It can accurately predict and judge the position and properties of the longitudinal profile when employed to borehole geochemical exploration.
应用于地表天然气化探,可预测与判断油气层的横向剖面位置;应用于井中天然气化探,可根据顶空气的轻烃组成和含量上的特征,准确预测与判断天然气层的纵向剖面位置与性质。
borehole electromagnetics , and borehole gravity.
简述了除测井技术以外的井中地球物理技术,包括VSP、井间与单井地震、井中微地震、井中电磁法与井中重力等,介绍了它们的技术特点、主要用途以及当前面临的主要技术难题。
To understand the capability of borehole radar, numerical simulation is used to study the radar signal response in various kinds of geological conditions.
计算了充水裂缝和一种矿体的井中雷达信号响应。
Taking well BC1 of the Bachu Rise in the Tarim Basin and well D6 of the Tabamiao Segment in the Ordos Basin for example, this paper tries to acquire oil and gas geochemical information from available data on oil geology and well geochemical exploration a.
井中油气地球化学勘探技术(简称井中化探)是20世纪90年代初油气勘探领域兴起的一种新技术,在钻井过程中预测、判别油气储层具有独特的优势。
Applied to well geochemical exploration,it is able to accurately forcast the location and nature of oil and gas beds.
运用于井中化探,可取得了良好的应用效果:利用顶空气分析的轻烃的组成和含量上的特征可准确预测与判断油气层的位置与性质。
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