Citation: | WANG Zhiheng, LIANG Yongping, TANG Chunlei, SHEN Haoyong, ZHAO Chunhong, GUO FangFang, XIE Hao, ZHAO Yi. Ecological restoration pattern and quantitative evaluation of recirculation measures for northern discontinuous karst spring: A case study of Jinci Spring in Taiyuan City, Shanxi Province[J]. GEOLOGY IN CHINA, 2020, 47(6): 1726-1738. DOI: 10.12029/gc20200610 |
Karst spring is the main natural discharge form of karst groundwater in northern China and is an important natural resource with the functions of water supply,tourism and ecological environment. Nearly 30% of karst springs have been dried up,influenced by natural factors,coal mining,especially by human beings'large-scale development and utilization of karst groundwater since the last century. The dried-up springs also include some world-famous karst springs. Since the 17th National Congress of the Communist Party of China (CPC),local governments have actively responded to the call of the CPC Central Committee and the State Council to strengthen ecological civilization construction,and hence ecological restoration projects have been initiated for the reflow of some important karst springs. Based on the structural mode and genesis of the karst springs in northern China,this paper proposes the spring reflow pattern,which includes the following measures:regulating the water flow of the leakage section by using the water storage of the upstream reservoir,implementing artificial supplementary projects in the seepage section of the river,closing the wells in karst groundwater strong runoff zones and drainage areas,blocking artesian wells downstream of the spring water outlet,monitoring drainage in coal mines under pressure,and conducting afforestation measures in recharge zones. Taking Jinci spring in Taiyuan of Shanxi Province as an example and based on the quantitative optimization evaluation of the effects of these reflow measures,it is concluded that raising the storage level of the Fenhe Second Reservoir to the design elevation,closing the drainage well of Baijiazhuang coal mine in the strong runoff zone of karst groundwater to reduce water pressure,and plugging and disposing of artesian well downstream of spring outlet seem to be economically feasible and effective measures in the near future. Finally,by using the numerical model of spring groundwater,it is predicted that,after the implementation of these measures,Jinci spring water is expected to reflow in about two years. The results can provide demonstration and reference for other karst springs of the same type in northern China.
Chai Junfang. 2011. Discussion on the development and protection of Huo Spring karst groundwater[J]. Shanxi Water Resources, 27(08):15-16(in Chinese).
|
Chen Junfeng, Li Xiubin. 2001. The impact of forest change on watershed hydrology-Discussing some controversies on forest hydrology[J]. Journal of Natural Resources 15(5):475-478 (in Chinese with English abstract).
|
Chen Xiaohui. 1989. The leakage of Yang Maowan reservoir and the re-flow of Long Yansi spring[J]. Hydrogeology and Engineering Geology, (1):48-52 (in Chinese).
|
Dang Yuejun. 2016. Analysis of Leakage in Gujiao Reach of Fenhe River in Jinci Spring Basin[J]. Journal of China Hydrology, 36(2):62-66 (in Chinese with English abstract).
|
Gao Bo. 2002. Causes of flow rate decrease of Guozhuang Spring and countermeasures[J]. Water Resources Protection, (1):64-65 (in Chinese). http://www.researchgate.net/publication/288231144_Causes_of_flow_rate_decrease_of_Guozhuang_Spring_and_countermeasures_J
|
Gao Yangyang, Zuo Qiting. 2009. Impact research of vegetation cover change on the total evapo-transpiration in a watershed[J]. Journal of Water Resources & Water Engineering, 20(2):26-31 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-XBSZ200902009.htm
|
Guo Fangfang, Liang Yongping, Wang Zhiheng, Shen Haoyong, Zhao Chunhong. 2018. Attribution of spring fields and calculation of seepage of the second reservoir of Fenhe River in Xishan mountain, Taiyuan, Shanxi Province[J]. Carsologica Sinica, 37(3):228-238 (in Chinese with English abstract).
|
Hu Ziying, Zhou Junju, Zhang Lili, Wei wei, Cao Jianjun. 2018.Climate dry-wet change and drought evolution characteristics of different dry-wet areas in northern China[J]. Acta Ecologica Sinica, 38(6):1908-1919 (in Chinese with English abstract).
|
Jian Yuxiang, Fan Yongping, Sun Rui, Wei Lufeng. 2018. Analysis of groundwater environmental impact and protection measures of Jinci spring water replenishment project[J]. Design of Water Resources & Hydroelectric Engineering, 35(4):20-22 (in Chinese).
|
Jin Xiaomei, Guo Renhong, Xia Wei. 2013. Variation of regional evapotranspiration of Qaidam Basin using MODIS data[J]. Hydrogeology & Engineering Geoloy, 40(6):8-12 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTotal-SWDG201306004.htm
|
Li hui. 2011. Discussion on water resources management in taiyuan water-supply area of Shanxi Wangjiazhai Yellow River Diversion Project (YRDP)[J]. Sci-Tech Information Development &Economy, 21(16):166-169(in Chinese with English abstract). http://www.zhangqiaokeyan.com/academic-journal-cn_science-technology-information-development-economy_thesis/02012299336.html
|
Li Huiyun, Zhang Yongqiang, Wang Bende. 2012. Separating impacts of vegetation change and climate variability on streamflow using hydrological models together with vegetation data[J]. Scientia Sinica Technologica, 42(8):963-971 (in Chinese). doi: 10.1360/ze2012-42-8-963
|
Li Xilin, Wang Laigui, Han Liang. 2008. Study on of the mechanism water-rock interaction of mine water from abandoned mines during infiltration through coal rock[J]. Journal of Water Resources and Water Engineering, 19(5):11-14 (in Chinese with English abstract).
|
Li Yue, Liu Jiahong, Sang Xuefeng, Yuan Fei. 2013. Study on ecowater diversion quantity for clean water restoration of Fenhe River[J], Water Resources and Hydropower Engineering, 44(9):21-25(in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-SJWJ201309007.htm
|
Li Yushan. 2001. Effects of forest on water circle on the Loess Plateau[J]. Journal of Natural Resources, 16(5):420-426 (in Chinese with English abstract).
|
Liang Tengfei, Cheng Jianmei, Zhang Naiyan. 2020. Numerical study on surface water leakage replenishment of the Fenhe 2nd reservoir into the Jinci spring system[J]. Carsologica Sinica, 39 (2):147-153(in Chinese with English abstract).
|
Liang Yongping, Gao Hongbo, Zhang Jianghua, Huo Jianguang, Wang Taoliang. 2005. Preliminary quantitative analysis on the causes of discharge attenuation in Niangziguan spring[J]. Carsologica Sinica, (3):227-231(in Chinese with English abstract).
|
Liang Yongping, Gao Xubo, Zhao Chunhong. 2018. Review characterization, evolution, and environmental issues of karst water systems in Northern China[J]. Hydrogeology Journal, 26:1371-1385. doi: 10.1007/s10040-018-1792-4
|
Liang Yongping, Han Xingrui, Wang Weitai, Zhao Chunhong. 2013.Variations of karst water environmental problems in North China[J]. Carsologica Sinica, 32(1):34-42 (in Chinese with English abstract).
|
Liang Yongping, Shi Donghai, Li Chunji, Wang Weitai, Zhao Chunhong, Li Xiaofeng, Wei Yanhua, Xu Fengwei. 2011. Test and research on the relationship between runoff and leakage on a karst percolation zone[J]. Hydrogeology & Engineering Geology, 38(2):19-26 (in Chinese with English abstract).
|
Liang Yongping, Wang Weitai. 2010. The division and characteristics of karst water systems in Northern China[J]. Acta Geoscientica Sinica, 21(6):860-868 (in Chinese with English abstract).
|
Liang Yongping, Zhang Fawang, Shen Haoyong, Tang Chunlei, Zhao Chunhong, Wang Zhiheng, Hou Hongbin, Ren Jianhui, Guo Fangfang. 2019. Recognition of the critical hydrogeological condition of Jinci Spring and Lancun Spring[J]. Hydrogeology and Engineering Geology, 46(1):11-18 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTotal-SWDG201901002.htm
|
Luan Qinghua, Li Wei, Liu Jiahong, Chu Junying. 2015. Ecological influence and value evaluation of Fenhe River water diversion in order to reflow[J]. Yellow River, 37(5):62-65(in Chinese with English abstract).
|
Ma Teng, Wang Yanxin, Hao Zhenchun. 2001. The cause analysis for the declining discharge of Shen Tou spring and the forecast of its evolution trend[J]. Carsologica Sinica, 20(4):261-267(in Chinese with English abstract).
|
Niu Lei, Chen Li, Jiang Shengguo, Jia Chao. 2014. Study on influence of coal mining on aquifer——A case study on diggings in Jiaozuo[J]. Groundwater, 36(1):45-47 (in Chinese with English abstract).
|
Shen Haoyong, Liang Yongping, Cheng Yanng. 2017. Study on the regionai evapotranspiration over different surface conditions of the Longzici spring drainag[J]. Carsologica Sinica, 36(2):234-241 (in Chinese with English abstract).
|
Wang Guoli, Liang Guohua, Nie Xiangtian. 2007. Research on groundwater management model and its application based on unit pulse saline intrusion response matrix[J]. Journal of Dalian University of Technology, 47(4):589-592(in Chinese with English abstract).
|
Wang Junping. 2015. Analysis and suggestion on flow attenuation of Chengtouhui Spring[J]. Soil and Water Conservation Science and Technology in Shanxi, (3):30-31.
|
Ye Haidong. 2006. Study on the Reasons of the Flow Reduction of the Longzici Karst water and protecting measures[J]. Sci-Tech Information Development & Economy, (15):148-149(in Chinese with English abstract).
|
Yuan Daoxian. 2010. The situation and tasks for northern karst research of our country[J]. Carsologica Sinica, 29(3):219-221 (in Chinese with English abstract).
|
Zhang Xingan. 2004. Study on the leakage of Taoqupo reservoir in Shaanxi Province[J]. Groundwater, 26(2):150-152 (in Chinese).
|
Zhao Weili. 2013. The relationship between Pingquan Spring and Jinci Spring and the possibility analysis on Jinci Spring's Reflow[J]. Shanxi Hydrotechnics, (4):83-89 (in Chinese).
|
Zhou Xiaofeng, Zhao Huixun, Sun Huizhen. 2001. Proper assessment for forest hydrology effect[J]. Journal of Natural Resources 16(5):420-426 (in Chinese with English abstract).
|
柴俊芳. 2011.霍泉岩溶地下水开发及保护对策探讨[J].山西水利, 27(08):15-16.
|
陈军锋, 李秀彬. 2001.森林植被变化对流域水文影响的争论[J].自然资源学报, 15(5):475-478.
|
陈晓晖. 1989.羊毛湾水库渗漏与龙岩寺泉水复现[J].水文地质工程地质, (1):48-52.
|
党跃军.2016.晋祠泉域汾河干流古交段河道渗漏分析研究[J].水文, 36(2):62-66.
|
高波. 2002.郭庄泉流量衰减原因分析及对策[J].水资源保护, (1):64-65.
|
郭芳芳, 梁永平, 王志恒, 申豪勇, 赵春红. 2018.山西太原西山汾河二库的泉域归属及其渗漏量计算[J].中国岩溶, 37(3):228-238.
|
高洋洋, 左其亭. 2009.植被覆盖变化对流域总蒸散发量的影响研究[J].水资源与水工程学报, 20(2):26-31.
|
胡子瑛, 周俊菊, 张利利, 魏伟, 曹建军. 2018.中国北方气候干湿变化及干旱演变特征[J].生态学报, 38(6):1908-1919.
|
菅宇翔, 范永平, 孙瑞, 魏路峰. 2018.晋祠泉补水工程的地下水环境影响及保护措施分析[J].水利水电工程设计, 35(4):20-22.
|
金晓媚, 郭任宏, 夏薇.2013.基于MODIS数据的柴达木盆地区域蒸散量的变化特征[J].水文地质工程地质, 40(6):8-12. http://d.wanfangdata.com.cn/Periodical/swdzgcdz201306002
|
李辉. 2011.试论万家寨引黄工程太原供水区水资源管理[J], 科技情报开发与经济, 21(16):166-169.
|
李慧赟, 张永强, 王本德. 2012.基于遥感叶面积指数的水文模型定量评价植被和气候变化对径流的影响[J].中国科学:技术科学, 42(8):963-971. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=zgkx-ce201208014
|
李喜林, 王来贵, 韩亮. 2008.废弃煤矿矿井水在煤岩体入渗过程中的水岩作用机理研究[J].水资源与水工程学报, 19(5):11-14. http://d.wanfangdata.com.cn/Periodical/xbszyysgc200805003
|
李玉山. 2001.黄土高原森林植被对陆地水循环影响的研究[J].自然资源学报, 16(5):462-430. http://www.cqvip.com/Main/Detail.aspx?id=5472218
|
李悦, 刘家宏, 桑学峰, 袁飞. 2013.汾河清水复流生态水量研究[J].水利水电技术, 44(9):21-25.
|
梁腾飞, 成建梅, 张乃俨. 2020.基于数值模拟的汾河二库对晋祠泉岩溶水系统渗漏补给作用研究[J].中国岩溶, 39(2):147-153.
|
梁永平, 高洪波, 张江华, 霍建光, 王桃良. 2005.娘子关泉流量衰减原因的初步定量化分析[J].中国岩溶, (3):227-231. http://www.cnki.com.cn/Article/CJFDTotal-ZGYR200503010.htm
|
梁永平, 韩行瑞, 王维泰, 赵春红. 2013.中国北方岩溶水变化特征及其环境问题[J].中国岩溶, 32(1):34-42.
|
梁永平, 石东海, 李纯纪, 王维泰, 赵春红, 李晓峰, 魏燕花, 徐峰伟. 2011.岩溶渗漏河段来水量与渗漏量间关系测试研究[J].水文地质工程地质, 38(2):19-26. http://d.wanfangdata.com.cn/Periodical/swdzgcdz201102004
|
梁永平, 王维泰. 2010.中国北方岩溶水系统划分与系统特征[J].地球学报, 21(6):860-868. http://d.wanfangdata.com.cn/Periodical/dqxb201006010
|
梁永平, 张发旺, 申豪勇, 唐春雷, 赵春红, 王志恒, 侯宏冰, 任建会, 郭芳芳. 2019.山西太原晋祠-兰村泉水复流的岩溶水文地质条件新认识[J].水文地质工程地质, 46(1):11-18. http://www.cqvip.com/QK/90596X/20191/7001447104.html
|
栾清华, 李玮, 刘家宏, 褚俊英. 2015.汾河清水复流工程生态影响及价值评价[J], 人民黄河, 37(5):62-65. http://www.cqvip.com/QK/95810X/20155/664769929.html
|
马腾, 王焰新, 郝振纯.2001.神头泉流量衰减原因分析及趋势预测[J].中国岩溶, 20(4):261-267. http://www.cnki.com.cn/Article/CJFDTotal-ZGYR200104004.htm
|
牛磊, 陈立, 江胜国, 贾超. 2014.采煤对地下含水层的影响研究-以河南焦作矿区为例[J].地下水, 36(1):45-47. http://www.cnki.com.cn/Article/CJFDTotal-DXSU201401018.htm
|
申豪勇, 梁永平, 程洋. 2017.龙子祠泉域不同下垫面陆面蒸散量的对比研究[J].中国岩溶, 36(2):234-241. http://www.cnki.com.cn/Article/CJFDTotal-ZGYR201702011.htm
|
王国利, 梁国华, 聂相田. 2007.基于单位脉冲-海水入渗响应矩阵的地下水管理模型及应用[J].大连理工大学学报, 47(4):589-592. http://www.cnki.com.cn/Article/CJFDTotal-DLLG200704024.htm
|
王军平. 2015.城头会泉流量衰减分析与建议[J].山西水土保持科技, (3):30-31. http://d.wanfangdata.com.cn/Periodical/sxstbckj201503012
|
叶海东. 2006.龙子祠泉岩溶水流量衰减原因及防治对策[J].科技情报开发与经济, (15):148-149. http://www.cnki.com.cn/Article/CJFDTotal-KJQB200615089.htm
|
袁道先.2010.我国北方岩溶研究的形势和任务[J].中国岩溶, 29(3):219-221. http://qikan.cqvip.com/Qikan/Article/Detail?id=35570234
|
赵伟丽. 2013.平泉与晋祠泉的关系以及晋祠泉复流的可能性分析[J].山西水利科技, (4):83-89. http://www.cnki.com.cn/Article/CJFDTotal-SXSL201304034.htm
|
张兴安. 2004.陕西省桃曲坡水库库区渗漏问题探析[J].地下水, 26(2):150-152. http://d.wanfangdata.com.cn/Periodical/dixs200402028
|
周晓峰, 赵惠勋, 孙慧珍.2001.正确评价森林水文效应[J].自然资源学报, 16(5):420-426. http://www.cqvip.com/QK/96143X/20015/5472217.html
|
[1] | BAO Shujing, GE Mingna, XU Xingyou, GUO Tianxu, LIN Yanhua, MOU Degang, LIANG Hongbo. Progress and development proposals in the exploration and development of continental shale oil in China[J]. GEOLOGY IN CHINA, 2023, 50(5): 1343-1354. DOI: 10.12029/gc20230105002 |
[2] | MA Bing, JIA Lingxiao, YU Yang, WANG Huan, CHEN Jing, ZHONG Shuai, ZHU Jichang. Geoscience and carbon neutralization: Current status and development direction[J]. GEOLOGY IN CHINA, 2021, 48(2): 347-358. DOI: 10.12029/gc20210201 |
[3] | ZHANG Wei, LIANG Jinqiang, SU Pibo, WANG Lifeng, LIN Lin, HUANG Wei, WEI Jiangong, LIANG Jin. Research progress and prospect of relationship between double bottom simulating reflector and the accumulation of gas hydrates[J]. GEOLOGY IN CHINA, 2020, 47(1): 29-42. DOI: 10.12029/gc20200103 |
[4] | WANG Qiang, YE Mengni, LI Ning, YE Yufeng, DONG Jiaxin. Research progress of numerical simulation models for shale gas reservoirs[J]. GEOLOGY IN CHINA, 2019, 46(6): 1284-1299. DOI: 10.12029/gc20190604 |
[5] | WEI Zhenquan, HE Gaowen, DENG Xiguang, YAO Huiqiang, LIU Yonggang, YANG Yong, REN Jiangbo. The progress in the study and survey of oceanic cobalt-rich crust resources[J]. GEOLOGY IN CHINA, 2017, 44(3): 460-472. DOI: 10.12029/gc20170305 |
[6] | WANG Tong, SHAO Longyi, XIA Yucheng, FU Xuehai, SUN Yuzhuang, SUN Yajun, JU Yiwen, BI Yinli, YU Jingchun, XIE Zhiqing, MA Guodong, WANG Qinwei, ZHOU Jin, JIANG Tao. Major achievements and future research directions of the coal geology in China[J]. GEOLOGY IN CHINA, 2017, 44(2): 242-262. DOI: 10.12029/gc20170203 |
[7] | WANG Deng-hong, WANG Rui-jiang, LI Jian-kang, ZHAO Zhi, YU Yang, DAI Jing-jing, CHEN Zhen-hui, LI De-xian, QU Wen-jun, DENG Mao-chun, FU Xiao-fang, SUN Yan, ZHEN Guo-dong. The progress in the strategic research and survey of rare earth, rare metal and rare-scattered elements mineral resources[J]. GEOLOGY IN CHINA, 2013, 40(2): 361-370. DOI: 10.12029/gc20130201 |
[8] | ZHANG Qi. Adakite research: retrospect and prospect[J]. GEOLOGY IN CHINA, 2008, 35(1): 32-39. DOI: 10.12029/gc20080103 |
[9] | ZHANG Yi-jun. Direction for looking for tin deposits in southern Hunan[J]. GEOLOGY IN CHINA, 2007, 34(6): 1073-1081. DOI: 10.12029/gc20070613 |
[10] | LI Ting-dong. Status and development trend of geological map compilation in the world[J]. GEOLOGY IN CHINA, 2007, 34(2): 206-211. DOI: 10.12029/gc20070202 |
1. |
郝业,向科俊,杨韬. 陕西永陇矿区地质环境承载力评价研究. 能源与环保. 2025(01): 90-95+101 .
![]() | |
2. |
孙莹洁,潘建永,吕永高,朱继良. 县域国土空间“双评价”理论与实践探索——以山西省清徐县为例. 中国地质调查. 2024(04): 140-148 .
![]() | |
3. |
赵翠,覃红亮,罗林,李中华. 岩溶地下河系统污染采用源头治理的原因探讨——以黔中某磷石膏堆场所处地下河系统为例. 环保科技. 2024(06): 20-23+29 .
![]() | |
4. |
刘洪,李文昌,欧阳渊,张景华,张腾蛟,李佑国,黄瀚霄,黄勇,李富,陈敏华,李樋,吴君毅. 基于地质建造的西南山区生态地质编图探索与实践——以邛海—泸山地区为例. 地质学报. 2023(02): 623-638 .
![]() | |
5. |
陈振宇,赵元艺,李小赛,刘冠男,张佳文,李瑞敏. 云南省威信县煤矿资源承载能力评价. 中国地质. 2023(02): 442-458 .
![]() | |
6. |
欧阳渊,刘洪,张景华,唐发伟,张腾蛟,黄勇,黄瀚霄,李富,陈敏华,宋雯洁. 西南山区生态地质调查技术方法研究. 西北地质. 2023(04): 218-242 .
![]() | |
7. |
代力,谭洪旗,周雄. 川西锂矿带资源环境特征与生态地质环境承载力评价. 矿产综合利用. 2023(04): 157-168+173 .
![]() | |
8. |
王毅,陈曦,潘子桐,方志策. 基于变异系数法的县域环境承载力评价. 资源环境与工程. 2023(06): 697-708 .
![]() | |
9. |
李霄,王晓光,何海洋,王长琪,朱巍,蔡贺,陈麟,唐楠. 中俄边境同江—抚远地区地质资源环境承载力评价与功能区划. 地质通报. 2023(12): 2165-2173 .
![]() | |
10. |
邵海,刘东达,王晓峰,殷志强,王轶,邢博,万利勤,安永龙. 自然资源综合调查支撑“双评价”的探索实践——以承德市国家生态文明示范区为例. 矿产勘查. 2022(04): 517-525 .
![]() | |
11. |
张傲,赵信文,甘华阳,孙尧,郑小战,张庆华,刘伟,许汉森,蒙彦,吴盼,曾敏,江拓,顾涛,何军,赵幸悦子,王世昌,黎义勇. 地质调查服务国家重大战略区规划建设探索与实践——以粤港澳大湾区为例. 华南地质. 2022(02): 195-208 .
![]() | |
12. |
贾磊,刘洪,欧阳渊,张伟,窦磊,刘子宁,莫滨,陈恩,张腾蛟. 基于地质建造的南方山地-丘陵区地表基质填图单元划分方案——以珠三角新会—台山地区为例. 西北地质. 2022(04): 140-157 .
![]() | |
13. |
孙超,王昕洲,叶莹莹,刘琼,曹颐,韩冲,王轶. 河北省地下水资源承载能力评价及预警方法研究. 水文地质工程地质. 2022(06): 55-63 .
![]() | |
14. |
李念春,张学强,冯泉霖,徐秋晓,李洪涛,郝杰,吴迪. 基于“承载基础-承载现状-承载潜力”模型的山东省地质环境承载力评价. 西北地质. 2021(01): 222-231 .
![]() | |
15. |
阿丽亚·阿不都克里木. 页岩气开发过程中的水资源水环境风险研究. 能源与节能. 2021(02): 103-105 .
![]() | |
16. |
席茜,丁赞,叶润青,牛瑞卿. 基于FCE-AHP的黄石市地质环境承载力评价. 自然资源学报. 2021(03): 646-658 .
![]() | |
17. |
李稳. 天津海岸带资源环境承载能力评价技术方法研究. 资源信息与工程. 2021(02): 97-99 .
![]() | |
18. |
马诗敏,徐新阳,倪金,张静,郇恒飞. 陆海统筹资源环境承载能力评价体系构建. 地质与资源. 2021(02): 186-192 .
![]() | |
19. |
张杰,李铎,张赟,魏爱华,程鑫. 基于博弈论优化权重的地质环境承载力评价. 科学技术与工程. 2021(20): 8360-8365 .
![]() | |
20. |
宋立东,佟智强,刘浩,宋林旭,高博,韩佳宏. 牡丹江市资源环境承载能力评价. 华东地质. 2021(02): 185-192 .
![]() | |
21. |
宋博,张发旺,杨会峰,刘春雷,孟瑞芳,南天. 基于生态优先的水资源承载力分源评价及应用——以河北保定平原为例. 中国地质. 2021(04): 1156-1165 .
![]() | |
22. |
曹建文,夏日元,唐仲华,赵良杰,王喆,栾崧,王松. 粤港澳大湾区地下水资源特征及开发潜力. 中国地质. 2021(04): 1075-1093 .
![]() | |
23. |
李海涛,凤蔚,王凯霖,赵凯,李刚,张源,李木子,孙璐,陈一超,尤冰. 雄安新区地下水资源概况、特征及可开采潜力. 中国地质. 2021(04): 1112-1126 .
![]() | |
24. |
李帅莹. 辽宁地区水资源承载能力监测预警机制及措施研究. 水利规划与设计. 2021(11): 25-28+80 .
![]() | |
25. |
刘君,侯学周. CFG桩复合地基在高层建筑地基处理中的应用. 矿产勘查. 2021(10): 2127-2131 .
![]() | |
26. |
刘婷,王寒梅,史玉金,王志辉,陈大平. 特大型城市地下空间资源承载能力评价方法探索——以上海市为例. 地质通报. 2021(10): 1609-1616 .
![]() | |
27. |
宋漪. 新会区建筑用花岗岩矿资源承载能力评价. 地下水. 2021(06): 205-208 .
![]() | |
28. |
张亮,冯安生,赵恒勤,刘磊,谭秀民. 基于SWOT分析的区域矿产资源竞争力研究. 地质与勘探. 2020(01): 230-238 .
![]() | |
29. |
王欣宝,李瑞敏,孙超,孟晖,王昕洲,曹颐,王林英,韩冲,赵德刚. 河北省地质资源环境承载能力评价方法. 地质通报. 2020(01): 94-101 .
![]() | |
30. |
魏路,刘建奎,肖永红,刘桂建,康佳. 安徽省地质环境承载能力评价. 地质通报. 2020(01): 102-107 .
![]() | |
31. |
李瑞敏,殷志强,李小磊,刘琼,孟晖,黄道袤,王轶,王龙平,王欣宝,刘建奎,孙超,赵德刚. 资源环境承载协调理论与评价方法. 地质通报. 2020(01): 80-87 .
![]() | |
32. |
陈武,李瑞敏,殷志强,唐佐其,谯文浪,谯常,付勇,刘凌云,孟晖. 贵州乌蒙山毕节市七星关区资源环境承载能力评价. 地质通报. 2020(01): 114-123 .
![]() | |
33. |
王轶,李瑞敏,高萌萌,刘琼,殷志强,李小磊,杨楠. 基于双曲距离协调度模型的地下水资源与经济承载协调关系. 地质通报. 2020(01): 88-93 .
![]() | |
34. |
项广鑫,曾毅,蒋星祥,李慎鹏,张建新. 基于DEA模型的矿产资源承载能力评价——以湖南省资源型县为例. 地质通报. 2020(01): 108-113 .
![]() | |
35. |
唐佐其,李瑞敏,谯文浪,殷志强,刘琼,陈武,赵德刚. 西南岩溶山区地下水资源承载能力评价——以贵州省七星关区为例. 地质通报. 2020(01): 124-130 .
![]() | |
36. |
张丽,李瑞敏,许书刚,李志明,唐鑫,龚亚兵,李小磊,王轶,李春燕,赵德刚. 江苏宜兴市地质资源环境承载能力评价. 地质通报. 2020(01): 131-137 .
![]() | |
37. |
秦先燕,彭苗枝,焦团理,李玉明,李运怀. 基于GIS的环巢湖地区地质环境承载能力评价. 地质与资源. 2020(02): 180-186 .
![]() | |
38. |
王松根,马海波. 基于地质环境承载力评价的地质灾害防灾减灾研究. 甘肃科学学报. 2020(03): 121-124+145 .
![]() | |
39. |
胡元平,李朋,周峰,朱晛亭,刘力,翁茂芝. 武汉市长江新城起步区地质资源环境承载力研究. 资源环境与工程. 2020(02): 224-229 .
![]() | |
40. |
李勇,韩征,李敏. 城市地质资源环境承载力监测预警平台建设思路及关键技术. 城市地质. 2020(03): 239-245 .
![]() | |
41. |
项广鑫,符金豪,曾丽婷,蒋星祥,曾毅. 基于“双评价”的城镇开发边界划定技术——以湘潭县中心城区为例. 自然资源学报. 2020(10): 2401-2414 .
![]() | |
42. |
叶勇,谭博文,宋惠芳. 基于“压力–状态–响应”模型的旅游发展与生态环境耦合协调研究——以云南省为例. 电子科技大学学报(社科版). 2020(06): 55-63 .
![]() | |
43. |
高萌萌,李瑞敏,刘琼,王轶,李小磊. 基于GIS的地下水资源分区研究及承载本底评价. 水文地质工程地质. 2020(06): 184-190 .
![]() | |
44. |
谢海澜,夏雨波,孟庆华,赵长荣,马震. 地质环境承载能力评价中关于地面沉降的评估研究. 地质调查与研究. 2019(02): 104-108 .
![]() |