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    • 1. 发明授权
    • Combined characterization and inversion of reservoir parameters from nuclear, NMR and resistivity measurements
    • 从核,核磁共振和电阻率测量结合表征和反演储层参数
    • US06686736B2
    • 2004-02-03
    • US09928769
    • 2001-08-13
    • Juergen S. SchoenOtto N. FaniniDaniel Georgi
    • Juergen S. SchoenOtto N. FaniniDaniel Georgi
    • G01V300
    • G01V3/32G01V3/38G01V11/00
    • The distribution of shales, sands and water in a reservoir including laminated shaly sands using vertical and horizontal conductivities is derived from nuclear, NMR, and multi-component induction data. The multicomponent data are inverted and an estimate of the laminated shale volume from this inversion is compared with an estimate of laminated shale volume from nuclear logs. The bulk water volume determined from the inversion is compared with a bulk irreducible water volume from NMR measurements. NMR data are then used to obtain a sand distribution in the reservoir and this sand distribution is used in a second inversion of the multicomponent data. Alternatively, a bulk permeability measurement is used as a constraint in inverting the properties of the anisotropic sand component of the reservoir. From the resistivities of the sand laminae, empirical relations are used to predict anisotropic reservoir properties of the reservoir.
    • 使用垂直和水平电导率的含有层状砂岩的储层中页岩,砂和水的分布来自核,NMR和多组分诱导数据。 将多组分数据反演,并将来自该反演的层压页岩体积的估计与来自核原木的层压页岩体积的估计进行比较。 将从反演确定的体积水体积与NMR测量中的体积不可约水体积进行比较。 然后使用NMR数据来获得储层中的砂分布,并且在多组分数据的第二次反演中使用该砂分布。 或者,体积渗透率测量被用作反转储层的各向异性砂分量的性质的约束。 从砂层的电阻率,经验关系用于预测储层的各向异性储层性质。