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Estimating petrophysical parameters and invasion profile using joint induction and pressure data inversion approach

机译:使用联合感应和压力数据反演方法估算岩石物理参数和侵入剖面

摘要

Methods and related systems are described relating to an inversion approach for interpreting the geophysical electromagnetic data. The inversion can be constrained by using a multiphase fluid flow simulator (incorporating pressure data if available) which simulates the fluid flow process and calculates the spatial distribution of the water saturation and the salt concentration, which are in turn transformed into the formation conductivity using a resistivity-saturation formula. In this way, the inverted invasion profile is consistent with the fluid flow physics and moreover accounts for gravity segregation effects. Jointly with the pressure data, the inversion estimates a parametric one-dimensional distribution of permeability and porosity. The fluid flow volume is directly inverted from the fluid-flow-constrained inversion of the electromagnetic data.
机译:描述了与用于解释地球物理电磁数据的反演方法有关的方法和相关系统。可以通过使用多相流体​​流动模拟器(如果有的话,请合并压力数据)来限制反演,该模拟器可以模拟流体流动过程并计算水饱和度和盐分浓度的空间分布,然后通过使用电阻率-饱和度公式。这样,倒转的侵入剖面与流体流物理学是一致的,并且还考虑了重力偏析的影响。与压力数据一起,反演估计渗透率和孔隙率的参数一维分布。流体流量直接从电磁数据的受流体流量限制的反转中反转。

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