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    • 3. 发明授权
    • Use of nanoparticles for labelling oil field injection waters
    • 使用纳米颗粒标记油田注射水
    • US09260957B2
    • 2016-02-16
    • US13518827
    • 2010-12-22
    • Annie CommarieuFabrice AubertinNicolas CrowtherCédric LouisPascal PerriatMatteo MartiniOlivier Tillement
    • Annie CommarieuFabrice AubertinNicolas CrowtherCédric LouisPascal PerriatMatteo MartiniOlivier Tillement
    • G01N21/64E21B47/00C09K8/03C09K8/58E21B47/10C09K11/59B82Y15/00
    • E21B47/00B82Y15/00C09K8/03C09K8/58C09K11/06C09K11/592E21B47/1015G01N21/64Y10S977/773Y10S977/902
    • The present invention relates to the development of tracer fluids, more generally, that of aqueous liquids, intended to be injected under pressure in an oil reservoir, for example from an injection well up to a production well.The object of the invention is to propose a new method of study of a solid medium, i.e. an oil reservoir, by diffusion of a liquid (i.e. injection waters) containing tracers, through said solid medium, which is simple to implement and economical and which remedies the drawbacks of the known tracers for injection waters of oil reservoirs.This method essentially consisting of injecting, in this solid medium, an injection liquid comprising a nanoparticle-based tracer having average dimensions comprised between 20 and 200 nm, detectable by means of one or several S signals at dilutions of less than or equal to 10−7, adapted to form a stable colloidal suspension in a saline medium, at least a portion of which is constituted of a core and a coating provided with an adjustable hydrophilic-lipophilic balance (HLB) and comprising at least one organic and/or organosilicon component; recovering the liquid having diffused; and analyzing this liquid having diffused to measure the quantity of tracer by detection of the signal or signals S.
    • 本发明涉及示踪流体的开发,更一般地说,旨在在储油器中例如从注入井到生产井的压力下注入含水液体。 本发明的目的是提出一种通过所述固体介质通过扩散含有示踪剂的液体(即注射水)的固体介质,即储油器的研究的新方法,所述固体介质易于实施和经济,并且其中 弥补了油藏注射水已知示踪剂的缺点。 该方法基本上包括在该固体培养基中注入含有平均尺寸在20和200nm之间的纳米颗粒型示踪剂的注射液,其可以通过少于或等于10- 7,适于在盐水介质中形成稳定的胶体悬浮液,其至少一部分由芯和具有可调亲水亲油平衡(HLB)的涂层构成,并且包含至少一种有机和/或有机硅组分 ; 回收扩散的液体; 并且通过检测信号或信号S来分析扩散的液体以测量示踪剂的量。
    • 4. 发明申请
    • USE OF NANOPARTICLES FOR LABELLING OIL FIELD INJECTION WATERS
    • 用于标记油田注射水的纳米颗粒的使用
    • US20130084643A1
    • 2013-04-04
    • US13518827
    • 2010-12-22
    • Annie CommarieuFabrice AubertinNicolas CrowtherCédric LouisPascal PerriatMatteo MartiniOlivier Tillement
    • Annie CommarieuFabrice AubertinNicolas CrowtherCédric LouisPascal PerriatMatteo MartiniOlivier Tillement
    • E21B47/00G01N21/64C09K11/59
    • E21B47/00B82Y15/00C09K8/03C09K8/58C09K11/06C09K11/592E21B47/1015G01N21/64Y10S977/773Y10S977/902
    • The present invention relates to the development of tracer fluids, more generally, that of aqueous liquids, intended to be injected under pressure in an oil reservoir, for example from an injection well up to a production well.The object of the invention is to propose a new method of study of a solid medium, i.e. an oil reservoir, by diffusion of a liquid (i.e. injection waters) containing tracers, through said solid medium, which is simple to implement and economical and which remedies the drawbacks of the known tracers for injection waters of oil reservoirs.This method essentially consisting of injecting, in this solid medium, an injection liquid comprising a nanoparticle-based tracer having average dimensions comprised between 20 and 200 nm, detectable by means of one or several S signals at dilutions of less than or equal to 10−7, adapted to form a stable colloidal suspension in a saline medium, at least a portion of which is constituted of a core and a coating provided with an adjustable hydrophilic-lipophilic balance (HLB) and comprising at least one organic and/or organosilicon component; recovering the liquid having diffused; and analyzing this liquid having diffused to measure the quantity of tracer by detection of the signal or signals S.
    • 本发明涉及示踪流体的开发,更一般地说,旨在在储油器中例如从注入井到生产井的压力下注入含水液体。 本发明的目的是提出一种通过所述固体介质通过扩散含有示踪剂的液体(即注射水)的固体介质,即储油器的研究的新方法,所述固体介质易于实施和经济,并且其中 弥补了油藏注射水已知示踪剂的缺点。 该方法基本上包括在该固体培养基中注入含有平均尺寸在20和200nm之间的纳米颗粒型示踪剂的注射液,其可以通过少于或等于10- 7,适于在盐水介质中形成稳定的胶体悬浮液,其至少一部分由芯和具有可调亲水亲油平衡(HLB)的涂层构成,并且包含至少一种有机和/或有机硅组分 ; 回收扩散的液体; 并且通过检测信号或信号S来分析扩散的液体来测量示踪剂的量。