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    • 1. 发明申请
    • PROPPANT PILLAR PLACEMENT IN A FRACTURE WITH HIGH SOLID CONTENT FLUID
    • 具有高固体含量流体的裂缝中的特殊支柱
    • US20140131040A9
    • 2014-05-15
    • US13073458
    • 2011-03-28
    • Mohan K.R. PangaYiyan ChenMoin Muhammad
    • Mohan K.R. PangaYiyan ChenMoin Muhammad
    • E21B43/267
    • E21B43/267C09K8/70C09K8/80C09K2208/08E21B43/164
    • A method of placing proppant into a fracture formed in a subterranean formation from a wellbore is disclosed. The method comprises injecting through the wellbore a first treatment fluid to initiate the fracture in the subterranean formation; injecting through the wellbore a second treatment fluid comprising a particulate blend slurry made of proppant; the particulate blend comprising at least a first amount of particulates having a first average particle size between about 100 and 5000 μm and at least a second amount of particulates having a second average particle size between about three and twenty times smaller than the first average particle size; and forming with the particulate blend slurry a plurality of proppant-rich clusters spaced apart by proppant-free regions forming open channels.
    • 公开了一种将支撑剂置于从井眼形成在地层中的裂缝中的方法。 该方法包括通过井眼喷射第一处理流体以引发地层中的断裂; 通过井筒注入包含由支撑剂制成的颗粒状混合浆料的第二处理流体; 所述颗粒混合物包含至少第一量的具有约100至5000μm的第一平均粒度的颗粒和至少第二量的第二平均粒度小于第一平均粒度的约2-3倍的颗粒 ; 以及与所述颗粒状混合浆料一起形成多个富支撑剂富集簇,其通过形成开放通道的无支撑剂区域间隔开。
    • 2. 发明申请
    • PROPPANT PILLAR PLACEMENT IN A FRACTURE WITH HIGH SOLID CONTENT FLUID
    • 具有高固体含量流体的裂缝中的特殊支柱
    • US20120247764A1
    • 2012-10-04
    • US13073458
    • 2011-03-28
    • Mohan K.R. PangaYiyan ChenMoin Muhammad
    • Mohan K.R. PangaYiyan ChenMoin Muhammad
    • E21B43/267
    • E21B43/267C09K8/70C09K8/80C09K2208/08E21B43/164
    • A method of placing proppant into a fracture formed in a subterranean formation from a wellbore is disclosed. The method comprises injecting through the wellbore a first treatment fluid to initiate the fracture in the subterranean formation; injecting through the wellbore a second treatment fluid comprising a particulate blend slurry made of proppant; the particulate blend comprising at least a first amount of particulates having a first average particle size between about 100 and 5000 μm and at least a second amount of particulates having a second average particle size between about three and twenty times smaller than the first average particle size; and forming with the particulate blend slurry a plurality of proppant-rich clusters spaced apart by proppant-free regions forming open channels.
    • 公开了一种将支撑剂置于从井眼形成在地层中的裂缝中的方法。 该方法包括通过井眼喷射第一处理流体以引发地层中的断裂; 通过井筒注入包含由支撑剂制成的颗粒状混合浆料的第二处理流体; 所述颗粒混合物包含至少第一量的具有约100至5000μm的第一平均粒度的颗粒和至少第二量的第二平均粒度小于第一平均粒度的约2-3倍的颗粒 ; 以及与所述颗粒状混合浆料一起形成多个富支撑剂富集簇,其通过形成开放通道的无支撑剂区域间隔开。
    • 3. 发明授权
    • Proppant pillar placement in a fracture with high solid content fluid
    • 支柱支柱置于具有高固体含量流体的断裂中
    • US09080440B2
    • 2015-07-14
    • US13073458
    • 2011-03-28
    • Mohan K. R. PangaYiyan ChenMoin Muhammad
    • Mohan K. R. PangaYiyan ChenMoin Muhammad
    • E21B43/267E21B43/16C09K8/70C09K8/80
    • E21B43/267C09K8/70C09K8/80C09K2208/08E21B43/164
    • A method of placing proppant into a fracture formed in a subterranean formation from a wellbore is disclosed. The method comprises injecting through the wellbore a first treatment fluid to initiate the fracture in the subterranean formation; injecting through the wellbore a second treatment fluid comprising a particulate blend slurry made of proppant; the particulate blend comprising at least a first amount of particulates having a first average particle size between about 100 and 5000 μm and at least a second amount of particulates having a second average particle size between about three and twenty times smaller than the first average particle size; and forming with the particulate blend slurry a plurality of proppant-rich clusters spaced apart by proppant-free regions forming open channels.
    • 公开了一种将支撑剂置于从井眼形成在地层中的裂缝中的方法。 该方法包括通过井眼喷射第一处理流体以引发地层中的断裂; 通过井筒注入包含由支撑剂制成的颗粒状混合浆料的第二处理流体; 所述颗粒混合物包含至少第一量的具有约100至5000μm的第一平均粒度的颗粒和至少第二量的第二平均粒度小于第一平均粒度的约2-3倍的颗粒 ; 以及与所述颗粒状混合浆料一起形成多个富支撑剂富集簇,其通过形成开放通道的无支撑剂区域间隔开。
    • 5. 发明授权
    • Methods and apparatus for analysis of downhole compositional gradients and applications thereof
    • 井下成分梯度分析方法及装置及其应用
    • US07822554B2
    • 2010-10-26
    • US12210461
    • 2008-09-15
    • Youxiang (Julian) ZuoMoin Muhammad
    • Youxiang (Julian) ZuoMoin Muhammad
    • G01V1/40
    • G01N33/2823E21B49/08
    • A method and system are provided for characterizing a reservoir of interest by comparing measured downhole fluid analysis measurement data with predicted downhole fluid analysis measurement data for the corresponding depth within the reservoir. The downhole fluid analysis measurement data may comprise the results of compositional analysis, gas-oil ratio measurements, and spectrophotometry measurements. The compositional analyses may be delumped to characterize the compositional components of the downhole fluid and equations of state may be used to predict compositional gradients and fluid properties with depth. The method and system enable the user to characterize a reservoir as to its states of compartmentalization and equilibrium.
    • 提供了一种方法和系统,用于通过将测量的井下流体分析测量数据与储层内相应深度的预测的井下流体分析测量数据进行比较来表征感兴趣的储层。 井下流体分析测量数据可以包括组成分析,瓦斯 - 油比测量和分光光度测量的结果。 组成分析可能会被贬低,以表征井下流体的组成成分,状态方程可用于预测组成梯度和流体性质与深度。 该方法和系统使用户能够对储层的分隔和平衡状态进行表征。