期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
综合检测技术在桥梁桩基加固中的应用 被引量:2
1
作者 李泽源 付斌 孙国成 《低碳世界》 2015年第27期248-249,共2页
采用树根桩原位托换法处理岩溶地基,加固后高密度电法直观检测灌浆加固效果,通过原位荷载和重型动力触探两种检测手段对复合地基进行联合检测的新思路,确定树根桩与土的荷载比,加固后的复合地基达到要求。工程实践应用表明,三种检... 采用树根桩原位托换法处理岩溶地基,加固后高密度电法直观检测灌浆加固效果,通过原位荷载和重型动力触探两种检测手段对复合地基进行联合检测的新思路,确定树根桩与土的荷载比,加固后的复合地基达到要求。工程实践应用表明,三种检测手段的结合能够快速、有效和准确的进行地基承载力检测。 展开更多
关键词 高密度电测 静载试验 重型触探 荷载比
下载PDF
Testing with high density resistivity method in prevention and cure for mine water disaster and its applied effect 被引量:11
2
作者 张平松 吴健生 刘盛东 《Journal of Coal Science & Engineering(China)》 2007年第2期165-169,共5页
The detecting examples using the high density resistivity method, about the evaluation of containing water characteristic from the floor rock and the height of overburden failure, were given. It expresses that the hig... The detecting examples using the high density resistivity method, about the evaluation of containing water characteristic from the floor rock and the height of overburden failure, were given. It expresses that the high density resistivity method has good effect with strong maneuverability and continuous observing section during the prevention and cure for mine water disaster. At the same time, the article pointed out that the study of space data inversion and dynamic watching technology about the high density resistivity method must be enhanced in the future because of special condition of data collecting in mine. 展开更多
关键词 high density resistivity method water disaster overburden failure
下载PDF
Application of high density resistivity method in accuracy of goaf detection
3
作者 LIU Huiming LI Guangjie DU Lizhi 《Global Geology》 2011年第2期110-114,共5页
Based on the relationship between the diameter and buried depth of goal, the authors establish the forward modeling by Res2dmod and inverse the model by Res2dinv. Thus, three kinds of models are obtained : the model ... Based on the relationship between the diameter and buried depth of goal, the authors establish the forward modeling by Res2dmod and inverse the model by Res2dinv. Thus, three kinds of models are obtained : the model of single resistivity anomalous body, model of double different distance resistivity anomalous body, and model of layered resistivity anomalous body. Using forward and inversion, the image of detection is simulated, and the reliability is proved by comparing with the engineering examples. 展开更多
关键词 high density resistivity method INVERSION GOAF
下载PDF
Application of transient electromagnetic method in tunnel exploration
4
作者 ZHANG Zhenguang SUN Xiaodong WANG Xuegang 《Global Geology》 2017年第1期46-52,共7页
Along with the economic development,large tunnels need to be constructed in many high mountains or complex structure regions,and the design and construction of detailed tunnel exploration become particularly important... Along with the economic development,large tunnels need to be constructed in many high mountains or complex structure regions,and the design and construction of detailed tunnel exploration become particularly important.Transient electromagnetic method( TEM) uses a non-grounded loop or an electrode to send a primary electromagnetic pulse into the ground,and observes spatial and temporal distribution of secondary electromagnetic field,which is widely applied in mineral resource exploration,engineering geology,etc.The application of TEM in the tunnel construction of Kaiyuan Temple is researched in this study.The smoke loop inversion is adopted for inverting the transient electromagnetic data.The drilling data and high density resistivity method data are combined for comparison.The obtained inversion result greatly coincides with the actual conditions.Therefore,the geophysical prospecting basis can be provided for the division of stratum,delineation of geological structure,and design and construction of tunnel pavement.By virtue of TEM,drilling data and high density resistivity method,the tunnel construction of Kaiyuan Temple has obtained satisfactory results. 展开更多
关键词 transient electromagnetic tunnel design and construction smoke loop inversion
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部