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Scenario Planning for Electromagnetic Surveying

机译:电磁测量的情景规划

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The Multi-Transient ElectroMagnetic (MTEM) technique is used to delineate resistive targets that may correspond to hydrocarbon reservoirs. Prior to actual surveys, feasibility studies are conducted to determine the probable detectability of the target of interest, set in the background resistivity structure where known or postulated. From the 2D model cross-section, resistivity profiles are extracted at positions along a profile. Modelling comprises determining the earth s impulse responses for appropriate source- receiver offsets and these may be varied in the feasibility process. Two methods are then used to assess detectability. One exploits the amplitude of the impulse responses by plotting common offset sections. Shallow offsets illuminate targets near-surface, if they are addressable, whilst longer offsets see deeper. In an alternative method, the arrival time of the peak of the earth s impulse response is used to determine an apparent resistivity. Values may be determined for all offsets at all selected profile positions and the result plotted as a 2D resistivity pseudo-section. Detectable targets are those that can be seen to correspond with the target reservoir of interest. Resolvability of individual targets within a sequence of overlapping stacked reservoirs on land and in marine studies will be addressed.
机译:多瞬态电磁(MTEM)技术用于描绘可对应于烃储层的电阻靶。在实际调查之前,进行可行性研究以确定感兴趣目标的可能可检测性,设置在已知或假设的背景电阻率结构中。从2D模型横截面,电阻率轮廓在沿着轮廓的位置提取。建模包括确定用于适当的源极接收器偏移的地球脉冲响应,并且这些禁止可以在可行性过程中变化。然后使用两种方法来评估可检测性。通过绘制常见的偏移部分来利用脉冲响应的幅度。浅偏移亮起近表面的目标,如果它们是可寻址的,则较长的偏移量看到更深。在替代方法中,地球脉冲响应峰的到达时间用于确定表观电阻率。可以针对所有选择的轮廓位置处的所有偏移确定值,并且结果绘制为2D电阻率伪部分。可检测目标是可以看到与目标储层对应的目标。在土地和海洋研究中的一系列重叠堆叠储层中的个别目标的可解性将得到解决。

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