Study on the Optimization of Groundwater Monitoring Network in Key Areas of Jianghan Plain in Hubei Province
-
摘要: 为开展湖北省地下水监测网络的优化部署,在全省地下水流系统划分的基础上,选取江汉平原重点区地下水系统作为研究区,对该系统地下水监测网进行了优化研究。采用地下水动态类型编图法,从水文地质条件的角度为地下水监测井的布置提供了地质依据。克里金插值法能够定量评价系统内地下水等水位线的插值精度,从而评价监测网密度。研究区现有国家地下水监测工程(自然资源部分)监测井77个,根据监测需求选取临界插值误差标准差值为1.3,优化后新增监测井30个。优化后的监测网有助于获取研究区更加科学全面的地下水动态信息。
-
关键词:
- 地下水监测优化 /
- 地下水动态类型编图法 /
- 克里金插值法 /
- 监测网密度
Abstract: This paper selects the groundwater system in some key areas of Jianghan plain for the study on the optimization of the groundwater monitoring network based on the classification of groundwater flow system in Hubei Province.The adopted groundwater dynamic type mapping method provides geological basis for the arrangement of groundwater monitoring wells from the hydrogeological perspective,while the Kriging interpolation method quantitatively evaluates the interpolation accuracy of the water level so as to evaluate the density of the monitoring network. 77 monitoring wells attached to the National Groundwater Monitoring Project (natural resources) are in the study area.According to the monitoring requirements,the authors select 1.3 as the deviation of the critical interpolation error,thereby adding 30 new monitoring wells after the optimization.The optimized monitoring network in the research area can help obtain the groundwater dynamic information more scientifically and comprehensively. -
余楚, 张翼龙, 孟瑞芳, 等. 河套平原浅层地下水动态监测网优化设计[J]. 吉林大学学报(地球科学版), 2015, 45(04):1173-1179.
YU C, ZHANG Y L, MENG R F, et al. Optimization Design of the Shallow Groundwater Dynamic Monitoring Network in Hetao plain[J]. Journal of Jilin University(Earth Science Edition), 2015, 45(04):1173-1179.
郭燕莎, 王劲峰, 殷秀兰. 地下水监测网优化方法研究综述[J]. 地理科学进展, 2011, 30(09):1159-1166.
GUO Y S, WANG J F, YIN X L. Review of the Optimization Methods for Groundwater Monitoring Network[J]. Progress in Geography, 2011, 30(09):1159-1166.
朱瑾, 霍传英, 姜越, 等. 乌鲁木齐河流域地下水水位监测网设计[J]. 水文地质工程地质, 2007, (02):8-14.
ZHU J, HUO C Y, JIANG Y, et al. Monitoring of regional groundwater level in Urumqi River Basin[J]. Hydrogeology & Engineering Geology, 2007, (02):8-14.
秦延军, 宋雷鸣, 刘梅侠, 等. 大庆油田西部地区地下水动态监测网优化设计[J]. 水文地质工程地质, 2001, (02):21-25.
QIN Y J, SONG L M, LIU M X, et al. Optimization Design of the Shallow Groundwater Dynamic Monitoring Network in Western Area of Daqing Oilfield[J]. Hydrogeology & Engineering Geology, 2001, (02):21-25.
王亚维. 贵阳市地下水位监测网优化分析[A]. 2018年西南5省、市、区第二次岩石力学与工程学术大会[C].贵阳, 2018.
WANG Y W. Optimization Analysis of groundwater level Monitoring Network in Guiyang City[A]. The second Academic Conference on Rock Mechanics and Engineering of 5 Provinces, Cities and Districts in Southwest China in 2018[C]. Guiyang, 2018.
刘治政. 黄水河流域平原区地下水监测网优化研究[D].泰安:山东农业大学, 2010.
LIU ZZ. Study on Optimizing Groundwater Monitoring Network of Plain in Huang Shui River Basin[D]. Tai'an:Shandong Agricultural University, 2010.
郑王琼. 雷州半岛地下水监测网络优化设计[J]. 安全与环境工程, 2017, 24(01):95-99.
ZHEN W Q. Optimal Design of Groundwater Monitoring Network of Leizhou Peninsula[J]. Safety and Environmental Engineering, 2017, 24(01):95-99.
王力坚, 鱼晓利, 曹新艾, 等. 陕西省地下水动态监测井网优化试验研究[J]. 地下水, 2000, (02):47-49.
WANG L J, YU X L, CAO X A, et al. Experimental study on groundwater dynamic monitoring well pattern optimization in Shaanxi Province[J]. Ground Water, 2000, (02):47-49.
张俊, 尹立河, 侯光才, 等. 区域地下水流理论最新进展——区域地下水流理论、应用与发展国际研讨会综述[J]. 西北地质, 2014, 47(03):200-204.
ZHANG J, YIN L H, HOU G C, et al. A Recent Review of Regional Groundwater Flow Theory-International Symposium on Regional Groundwater Flow Theory, Applications and Future Development[J]. Northwestern Geology, 2014, 47(03):200-204.
周仰效, 李文鹏. 区域地下水位监测网优化设计方法[J]. 水文地质工程地质, 2007, (01):1-9.
ZHOU Y X, LI W P. Design of regional groundwater level monitoring networks[J]. Hydrogeology & Engineering Geology, 2007, (01):1-9.
李阳, 周金龙, 徐东. 我国地下水动态监测网优化布设方法研究综述[J]. 地下水, 2015, 37(02):64-65.
LI Y, ZHOU J L, XU D. A review on the optimal layout of groundwater dynamic monitoring network in China[J]. Ground Water, 2015, 37(02):64-65.
董殿伟, 林沛, 晏婴, 等. 北京平原地下水水位监测网优化[J]. 水文地质工程地质, 2007, (01):10-19.
DONG D W, LIN P, YAN Y, et al. Optimum design of groundwater level monitoring network of Beijing Plain[J]. Hydrogeology & Engineering Geology, 2007, (01):10-19.
王浩, 段磊, 王文科. 秦岭北麓地下水位动态特征与影响因素[J]. 西北地质, 2020, 53(02):280-288.
WANG H, DUAN L, WANG W K. Dynamic Features of Groundwater Level in Northern Qinling and Its Influence Factors[J]. Northwestern Geology, 2020, 53(02):280-288.
刘徽, 邓少平, 孙康. 江汉平原地下水位监测网优化设计[J]. 资源环境与工程, 2014, 28(05):692-696.
LIU H, DEGN S P, SUN K. Optimum Design of Ground-water Level Monitoring Network in Jianghan Basin[J]. Resources Environment & Engineering, 2014, 28(05):692-696.
计量
- 文章访问数: 578
- PDF下载数: 47
- 施引文献: 0