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    • 1. 发明申请
    • METHOD OF EXTENDING A BORE USING A LASER DRILL HEAD
    • 使用激光钻头扩展钻孔的方法
    • WO2015041700A1
    • 2015-03-26
    • PCT/US2013/061227
    • 2013-09-23
    • SLD ENHANCED RECOVERY, INC.
    • BOZSO, TamasBOZSO, RobertMOLNAR, Gabor
    • E21B7/14B23K26/06
    • E21B7/14
    • A method to extend an earthen bore (90) using a laser drill head (50A) to remove formation material (19) using a plurality of laser light-emitting elements (66 and 45) that together emit a plurality of laser light beams (64a and 64b) to impinge on a portion of the wall (94) of the bore (90) to be extended. Embodiments of the method enable an oblique extension (80 and 81) of the bore (90) by providing a plurality of central laser light-emitting elements (66) and a plurality of peripheral laser light-emitting elements (45), together forming a cluster, activating the central laser light-emitting elements (66) while activating a first peripheral sub-group (71) of laser light-emitting elements (45) at a first power level and one of deactivating and activating at a second power level, less than the first power level a second peripheral sub-group (72) of laser light-emitting elements (45) to modify an aggregate laser light beam (59A) emitted from the laser drill head (50A) to impinge to a greater extent on a side of the bore distal to the second peripheral sub-group
    • 一种使用激光钻头(50A)延伸土孔(90)以使用多个激光发射元件(66和45)去除地层材料(19)的方法,所述多个激光发光元件一起发射多个激光束(64a) 和64b)冲击孔延伸的孔(90)的一部分(94)上。 该方法的实施例通过提供多个中心激光发光元件(66)和多个周边激光发光元件(45),能够形成孔(90)的倾斜延伸部(80和81),一起形成 在第一功率电平激活激光发射元件(45)的第一外围子组(71)并且以第二功率电平去激活和激活中的一个激活中心激光发射元件(66) 小于激光发射元件(45)的第二外围子组(72)的第一功率电平,以修改从激光钻头(50A)发射的聚集激光束(59A)以更大程度地侵入 孔远离第二外围子组的一侧
    • 2. 发明申请
    • AN APPARATUS AND SYSTEM TO DRILL A BORE USING A LASER
    • 使用激光钻孔的装置和系统
    • WO2013040561A3
    • 2014-02-27
    • PCT/US2012055768
    • 2012-09-17
    • SLD ENHANCED RECOVERY INCBOZSO TAMASBOZSO ROBERT
    • BOZSO TAMASBOZSO ROBERT
    • E21B7/06E21B7/14
    • E21B7/00E21B7/061E21B7/14
    • A system to extend a lateral bore section using laser light comprises a first umbilical (134) connected to a deflection member (50) having a drive gear (77), a lateral exit port and at least one deployable seal (54) intermediate a proximal end (89) and the lateral exit port (95), and a second umbilical (34) having an exterior movable by the drive member through a pathway of the deflection member ending at the lateral exit port to controllably advance a drill head (51) connected to a leading end (34A) of the second umbilical. Optical fibers (47) of the second umbilical transmit laser light from a surface end to optical elements (45) in the drill head that condition laser light for heating a targeted portion of a bore wall. The first umbilical positions the deflection member within a primary bore section, and the second umbilical is controllably advanced to extend a lateral bore by the drive gear of the deflection member.
    • 使用激光延伸横向孔部分的系统包括连接到具有驱动齿轮(77)的偏转构件(50)的第一脐带(134),侧向出口和至少一个可展开的密封(54) 端部(89)和侧向出口(95),以及第二脐带(34),其具有可由驱动构件穿过偏转构件的通道的第二脐带(34),该偏转构件终止于侧向出口端口,以可控地前进钻头(51) 连接到第二脐带的前端(34A)。 第二脐带的光纤(47)将表面端的激光发射到钻头中的光学元件(45),用于调节用于加热孔壁的目标部分的激光。 第一脐带将偏转构件定位在主孔部分内,并且第二脐带可控地前进以通过偏转构件的驱动齿轮延伸侧向孔。
    • 3. 发明申请
    • A METHOD TO CONTROL THE ENVIRONMENT IN A LASER PATH
    • 控制激光路径环境的方法
    • WO2013113002A4
    • 2014-07-10
    • PCT/US2013023455
    • 2013-01-28
    • SLD ENHANCED RECOVERY INC
    • BOZSO TAMASBOZSO ROBERT
    • E21B7/14E21B21/16E21B47/12
    • B23K26/0066E21B7/14E21B7/15E21B21/16E21B29/02E21B37/00E21B47/123
    • A method of controlling the environment intermediate a laser head and a targeted portion of a bore wall to remove solid material at the wall includes running an umbilical into the bore to position the head, irradiating the targeted portion of the wall using laser light, sensing a light spectrum resulting from irradiation of the solid material, comparing the sensed light spectrum to a light spectrum corresponding to favorable irradiation of the solid material, adjusting the rate of introduction of a laser-compatible material to displace laser-incompatible materials from the laser light path to obtain more favorable irradiation of the solid material. The method enable the conservation of the source of the laser- compatible material or improved irradiation of the solid material for solid removal by using the laser to cut, heat, fracture or melt the solid material.
    • 控制激光头之间的环境和孔壁的目标部分以去除墙壁上的固体材料的方法包括将脐带运行到孔中以定位头部,使用激光照射壁的目标部分,感测 将感光光谱与对应于固体材料的有利照射相对应的光谱进行比较,调节激光相容材料的引入速率以从激光光路中移位激光不相容的材料 以获得更有利的固体材料的照射。 该方法能够通过使用激光切割,加热,断裂或熔化固体材料来保护激光相容材料的源或改进固体材料的照射,以固体去除。
    • 4. 发明申请
    • A METHOD TO CONTROL THE ENVIRONMENT IN A LASER PATH
    • 一种控制激光路径中的环境的方法
    • WO2013113002A3
    • 2014-05-08
    • PCT/US2013023455
    • 2013-01-28
    • SLD ENHANCED RECOVERY INC
    • BOZSO TAMASBOZSO ROBERT
    • E21B7/14E21B21/16E21B47/12
    • B23K26/0066E21B7/14E21B7/15E21B21/16E21B29/02E21B37/00E21B47/123
    • A method of controlling the environment intermediate a laser head and a targeted portion of a bore wall to remove solid material at the wall includes running an umbilical into the bore to position the head, irradiating the targeted portion of the wall using laser light, sensing a light spectrum resulting from irradiation of the solid material, comparing the sensed light spectrum to a light spectrum corresponding to favorable irradiation of the solid material, adjusting the rate of introduction of a laser-compatible material to displace laser-incompatible materials from the laser light path to obtain more favorable irradiation of the solid material. The method enable the conservation of the source of the laser- compatible material or improved irradiation of the solid material for solid removal by using the laser to cut, heat, fracture or melt the solid material.
    • 一种控制激光头和孔壁的目标部分之间的环境以去除壁处的固体材料的方法包括:将脐带管运行到孔中以定位头;使用激光照射壁的目标部分;感测 通过照射固体材料产生的光谱,将感测到的光谱与对应于固体材料的有利照射的光谱进行比较,调整激光相容材料的引入速率以将激光不相容材料从激光光路 以获得更有利的固体材料照射。 通过使用激光切割,加热,断裂或熔化固体材料,该方法能够保存激光兼容材料的来源或改善固体材料的辐射以用于固体去除。
    • 6. 发明申请
    • AN APPARATUS AND SYSTEM TO DRILL A BORE USING A LASER
    • 使用激光钻孔的装置和系统
    • WO2013040561A2
    • 2013-03-21
    • PCT/US2012055768
    • 2012-09-17
    • SLD ENHANCED RECOVERY INCBOZSO TAMASBOZSO ROBERT
    • BOZSO TAMASBOZSO ROBERT
    • B23K26/38
    • E21B7/00E21B7/061E21B7/14
    • A system to extend a lateral bore section using laser light comprises a first umbilical connected to a deflection member having a drive gear, a lateral exit port and at least one deployable seal intermediate a proximal end and the lateral exit port, and a second umbilical having an exterior movable by the drive member through a pathway of the deflection member ending at the lateral exit port to controllably advance a drill head connected to a leading end of the second umbilical. Optical fibers of the second umbilical transmit laser light from a surface end to optical elements in the drill head that condition laser light for heating a targeted portion of a bore wall. The first umbilical positions the deflection member within a primary bore section, and the second umbilical is controllably advanced to extend a lateral bore by the drive gear of the deflection member.
    • 使用激光延伸横向孔部分的系统包括连接到偏转构件的第一脐带,所述偏转构件具有驱动齿轮,侧向出口和至少一个位于近端和侧向出口之间的可展开的密封件,以及第二脐带,其具有 外部可由驱动构件通过位于侧向出口端部的偏转构件的路径移动,以可控地前进连接到第二脐带的前端的钻头。 第二脐带的光纤从表面端将激光发射到钻头中的光学元件,其调节用于加热孔壁的目标部分的激光。 第一脐带将偏转构件定位在主孔部分内,并且第二脐带可控地前进以通过偏转构件的驱动齿轮延伸侧向孔。
    • 8. 发明申请
    • A METHOD TO CONTROL THE ENVIRONMENT IN A LASER PATH
    • 控制激光路径环境的方法
    • WO2013113002A2
    • 2013-08-01
    • PCT/US2013/023455
    • 2013-01-28
    • SLD ENHANCED RECOVERY, INC.
    • BOZSO, TamasBOZSO, Robert
    • E21B7/14
    • B23K26/0066E21B7/14E21B7/15E21B21/16E21B29/02E21B37/00E21B47/123
    • A method of controlling the environment intermediate a laser head and a targeted portion of a bore wall to remove solid material at the wall includes running an umbilical into the bore to position the head, irradiating the targeted portion of the wall using laser light, sensing a light spectrum resulting from irradiation of the solid material, comparing the sensed light spectrum to a light spectrum corresponding to favorable irradiation of the solid material, adjusting the rate of introduction of a laser-compatible material to displace laser-incompatible materials from the laser light path to obtain more favorable irradiation of the solid material. The method enable the conservation of the source of the laser- compatible material or improved irradiation of the solid material for solid removal by using the laser to cut, heat, fracture or melt the solid material.
    • 控制激光头之间的环境和孔壁的目标部分以去除墙壁上的固体材料的方法包括将脐带行进到孔中以定位头部,使用激光照射壁的目标部分,感测 将固体材料的照射产生的光谱,将感测的光谱与对应于固体材料的有利照射的光谱进行比较,调节激光相容材料的引入速率以将与激光不相容的材料从激光光路 以获得更有利的固体材料的照射。 该方法能够通过使用激光切割,加热,断裂或熔化固体材料来保护激光相容材料的源或改进固体材料的照射,以固体去除。
    • 9. 发明申请
    • AN APPARATUS AND SYSTEM TO REMOVE DEBRIS FROM A LASER-EXTENDED BORE SECTION
    • 从激光扩展部分部分移除锯齿的装置和系统
    • WO2013012684A1
    • 2013-01-24
    • PCT/US2012/046503
    • 2012-07-12
    • SLD ENHANCED RECOVERY, INC.BOZSO, TamasBOZSO, Robert
    • BOZSO, TamasBOZSO, Robert
    • E21B7/14
    • E21B7/15E21B7/14
    • An apparatus and a system to remove debris generated by using laser light to extend a bore section comprises a body (50) connected to an umbilical and a plurality of coolant injection ports (68) arranged about an inlet to a debris removal passage (67) through the body. The um¬ bilical is used to position the body adjacent a bore wall in a bore sec¬ tion to be extended, laser light is emitted from the apparatus to melt at least a component of a formation material in which the bore is to be extended and to generate globules of melted formation compo¬ nents. A gas is injected (78) into the bore section to disrupt and to sweep at least some of the molten material (81) from a laser path in¬ to the debris removal passage as an injected stream (71) of coolant within the passage intercepts the remnants of globules of molten ma¬ terial as they accelerate in the debris removal passage.
    • 一种用于去除通过使用激光产生以延伸孔部分的碎屑的装置和系统,包括连接到脐带的主体(50)和围绕碎片移除通道(67)的入口布置的多个冷却剂喷射端口(68) 通过身体。 凹凸用于将本体邻近孔壁定位在孔部分中以延伸,激光从该装置发射以熔化其中孔将要延伸的成形材料的至少一部分,以及 以产生熔融成岩组合物的球体。 将气体(78)注入到孔部分中以破坏并且将至少一些熔融材料(81)从激光路径扫入碎屑去除通道,因为在通道内的冷却剂的注入流(71)拦截 当碎屑移除通道加速时,熔融物质的残留物残留。