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Integration of NMR and SCAL to Estimate Porosity, Permeability and Capillary Pressure of Heterogeneous Gas Sand Reservoirs

机译:NMR和SAC的整合以估计异质气体砂储层的孔隙率,渗透性和毛细管压力

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Analysis of heterogeneous gas sand reservoirs is one of the most difficult problems. These reservoirs usually produced from multiple layers with different permeability and complex formation, which is often enhanced by natural fracturing. Therefore, using new well logging techniques like NMR or a combination of NMR and conventional open hole logs, as well as developing new interpretation methodologies are essential for improved reservoir characterization. Nuclear magnetic resonance (NMR) logs differ from conventional neutron, density, sonic and resistivity logs because the NMR measurements provide mainly lithology independent detailed porosity and offer a good evaluation of the hydrocarbon potential. Integration of NMR logs, other open hole logs and SCAL minimizes uncertainties in the determination of formation porosity, permeability and capillary pressure curve. This paper focuses on determination of three petrophysical parameters of heterogeneous gas sand reservoirs which are Determination of DMR porosity, Φ_(DMR), it is deduced from NMR porosity and density porosity; NMR permeability, K_(BGMR), it is based on the dynamic concept of gas movement and bulk gas volume in the invaded zone and Capillary pressure, it is derived from relaxation time T2 distribution.
机译:异质气体砂水库的分析是最困难的问题之一。这些储存器通常由多层产生具有不同渗透性和复杂形成的,这通常通过自然压裂而增强。因此,使用像NMR等新的井测井技术,或者NMR和传统的开孔日志的组合,以及开发的新解释方法对于改善的储层表征是必不可少的。核磁共振(NMR)原木不同于传统中子,密度,声波和电阻率原木,因为NMR测量主要提供岩性独立的详细孔隙度,并提供良好的烃潜力评估。 NMR日志的集成,其他开孔日志和尺度最小化了形成孔隙率,渗透性和毛细管压力曲线的测定中的不确定性。本文侧重于测定异质气体砂储存器的三种岩石物理参数,该参数是测定DMR孔隙率的φ_(DMR),其从NMR孔隙率和密度孔隙率推导出来; NMR渗透率K_(BGMR),基于侵入区域和毛细管压力的气体运动和散装气体的动态概念,它来自弛豫时间T2分布。

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