1) EIP
电激发极化法
2) IP charge method
充电激发极化法
1.
IP charge method is one of the main means of mine geophysical methods with both characteristics of charge and IP method which can be used in the existing projects to maximize the understanding of the underground three dimensional geophysical field and solve geological problem.
充电激发极化法是矿山物探的一种主要方法,其兼有充电法与激发极化法的特点,可利用已有的工程,最大限度地了解地下三度空间地球物理场的分布情况,解决地质问题。
3) induced polarization method
激发极化法
1.
The application of induced polarization method in Dajia gold deposit;
激发极化法在大架金矿床中的应用效果
2.
Groundwater detection in metamorphic rock of Taishan group with applying induced polarization method;
激发极化法探测泰山群变质岩地下水
3.
Application of the induced polarization method to detecting the watershed in the mined out area;
用激发极化法探测煤层采空区积水
4) Induced polarization
激发极化法
1.
Effectiveness of natural field induced polarization for detecting poly-metallic deposits;
天然场激发极化法在多金属矿区的野外试验效果
2.
The application of induced polarization method tothe steadiness research on Liufang dyke in Huainan city;
激发极化法在淮南六方堤稳性检测中的应用
3.
The induced polarization(IP) method is a good choice in prospecting the metal deposits with low electrical resistivity and high polarization resistance.
本文论述了激发极化法在塞钦铜多金属矿勘查找矿中的应用。
5) IP method
激发极化法
1.
The IP method based on the difference in the polarizability and resistivity of rocks has played an important role in the exploration of concealed and deep ore bodies.
结合激发极化法在冀北某铜钼矿勘查中的应用实例,说明在硫化物矿床的勘查中,利用中间梯度装置扫面可以快速地发现并圈定激电异常,利用激电测深可以了解极化体的埋藏深度及空间赋存状态,进而为指导工程验证提供较为充足的依据。
2.
A mass of numerical simulations for resistivity and IP method.
本文首先回顾了电法勘探地形影响问题的研究现状,总结了现有激发极化法的数值模拟方法,简单介绍了ANSYS有限元软件的主要功能,在进行激发极化法数值模拟过程中的主要步骤及其注意的关键问题。
6) Induced Polarization Method
激电极化法
1.
Based on a study of the geological characteristics of Babaoshan copper deposit,this paper emphatically analyzed the application of induced polarization method in prospecting.
在总结矿床地质特征的基础上,重点分析激电极化法在地质找矿中的应用。
补充资料:电激发
分子式:
CAS号:
性质:原子发射光谱分析的激发光源等离子区中的气态物质,由于电子的碰撞引起待测元素的激发发光现象。在火花光源中包括电激发与热激发两个过程。
CAS号:
性质:原子发射光谱分析的激发光源等离子区中的气态物质,由于电子的碰撞引起待测元素的激发发光现象。在火花光源中包括电激发与热激发两个过程。
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