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    • 2. 发明授权
    • Porosity estimator for formate brine invaded hydrocarbon zone
    • 甲烷盐水侵入烃区的孔隙度估计
    • US09285497B2
    • 2016-03-15
    • US13371770
    • 2012-02-13
    • Jinhong ChenJilin Zhang
    • Jinhong ChenJilin Zhang
    • G01V3/38G01V3/14
    • G01V3/14G01V3/38
    • A system and method estimate a property of an earth formation comprising hydrocarbon and non-hydrocarbon components. The method includes conveying a carrier down a borehole penetrating the earth formation, and performing a nuclear magnetic resonance (NMR) measurement on fluid in the earth formation with an NMR instrument disposed at the carrier to provide total NMR measurement data. The method also includes separating the total NMR measurement data into hydrocarbon-resultant NMR measurement data and non-hydrocarbon-resultant NMR measurement data, scaling a portion of the non-hydrocarbon-resultant NMR measurement data based on a correction factor to obtain scaled non-hydrocarbon-resultant NMR measurement data, and estimating the property based on the hydrocarbon-resultant NMR measurement data and the scaled non-hydrocarbon-resultant NMR measurement data.
    • 一种系统和方法估计包括烃和非烃组分的地层的性质。 该方法包括将载体向下输送穿过地层的钻孔,并用设置在载体上的NMR仪器对地层中的流体进行核磁共振(NMR)测量,以提供总的NMR测量数据。 该方法还包括将总NMR测量数据分离成烃合成NMR测量数据和非烃合成NMR测量数据,基于校正因子缩放部分非烃结合NMR测量数据, 烃结合NMR测量数据,并且基于烃原NMR测量数据和缩放的非烃结合NMR测量数据估计性能。
    • 3. 发明申请
    • POROSITY ESTIMATOR FOR FORMATE BRINE INVADED HYDROCARBON ZONE
    • 用于进口葡萄酒投入的油气区域的孔隙率估算器
    • US20130211725A1
    • 2013-08-15
    • US13371770
    • 2012-02-13
    • Jinhong ChenJilin Zhang
    • Jinhong ChenJilin Zhang
    • G01V3/14G01V3/38
    • G01V3/14G01V3/38
    • A system and method estimate a property of an earth formation comprising hydrocarbon and non-hydrocarbon components. The method includes conveying a carrier down a borehole penetrating the earth formation, and performing a nuclear magnetic resonance (NMR) measurement on fluid in the earth formation with an NMR instrument disposed at the carrier to provide total NMR measurement data. The method also includes separating the total NMR measurement data into hydrocarbon-resultant NMR measurement data and non-hydrocarbon-resultant NMR measurement data, scaling a portion of the non-hydrocarbon-resultant NMR measurement data based on a correction factor to obtain scaled non-hydrocarbon-resultant NMR measurement data, and estimating the property based on the hydrocarbon-resultant NMR measurement data and the scaled non-hydrocarbon-resultant NMR measurement data.
    • 一种系统和方法估计包括烃和非烃组分的地层的性质。 该方法包括将载体向下输送穿过地层的钻孔,并用设置在载体上的NMR仪器对地层中的流体进行核磁共振(NMR)测量,以提供总的NMR测量数据。 该方法还包括将总NMR测量数据分离成烃合成NMR测量数据和非烃合成NMR测量数据,基于校正因子缩放部分非烃结合NMR测量数据, 烃结合NMR测量数据,并且基于烃原NMR测量数据和缩放的非烃结合NMR测量数据估计性能。
    • 8. 发明申请
    • NMR LOGGING INTERPRETATION OF SOLID INVASION
    • 固体入侵的核磁共振测井解释
    • US20150142316A1
    • 2015-05-21
    • US14081218
    • 2013-11-15
    • Jinhong Chen
    • Jinhong Chen
    • G01V3/32
    • G01V3/32
    • A method for estimating an effect on nuclear magnetic resonance (NMR) measurements of an invasion of solid particles into pores of an earth formation penetrated by a borehole includes conveying a carrier through the borehole and performing an NMR measurement on a volume of interest in the formation to provide a relaxation time constant using an NMR tool disposed at the carrier. The method further includes receiving information describing the solid particles in the pores and quantifying, using a processor, an effect on the measured relaxation time constant due to the invasion of solid particles using the received information.
    • 用于估计固体颗粒侵入由钻孔穿透的地层孔隙中的核磁共振(NMR)测量的影响的方法包括:通过钻孔输送载体并对地层中感兴趣的体积进行NMR测量 以使用设置在载体上的NMR工具提供弛豫时间常数。 该方法还包括接收描述细孔中的固体颗粒的信息,并使用处理器量化由于使用所接收的信息侵入固体颗粒而测量的松弛时间常数的影响。