Spring. Seismological and Geomangnetic Observation and Research, 17(6): 75-79 (in Chinese with English abstract).
      Ma, F., Sun, H. L., Lin, W. J., et al., 2015. Target Site Selection and Index Matrix Evaluation of EGS Trial Project in China. Science & Technology Review, 33(8): 41-47 (in Chinese with English abstract).
      Ma, X. Y., Liu, C. Q., Liu, G. D., 1991. Xiangshui (Jiangsu Province) to Mandal (Nei Monggol) Geoscience Transect. Acta Geological Sinica, 65(3): 199-215 (in Chinese with English abstract).
      MIT, 2006. The Future of Geothermal Energy⁃Impact of Enhanced Geothermal Systems (EGS) on the United States in the 21st Century. Massachusetts Institute of Technology, Boston.
      Niu, X., Lu, Z. X., 1998. Deep and Shallow Tectonic Features of Luyang Lishu Geoscience Transect and Relation between Them and Seismic Activity. Seismological Research of Northeast China, 14(2): 67-74 (in Chinese with English abstract).
      Pang, J. M., Pang, Z. H., Lv, M., et al., 2018. Geochemical and Isotopic Characteristics of Fluids in the Niutuozhen Geothermal Field, North China. Environmental Earth Sciences, 77(1): 12. https://doi.org/10.1007/s12665⁃017⁃7171⁃y
      Pang, Z. H., Luo, J., Cheng, Y. Z., et al., 2020. Evaluation of Geological Conditions for the Development of Deep Geothermal Energy in China. Earth Science Frontiers, 27(1): 134-151 (in Chinese with English abstract).
      Qiu, G. G., Pei, F. G., Fang, H., et al., 2014. Analysis of Magma Chamber at the Tianchi Volcano Area in Changbai Mountain. Chinese Journal of Geophysics, 57(10): 3466-3477 (in Chinese with English abstract).
      Qu, X. J., Yang, L. W., Xue, X., et al., 2017. Prediction of the Bottom Hole Geotemperature, Formation Pressure and Formation Fracture Pressure of the Continental Scientific Drilling of Cretaceous Songliao Basin (SK2). Earth Science Frontiers, 24(1): 257-264 (in Chinese with English abstract).
      Santos, F., Mateus, A., Almeida, E. P., et al., 2002. Are Some of the Deep Crustal Conductive Features Found in SW Iberia Caused by Graphite? Earth and Planetary Science Letters, 201(2): 353-367. https://doi.org/10.1016/S0012⁃821X(02)00721⁃5
      Shi, L., 2004. Study of the Tectonic⁃thermal Evolution of the Songliao Basin and Quantitative Assessment of Its Geothermal Resource: A Case Study on the Dumeng District (Dissertation). Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou (in Chinese with English abstract).
      Shi, L., Li, Z. A., Shi, S. M., 2004. Geothermal Reservoir⁃Forming and Geothermal Resources Appraisal of Dumeng Area in Songliao Basin. Petroleum Geology & Oilfield Development in Daqing, 23(3): 26-28, 90 (in Chinese with English abstract). doi: 10.3969/j.issn.1000-3754.2004.03.010
      Shi, S. L., Xu, C. F., Wang, J. J., et al., 1991. Study on Electric Conductivity of the Deep Earth along the Yixian, Liaoning, to Dong⁃Ujimqin, Nei Mongol from Profile. Seismology and Geology, 13(2): 115-125 (in Chinese with English abstract).
      Shi, S. M., Sun, X. J., Yu, Q. H., 1998. Geotemperature Field Characterastics in Lindian Region of Songliao Basin. Journal of Daqing Petroleum Institute, 22(4): 77-79, 102-103 (in Chinese with English abstract).
      Shi, S. M., Zhu, H. L., Liang, Y. J., et al., 2004. Establishment and Application of Quantitative Appraisal System for Geothermal Resources in Sedimentary Basin. Journal of Daqing Petroleum Institute, 28(5): 4-6, 9 (in Chinese with English abstract).
      Song, Y., Lee, T. J., Jeon, J., et al., 2015. Background and Progress of the Korean EGS Pilot Project. World Geothermal Congress 2015, International Geothermal Association, Melbourne.
      Su, Z., Wang, X. X., Hu, J., et al., 2014. The Site Selection for Enhanced Geothermal System in China. Progress in Geophysics, 29(1): 386-391 (in Chinese with English abstract).
      Sun, G. Q., Bao, Y., Zhao, F. H., et al., 2020. SVM Application in Lithology Prediction of C⁃P Strata in Northern Songliao Basin. SPG/SEG Nanjing 2020 International Geophysical Conference, Nanjing (in Chinese).
      Tao, K., Niu, F. L., Ning, J. Y., et al., 2014. Crustal Structure Beneath NE China Imaged by NECESSArray Receiver Function Data. Earth and Planetary Science Letters, 398: 48-57. https://doi.org/10.1016/j.epsl.2014.04.043
      Tian, Y., Liu, C., Feng, X., 2011. P⁃Wave Velocity Structure of Crust and Upper Mantle in Northeast China and Its Control on the Formation of Mineral and Energy. Chinese Journal of Geophysics, 54(2): 407-414 (in Chinese with English abstract).
      Tong, W., Mu, Z. G., Liu, S. B., 1990. The Late⁃Cenozoic Volcanoes and Active High⁃Temperature Hydrothermal Systems in China. Chinese Journal of Geophysics, 33(3): 329-335 (in Chinese with English abstract).
      Wang, G. L., Liu, Y. G., Zhu, X., et al., 2020. The Status and Development Trend of Geothermal Resources in China. Earth Science Frontiers, 27(1): 1-9 (in Chinese with English abstract).
      Wang, J. Y., Hu, S. B., Pang, Z. H., et al., 2012. Estimate of Geothermal Resources Potential for Hot Dry Rock in the Continental Area of China. Science & Technology Review, 30(32): 25-31 (in Chinese with English abstract).
      Wang, J. Y., Huang, S. P., 1990. Compilation of Heat Flow Data in the China Continental Area (2nd Edition). Seismology and Geology, 4: 351-363, 366 (in Chinese with English abstract).
      Wang, J. Y., Wang, J. A., Wang, Y. L., et al., 1985. Geothermal Survey in the Liaohe Basin, North China. Chinese Science Bulletin, 30(13): 1008-1010 (in Chinese with English abstract). doi: 10.1360/csb1985-30-13-1008
      Wang, J. Y., Wang, J. A., Wang, Y. L., et al., 1986. Terrestrial Heat Flow in Lower Liaohe Basin, North China. Chinese Journal of Geology, 21(1): 16-29 (in Chinese with English abstract).
      Wang, J., Li, C. F., 2018. Curie Point Depths in Northeast China and Their Geothermal Implications for the Songliao Basin. Journal of Asian Earth Sciences, 163: 177-193. https://doi.org/10.1016/j.jseaes.2018.05.026
      Wang, X. K., Qiu, S. W., Song, C. C., et al., 1999. Cenozoic Volcanism and Geothermal Resources in Northeast China. Geological Review, 45(S1): 190-195 (in Chinese with English abstract).
      Wang, X. K., Qiu, S. W., Song, C. C., et al., 2001. Cenozoic Volcanism and Geothermal Resources in Northeast China. Chinese Geographical Science, 11(2): 150-154. https://doi.org/10.1007/s11769⁃001⁃0035⁃z
      Wang, Y. X., Wang, J. Y., Hu, S. B., 2003. Thermal History and Tectono Thermal Evolution of Eastern Depression, the Liaohe Basin. Scientia Geologica Sinica, 38(2): 214-220 (in Chinese with English abstract).
      Wei, Z. G., Chen, L, 2012. Regional Differences in Crustal Structure beneath Northeastern China and Northern North China Craton: Constraints from Crustal Thickness and Vp/Vs Ratio. Chinese Journal of Geophysics, 55(11): 3601-3614 (in Chinese with English abstract).
      Wen, H. J., Shi, S. M., Sun, X. J., 2011. Recognition and Zonation of Effective Geothermal Reservoir in Songliao Basin. Science Technology and Engineering, 11(6): 1322-1324 (in Chinese with English abstract). doi: 10.3969/j.issn.1671-1815.2011.06.036
      Wu, H. Y., Lin, T. F., Bai, Y. F., et al., 2019. Analyses of the Mudstone (Shale) Oil Exploration Potential in North Songliao Basin. Petroleum Geology & Oilfield Development in Daqing, 38(5): 78-86 (in Chinese with English abstract).
      Wu, Q. F., 1991. The Geothermal Field in Songliao Basin. Journal of Seismological Research, 14(1): 31-40 (in Chinese with English abstract). http://www.cnki.com.cn/Article/CJFDTotal-ZDDY199100009.htm
      Wu, Q., Tu, K., Xu, S. H., et al., 2020. Discuss on the Optimization of Precise Allocation of Energy Supply and Consumption in China. Energy of China, 42(5): 4-7, 19 (in Chinese with English abstract). doi: 10.3969/j.issn.1003-2355.2020.05.001
      Wu, X. X., 2014. Research of Geothermal Resources on Hot Dry Rock in North Songliao Basin (Dissertation). Northeast Petroleum University, Daqing (in Chinese with English abstract).
      Xiao, W., Liu, Z., Du, J. H., et al., 2004. Characteristic of Geotherm⁃Geopressure System in Erlian Basin. Xinjiang Petroleum Geology, 25(6): 610-613 (in Chinese with English abstract). doi: 10.3969/j.issn.1001-3873.2004.06.009
      Xiong, S. Q., Yang, H., Ding, Y. Y., et al., 2016. Characteristics of Chinese Continent Curie Point Isotherm. Chinese Journal of Geophysics, 59(10): 3604-3617 (in Chinese with English abstract).
      Xiong, X. S., Gao, R., Zhang, X. Z., et al., 2011. The Moho Depth of North China and Northeast China Revealed by Seismic Detection. Acta Geoscientica Sinica, 32(1): 46-56 (in Chinese with English abstract).
      Xu, J. Q., Bai, C. J., Liu, J. Y., 2008. Geothermal Resource Prognosis Based on Remote Sensing Technology in Changbaishan Volcanic Area. Remote Sensing for Land & Resources, 20(1): 68-71 (in Chinese with English abstract).
      Yang, B. J., Mu, S. M., Jin, X., et al., 1996. Synthesized Study on the Geophysics of Manzhouli⁃Suifenhe Geoscience Transect, China. Chinese Journal of Geophysics, 39(6): 772-782 (in Chinese with English abstract).
      Yang, J. G., Li, S. C., Yao, Y. L., et al., 2020. Significant Breakthrough in the Continental Shale Oil Survey in Northern Songliao Basin. Geology and Resources, 29(3): 300 (in Chinese with English abstract). doi: 10.3969/j.issn.1671-1947.2020.03.015
      Zhang, C., Zhang, S. S., Li, S. T., et al., 2018. Geothermal Characteristics of the Qiabuqia Geothermal Area in the Gonghe Basin, Northeastern Tibetan Plateau. Chinese Journal of Geophysics, 61(11): 4545-4557 (in Chinese with English abstract).
      Zhang, F. Q., 2007. Early Cretaceous Volcanic Event in the Northern Songliao Basin and Its Geodynamics (Dissertation). Zhejiang University, Hangzhou (in Chinese with English abstract).
      Zhang, R. H., Wu, J. X., Zhang, W. X., 1991. Terrestrial Heat Flow and Thermal Structure of the Lithosphere in South Liaoning. Earthquake Research in China, 7(3): 11-24 (in Chinese with English abstract).
      Zhang, S. Q., Li, X. F., Song, J., et al., 2021. Analysis on Geophysical Evidence for Existence of Partial Melting Layer in Crust and Regional Heat Source Mechanism for Hot Dry Rock Resources of Gonghe Basin. Earth Science, 46(4): 1416-1436 (in Chinese with English abstract).
      Zhang, X. Z., Zhou, J. B., Chi, X. G., et al., 2008. Late Paleozoic Tectonic⁃Sedimentation and Petroleum Resources in Northeastern China. Journal of Jilin University (Earth Science Edition), 38(5): 719-725 (in Chinese with English abstract).
      Zhang, Y., 2016. The Formation Mechanism and Development Potential of Hot Dry Rock: A Case Study of the Songliao Basin (Dissertation). Chang'an University, Xi'an (in Chinese with English abstract).
      Zhao, X. Y., Zeng, Z. F., Wu, Z. W., et al., 2015. Delineating the Area of HDR in Songliao Basin Using Geophysical Methods. Progress in Geophysics, 30(6): 2863-2869 (in Chinese with English abstract).
      Zhu, H. L., 2011. Research on the Sedimentary Geothermal Resources in North Songliao Basin (Dissertation). Northeast Petroleum University, Daqing (in Chinese with English abstract).
      白登海, 张丽, 孔祥儒, 1993. 内蒙古东部古生代块体碰撞区的大地电磁测深研究: Ⅱ. 二维解释. 地球物理学报, 36(6): 773-783. https://www.cnki.com.cn/Article/CJFDTOTAL-DQWX199306010.htm
      鲍新华, 张宇, 李野, 等, 2017. 松辽盆地增强型地热系统开发选区评价. 吉林大学学报(地球科学版), 47(2): 564-572. https://www.cnki.com.cn/Article/CJFDTOTAL-CCDZ201702021.htm
      崔军平, 2004. 海拉尔盆地热演化史与油气成藏史研究(硕士学位论文). 西安: 西北大学.
      符伟, 侯贺晟, 高锐, 等, 2019. "松科二井"邻域岩石圈精细结构特征及动力学环境: 深地震反射剖面的揭示. 地球物理学报, 62(4): 1349-1361. https://www.cnki.com.cn/Article/CJFDTOTAL-DQWX201904014.htm
      付晓飞, 沙威, 王磊, 等, 2010. 松辽盆地幔源成因CO2气藏分布规律及控制因素. 吉林大学学报(地球科学版), 40(2): 253-263. https://www.cnki.com.cn/Article/CJFDTOTAL-CCDZ201002003.htm
      韩湘君, 金旭, 2002. 中国东北地区地热资源及热结构分析. 地质与勘探, 38(1): 74-76. doi: 10.3969/j.issn.0495-5331.2002.01.019
      姜光政, 高堋, 饶松, 等, 2016. 中国大陆地区大地热流数据汇编(第四版). 地球物理学报, 59(8): 2892-2910.
      金旭, 江原幸雄, 许惠平, 1995. 中国满洲里‒绥芬河热流断面. 科学通报, 40(2): 161-163. doi: 10.3321/j.issn:0023-074X.1995.02.019
      旷健, 祁士华, 王帅, 等, 2020. 广东惠州花岗岩体及其地热意义. 地球科学, 45(4): 1466-1480. doi: 10.3799/dqkx.2019.128
      李野, 2017. 松辽盆地EGS地热资源评价及勘察开发选区初步研究(硕士学位论文). 长春: 吉林大学.
      蔺文静, 刘志明, 马峰, 等, 2012. 我国陆区干热岩资源潜力估算. 地球学报, 33(5): 807-811. https://www.cnki.com.cn/Article/CJFDTOTAL-DQXB201205018.htm
      刘德民, 韦梅华, 孙明行, 等, 2022. 干热岩控热构造系统厘定与类型划分. 地球科学, 47(10): 3723-3735. doi: 10.3799/dqkx.2022.058
      刘国兴, 张志厚, 韩江涛, 等, 2006. 兴蒙、吉黑地区岩石圈电性结构特征. 中国地质, 33(4): 824-831. doi: 10.3969/j.issn.1000-3657.2006.04.012
      刘晓慧, 蒋郭吉玛, 2018. 7018米!在地球纵深书写中国智慧经典. 北京: 中国矿业报.
      娄洪, 闵丽霏, 黄林, 等, 2014. 松辽盆地干热岩地热资源潜力初探. 矿产保护与利用, (1): 10-14. https://www.cnki.com.cn/Article/CJFDTOTAL-KCBH201401003.htm
      卢造勋, 姜德禄, 白云, 等, 2005. 东北地区地壳上地幔结构的探测与研究. 东北地震研究, 21(1): 1-8. https://www.cnki.com.cn/Article/CJFDTOTAL-DDYJ200501001.htm
      卢造勋, 夏怀宽, 1993. 内蒙古东乌珠穆沁旗‒辽宁东沟地学断面. 地球物理学报, 36(6): 765-772. https://www.cnki.com.cn/Article/CJFDTOTAL-DQWX199306009.htm
      吕宗文, 孙盛杰, 1996. 五大连池火山与冷泉. 地震地磁观测与研究, 17(6): 75-79. https://www.cnki.com.cn/Article/CJFDTOTAL-DZGJ606.010.htm
      马峰, 孙红丽, 蔺文静, 等, 2015. 中国EGS示范工程靶区选址与指标矩阵评价. 科技导报, 33(8): 41-47. https://www.cnki.com.cn/Article/CJFDTOTAL-KJDB201508019.htm
      马杏垣, 刘昌铨, 刘国栋, 1991. 江苏响水至内蒙古满都拉地学断面. 地质学报, 65(3): 199-215. https://www.cnki.com.cn/Article/CJFDTOTAL-DZXE199103000.htm
      牛雪, 卢造勋, 1998. 闾阳‒梨树断面深、浅部构造特征及其与地震活动的关系. 东北地震研究, 14(2): 67-74. https://www.cnki.com.cn/Article/CJFDTOTAL-DDYJ802.010.htm
      庞忠和, 罗霁, 程远志, 等, 2020. 中国深层地热能开采的地质条件评价. 地学前缘, 27(1): 134-151. https://www.cnki.com.cn/Article/CJFDTOTAL-DXQY202001018.htm
      仇根根, 裴发根, 方慧, 等, 2014. 长白山天池火山岩浆系统分析. 地球物理学报, 57(10): 3466-3477. https://www.cnki.com.cn/Article/CJFDTOTAL-DQWX201410032.htm
      瞿雪姣, 杨立伟, 薛璇, 等, 2017. 松辽盆地白垩系大陆科学钻探松科2井: 井底温度、地层压力预测. 地学前缘, 24(1): 257-264. https://www.cnki.com.cn/Article/CJFDTOTAL-DXQY201701022.htm
      施龙, 2004. 松辽盆地构造热演化及地热资源定量评价研究: 以杜蒙地区为例(博士学位论文). 广州: 中国科学院广州地球化学研究所.
      施龙, 李自安, 施尚明, 2004. 松辽盆地杜蒙地区地热田的形成及资源量. 大庆石油地质与开发, 23(3): 26-28, 90. https://www.cnki.com.cn/Article/CJFDTOTAL-DQSK200403010.htm
      史书林, 徐常芳, 王继军, 等, 1991. 辽宁义县‒内蒙古东乌珠穆沁旗剖面深部电性研究. 地震地质, 13(2): 115-125. https://www.cnki.com.cn/Article/CJFDTOTAL-DZDZ199102002.htm
      施尚明, 孙小洁, 于清华, 1998. 松辽盆地林甸地区地温场特征. 大庆石油学院学报, 22(4): 77-79, 102-103. https://www.cnki.com.cn/Article/CJFDTOTAL-DQSY804.023.htm
      施尚明, 朱焕来, 梁玉杰, 等, 2004. 沉积盆地型地热水资源定量评价体系的建立及应用. 大庆石油学院学报, 28(5): 4-6, 9. https://www.cnki.com.cn/Article/CJFDTOTAL-DQSY200405002.htm
      苏正, 王晓星, 胡剑, 等, 2014. 我国增强型地热系统选址问题探讨. 地球物理学进展, 29(1): 386-391. https://www.cnki.com.cn/Article/CJFDTOTAL-DQWJ201401055.htm
      孙国庆, 包怡, 赵福海, 等, 2020. 支持向量机在松辽盆地北部C⁃P地层岩性预测中的应用. 南京: SPG/SEG南京2020年国际地球物理会议.
      田有, 刘财, 冯晅, 等, 2011. 中国东北地区地壳、上地幔速度结构及其对矿产能源形成的控制作用. 地球物理学报, 54(2): 407-414. https://www.cnki.com.cn/Article/CJFDTOTAL-DQWX201102019.htm
      佟伟, 穆治国, 刘时彬, 1990. 中国晚新生代火山和现代高温水热系统. 地球物理学报, 33(3): 329-335. https://www.cnki.com.cn/Article/CJFDTOTAL-DQWX199003008.htm
      王贵玲, 刘彦广, 朱喜, 等, 2020. 中国地热资源现状及发展趋势. 地学前缘, 27(1): 1-9. https://www.cnki.com.cn/Article/CJFDTOTAL-DXQY202001002.htm
      汪集旸, 胡圣标, 庞忠和, 等, 2012. 中国大陆干热岩地热资源潜力评估. 科技导报, 30(32): 25-31. https://www.cnki.com.cn/Article/CJFDTOTAL-KJDB201232017.htm
      汪集旸, 黄少鹏, 1990. 中国大陆地区大地热流数据汇编(第二版). 地震地质, 4: 351-363, 366. https://www.cnki.com.cn/Article/CJFDTOTAL-DZDZ199004010.htm
      汪集旸, 汪缉安, 王永玲, 等, 1985. 辽河盆地地热测量. 科学通报, 30(13): 1008-1010. https://www.cnki.com.cn/Article/CJFDTOTAL-KXTB198513013.htm
      汪集旸, 汪缉安, 王永玲, 等, 1986. 下辽河盆地大地热流. 地质科学, 21(1): 16-29. https://www.cnki.com.cn/Article/CJFDTOTAL-DZKX198601002.htm
      王锡魁, 裘善文, 宋长春, 等, 1999. 中国东北新生代火山活动与地热资源. 地质论评, 45(S1): 190-195. https://www.cnki.com.cn/Article/CJFDTOTAL-DZLP1999S1026.htm
      王永新, 汪集旸, 胡圣标, 2003. 辽河盆地东部凹陷热历史及构造—热演化特征. 地质科学, 38(2): 214-220. https://www.cnki.com.cn/Article/CJFDTOTAL-DZKX200302008.htm
      危自根, 陈凌, 2012. 东北地区至华北北缘地壳结构的区域差异: 地壳厚度与波速比的联合约束. 地球物理学报, 55(11): 3601-3614. https://www.cnki.com.cn/Article/CJFDTOTAL-DQWX201211010.htm
      文慧俭, 施尚明, 孙小洁, 2011. 松辽盆地有效热储层的识别与划分技术. 科学技术与工程, 11(6): 1322-1324. https://www.cnki.com.cn/Article/CJFDTOTAL-KXJS201106038.htm
      吴河勇, 林铁锋, 白云风, 等, 2019. 松辽盆地北部泥(页)岩油勘探潜力分析. 大庆石油地质与开发, 38(5): 78-86. https://www.cnki.com.cn/Article/CJFDTOTAL-DQSK201905011.htm
      吴乾蕃, 1991. 松辽盆地地热场. 地震研究, 14(1): 31-40. https://www.cnki.com.cn/Article/CJFDTOTAL-DZYJ199101005.htm
      武强, 涂坤, 徐生恒, 等, 2020. 我国能源供给与消费优化精准配置探讨: 以浅层地热能与建筑物供暖制冷配置为例. 中国能源, 42(5): 4-7, 19. https://www.cnki.com.cn/Article/CJFDTOTAL-ZGLN202005002.htm
      伍小雄, 2014. 松辽盆地北部干热岩地热资源研究(博士学位论文). 大庆: 东北石油大学.
      肖伟, 刘震, 杜金虎, 易士威, 2004. 二连盆地温压系统特征. 新疆石油地质, 25(6): 610-613. https://www.cnki.com.cn/Article/CJFDTOTAL-XJSD200406008.htm
      熊盛青, 杨海, 丁燕云, 等, 2016. 中国陆域居里等温面深度特征. 地球物理学报, 59(10): 3604-3617. https://www.cnki.com.cn/Article/CJFDTOTAL-DQWX201610008.htm
      熊小松, 高锐, 张兴洲, 等, 2011. 深地震探测揭示的华北及东北地区莫霍面深度. 地球学报, 32(1): 46-56. https://www.cnki.com.cn/Article/CJFDTOTAL-DQXB201101008.htm
      许军强, 白朝军, 刘嘉宜, 2008. 基于遥感技术的长白山火山区地热预测研究. 国土资源遥感, 20(1): 68-71. https://www.cnki.com.cn/Article/CJFDTOTAL-GTYG200801014.htm
      杨宝俊, 穆石敏, 金旭, 等, 1996. 中国满洲里: 绥芬河地学断面地球物理综合研究. 地球物理学报, 39(6): 772-782. https://www.cnki.com.cn/Article/CJFDTOTAL-DQWX606.006.htm
      杨建国, 李士超, 姚玉来, 等, 2020. 松辽盆地北部陆相页岩油调查取得重大突破. 地质与资源, 29(3): 300. https://www.cnki.com.cn/Article/CJFDTOTAL-GJSD202003015.htm
      张超, 张盛生, 李胜涛, 等, 2018. 共和盆地恰卜恰地热区现今地热特征. 地球物理学报, 61(11): 4545-4557. https://www.cnki.com.cn/Article/CJFDTOTAL-DQWX201811019.htm
      章凤奇, 2007. 松辽盆地北部早白垩世火山事件与地球动力学(博士学位论文). 杭州: 浙江大学.
      张汝惠, 武冀新, 张晚霞, 1991. 辽宁南部的大地热流及岩石圈热结构. 中国地震, 7(3): 11-24. https://www.cnki.com.cn/Article/CJFDTOTAL-ZGZD199103001.htm
      张森琦, 李旭峰, 宋健, 等, 2021. 共和盆地壳内部分熔融层存在的地球物理证据与干热岩资源区域性热源分析. 地球科学, 46(4): 1416-1436. doi: 10.3799/dqkx.2020.094
      张兴洲, 周建波, 迟效国, 等, 2008. 东北地区晚古生代构造‒沉积特征与油气资源. 吉林大学学报(地球科学版), 38(5): 719-725. https://www.cnki.com.cn/Article/CJFDTOTAL-CCDZ200805000.htm
      张杨, 2016. 干热岩形成机理及开发潜力研究: 以松辽盆地为例(硕士学位论文). 西安: 长安大学.
      赵雪宇, 曾昭发, 吴真玮, 等, 2015. 利用地球物理方法圈定松辽盆地干热岩靶区. 地球物理学进展, 30(6): 2863-2869. https://www.cnki.com.cn/Article/CJFDTOTAL-DQWJ201506055.htm
      朱焕来, 2011. 松辽盆地北部沉积盆地型地热资源研究(博士学位论文). 大庆: 东北石油大学.
    • 加载中

    Catalog

      通讯作者: 陈斌, bchen63@163.com
      • 1. 

        沈阳化工大学材料科学与工程学院 沈阳 110142

      1. 本站搜索
      2. 百度学术搜索
      3. 万方数据库搜索
      4. CNKI搜索

      Figures(12)  / Tables(4)

      Article views (913) PDF downloads(103) Cited by()
      Proportional views

      /

      DownLoad:  Full-Size Img  PowerPoint
      Return
      Return