1) depth sounding with apparent resistivity
视电阻率测深
2) resistivity sounding
电阻率测深
1.
Feasibility of dipole equatorial resistivity sounding in tunnel;
坑道内赤道偶极电阻率测深的可行性
2.
Anomalous of large polar distance dipole-dipole resistivity sounding in tunnel;
坑道大极距偶极电阻率测深异常特征
3.
Inversion of GA and least square for resistivity sounding data;
电阻率测深数据的遗传算法和最小二乘法反演
3) deep direction finding resistivity
深侧向视电阻率
4) resistivity/IP sounding
电阻率/激电测深
1.
On the basis of the FEM forward modeling for a point-source on a 2-D structure and with the Sclumberger electrode array featuring large and uneven distributed electrode-spacing considered, a 2D forward modeling has been realized for resistivity/IP sounding of large electrode-spacing by dividing the whole calculation area into 3 zones, i.
在有限元点源二维电阻率正演基础上,针对传统对称四极装置其电极距跨度大且不等间隔分布等特点,提出将整个正演计算区域划分为目标区、观测区和扩展区三个区域,在观测区域先采用等间隔剖分,然后在区域中插入实际电极作为正演计算节点的剖分方式,同时将无穷远边界条件简化技术引入到正演计算中,并结合人机交互与可视化技术实现了大极距电阻率/激电测深的二维正演模拟。
5) DC resistivity sounding
直流电阻率测深
1.
The 2 D inversion is the best method in the interpretation of DC resistivity sounding profiles data owing to its high speed, but the 3 D inversion, by contrast, needs more measured data and more computer time.
直流电阻率测深剖面数据解释最好的方法是二维反演 ,这是由于它反演速度快 ,而三维反演则需要很多的实测数据、很长的计算时间 。
6) resistivity sounding method
电阻率测深法
1.
Combining with two practical examples of the prospecting of coal cave , this paper introduces the field word essentials its effect by using the resistivity sounding method to prospect the underground coal cave.
该文结合两个煤洞勘探工点的实例,阐述电阻率测深法在地下煤洞勘探中的野外工作要点和应用效果。
2.
When the resistance difference between the waterbearing formation and the waterless formation is small, the effectiveness is low using the resistivity sounding method, so the reflection coefficient (K) method is used in the explanation of resistivity sounding ρs value.
应用电阻率测深法能探测红层中的含水构造,但含水红层和非含水红层的电阻率差异较小,导致用电阻率测深法寻找红层地下水时分辨能力和可靠程度均较低,而采用反射系数(K)法解释电测深ρs资料,能提高ρs曲线的解释精度,从而提高了电阻率测深法的分辨能力和可靠程度,具有十分明显的地质效果。
补充资料:电导率(见电阻率)
电导率(见电阻率)
conductivity
d!日nd日O}已电导率(eonduetivity)见电阻率。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条