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Detection of High-Potential Oil and Gas Fields Using Normalized Full Gradient of Gravity Anomalies: A Case Study in the Tabas Basin, Eastern Iran

机译:使用归一化重力异常归一化全梯度检测高潜力油气田:以伊朗东部塔巴斯盆地为例

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摘要

The normalized full gradient (NFG) represents the full gradient of the gravity anomaly at a point divided by the average of the full gradient at the same point. The NFG minimum between two maxima in an NFG section or a closed minimum surrounded by closed maxima on an NFG map may indicate density-deficient anomalies closely related to possible oil–gas reservoirs. On a cross-section, closed minima can be used to estimate the depth to centers of possible hydrocarbon reservoirs. The NFG map can also be used to locate oil–gas exploratory wells for estimation of the depth of possible reservoirs. The objective of this paper is to use two and three-dimensional (2D and 3D) NFG on gravity data of the Tabas basin in Yazd province, eastern Iran. A hypothetical model is first considered to explore the NFG characteristics and their relationship with the geometry of the model. The physical properties of the model are then studied to simplify the interpretation of real data. Finally 2D and 3D NFG models are developed for real gravity data to predict the location of any possible high potential oil–gas reservoirs. The results obtained indicate two zones in the northern and central parts of the Tabas basin suitable for hydrocarbon prospecting. However, the favorable zone located in the middle of the basin in which anticline E is detected at a depth of 5–7 km is more important for the purpose of hydrocarbon exploration.
机译:归一化全梯度(NFG)表示某点重力异常的全梯度除以同一点的全梯度的平均值。 NFG剖面中两个最大值之间的NFG最小值或NFG图上被闭合最大值包围的闭合最小值可能表示与可能的油气藏密切相关的密度不足异常。在横截面上,可以使用封闭的最小值来估计可能的碳氢化合物储层中心的深度。 NFG图还可用于定位油气勘探井,以估算可能的储层深度。本文的目的是对伊朗东部亚兹德省塔巴斯盆地的重力数据使用二维和三维(2D和3D)NFG。首先考虑一个假设模型来研究NFG特性及其与模型几何形状的关系。然后研究模型的物理属性,以简化对真实数据的解释。最后,针对实际重力数据开发了2D和3D NFG模型,以预测任何可能的潜在高油气藏的位置。获得的结果表明,塔巴斯盆地北部和中部有两个区域适合进行油气勘探。但是,对于油气勘探而言,位于盆地中部的有利区(在5-7 km的深度处可检测到背斜线E)更为重要。

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