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作 者:冯俊亮[1] 刘廷玺[1] 段利民[1] 段瑞鲁[1] 贾恪[1] 暴路敏[1] 田波 田晶[3] 王兆萄
机构地区:[1]内蒙古农业大学水利与土木建筑工程学院,内蒙古呼和浩特010018 [2]通辽市抗旱服务中心,内蒙古通辽028000 [3]通辽市防汛抗旱物资供应管理站,内蒙古通辽028000
出 处:《水电能源科学》2013年第8期77-80,245,共5页Water Resources and Power
基 金:国家自然科学基金资助重点项目(51139002);国家自然科学基金资助项目(51069005);国家科技部国际合作基金资助项目(2010DFA71460);内蒙古农业大学寒旱区水资源利用创新团队基金资助项目(NDTD2010-6)
摘 要:根据21眼地质勘探孔、水文地质勘探孔及28个地面核磁共振(SNMR)勘探点资料,对比分析了钻孔揭露的含水层厚度与SNMR解译的含水层厚度、钻孔抽水试验所得含水层导水系数与SNMR解译的导水系数的差异,据此绘制出西辽河冲淤积平原潜水含水层厚度与导水系数分布图。结果表明,在SNMR试验噪音较小时SNMR解译的含水层厚度、导水系数与钻孔揭露的含水层厚度及水文地质试验结果吻合较好。利用SNMR技术解译含水层厚度、导水系数并通过少量钻孔及抽水试验予以校正,不仅可以节省大量勘探工作量,而且精度及可行度也较高。According to the data of 21 geological exploration holes, hydrogeologie exploration holes and 28 nuclear magnetic resonance exploration sites, the differences of aquifer thickness obtained by boring and SNMR technique are comparative analysis. And then, the differences of transmissibility coefficient calculated by boring pumping test and SNMR technique are compared and analyzed. Finally, the aquifer thickness and transmissibility coefficient distribution map of the unconfined aquifer in West Liaohe River alluvial--plain are plotted. The results show that when the noise is lower in nuclear magnetic resonance test, aquifer thickness and transmissibility coefficient inversed by SNMR technique are similar to the results of aquifer thickness obtained by boring and hydrogeologic test. Using SNMR technique to infer aquifer thickness and transmissibility coefficient and correcting by combination of fewer boring and pumping test can reduce the workload of exploration and improve the precision and reliability.
关 键 词:钻孔 核磁共振技术 抽水试验 含水层 厚度 导水系数
分 类 号:TV138[水利工程—水力学及河流动力学] P345[天文地球—水文科学]
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