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    • 2. 发明申请
    • APPARATUS FOR ROCK REINFORCEMENT
    • WO2021181140A1
    • 2021-09-16
    • PCT/IB2020/052320
    • 2020-03-13
    • TENAX S.P.A.
    • FIORATTI, Stefano
    • E21C41/00E21C47/10E21D20/02E21C41/26
    • Rock reinforcement apparatus (1), in particular to be used in a rocky quarry, preferably in an ornamental natural stone quarry, characterized in that it comprises: - a cartridge (2) with longitudinal development and comprising at least one chamber (5, 7) inside which at least one component in the liquid/fluid state is contained, said cartridge being configured to be inserted, along its longitudinal development, inside a longitudinal development hole (10) intended to be obtained in a portion of rock (3) to be reinforced, said cartridge (2) comprising a first end (9) which, with the cartridge inserted in the hole (10), is destined to be more inside said hole (10) with respect to the second end (15), which is opposite to the first (9), - a piston (20) which is configured to be inserted and slide longitudinally inside said cartridge (2) from said second end (15) towards said first end (9), so as to push at least one component in the liquid/fluid state to emerge from said cartridge (2) so that, alone or mixed with at least one other component in the liquid/fluid state contained in said cartridge (2), it defines an anchoring product (26) which is intended to fill the space (27) between the cartridge (2) and the hole (10), - said cartridge (2) and/or said piston (20) comprise and/or define at least one passage (18) which is configured to allow said anchoring product (26), which is intended to fill the space (27) between the cartridge (2) and the hole (10), to enter inside the cartridge itself, thus filling it at least in part.
    • 5. 发明申请
    • A METHOD OF CONTROLLING A MINE VEHICLE AND A MINE VEHICLE CONTROL SYSTEM
    • 一种控制矿车和矿车控制系统的方法
    • WO2014186822A1
    • 2014-11-27
    • PCT/AU2014/000524
    • 2014-05-16
    • TECHNOLOGICAL RESOURCES PTY LTD
    • OPPOLZER, FlorianYOUNG, Justin
    • G05D1/02E21C41/00E21B44/00
    • E21C35/08G05D1/0044G05D1/0214G05D2201/021
    • A mine vehicle control system (10) includes a vehicle controller (14). The vehicle controller (14) is responsive to a control zone (16) defining a part of an area traversed by a mine vehicle (12). A navigation module (24) determines a position and orientation of the vehicle (12) relative to the control zone (16). The navigation module (24) communicates with the vehicle controller (14) and supplies data relating to the position of the vehicle (12) relative to the control zone (16) as the vehicle (12) automatically traverses towards the control zone (16). A processing unit (26) is responsive to the navigation module (24) to generate a datum line extending transversely to the control zone (16) for assessing the orientation of the vehicle (12) relative to the control zone (16). The processing unit (26) has at least a part configured as a decision engine (36) which causes the vehicle controller (14) to manoeuvre the vehicle (12) so that the operative component of the vehicle (12) is positioned at a destination location in the control zone (16) provided the orientation of the vehicle (12) falls within predetermined parameters.
    • 矿山车辆控制系统(10)包括车辆控制器(14)。 车辆控制器(14)响应于限定由矿用车辆(12)穿过的区域的一部分的控制区域(16)。 导航模块(24)确定车辆(12)相对于控制区(16)的位置和方位。 导航模块(24)与车辆控制器(14)通信,并且随着车辆(12)朝向控制区域(16)自动穿过,提供与车辆(12)相对于控制区域(16)的位置有关的数据, 。 处理单元(26)响应于导航模块(24)产生横向于控制区域(16)延伸的基准线,用于评估车辆(12)相对于控制区域(16)的取向。 处理单元(26)具有至少一部分被配置为判定引擎(36)的部分,该部分使得车辆控制器(14)操纵车辆(12),使得车辆(12)的操作部件位于目的地 设置在控制区域(16)中的位置处于车辆(12)的方向落在预定参数内。
    • 8. 发明申请
    • COLLECTING DEVICE AND SYSTEM FOR HANDLING AN UNCONTROLLED BLOW-OUT
    • WO2010110675A3
    • 2010-09-30
    • PCT/NO2010/000119
    • 2010-03-29
    • ACONA WELLPRO ASVASSMYR, Kjell-AreSCHUMACHER, Rob, Rudi
    • VASSMYR, Kjell-AreSCHUMACHER, Rob, Rudi
    • E21C41/00
    • A collecting device for collecting liquid hydrocarbons and/or water in an underground area of activity (10) is provided, as well as a system for handling liquid fluids, such as hydrocarbons and/or water which infiltrates the underground area of activity (10). The system comprises at least one collecting shaft (14) for collecting liquid fluids, such as liquid hydrocarbons and/or water, which extends down into the ground (12) and comprises an opening (13) leading into the area of activity (10). The system further comprises at least one pump shaft (19) which is protected against influx of liquid hydrocarbons and/or water from the area of activity (10), wherein at least one pump (26, 26') is provided for pumping out liquid hydrocarbons and water through at least one outlet channel (30), a connecting tunnel (16) between a lower portion of the collecting shaft (14) and a lower portion of the pump shaft (19), thereby establishing fluid communication between the collecting shaft (14) and the pump shaft (19), and at least one superstructure (20, 22) which covers the opening (13) of the at least one collecting shaft, and where the superstructure (20, 22) is provided with openings for the through-flow of fluid, which openings are designed with a size that prevents loose objects over a given size from passing through the openings of the at least one superstructure (20, 22).
    • 10. 发明申请
    • METHOD AND INSTALLATION FOR MINING
    • 采矿方法和安装
    • WO1990003494A1
    • 1990-04-05
    • PCT/AU1988000378
    • 1988-09-28
    • BASTER, Lawrence, Reginald
    • E21C41/00
    • E21B43/122E21B43/18E21B43/29
    • A mining installation and method for recovery of minerals from a below ground deposit in which at least two bore holes (32, 34) whic are mutually spaced and extend into the deposit, the bore holes including: a) at least one bore hole (32), referred to as pressurising bore, connectable to a source of pressurising liquid and having an outlet (42) within the deposit, and b) at least one further bore hole (34), referred to as a lift bore, having an inlet (44) thereto within the deposit, the lift bore having means (46) for discharging pressurised gas therein. The arrangement is such that pressurised liquid (A) supplied to the pressurising bore (32) is able to discharge from the outlet (42) to cause material of the deposit to move toward the lift bore (34) under hydraulicking action of the liquid, with the discharge of pressurised gas (B) in the lift bore providing an air-lift action on the material moved towards the lift bore (34) such that the material is raised in the lift bore (34).
    • 一种用于从地下沉积物回收矿物的采矿设备和方法,其中至少两个钻孔(32,34)相互间隔开并延伸到沉积物中,所述钻孔包括:a)至少一个钻孔(32 ),称为加压孔,可连接到加压液体源并且在沉积物内具有出口(42),以及b)至少一个称为提升孔的另外的钻孔(34),其具有入口( 44),提升孔具有用于在其中排出加压气体的装置(46)。 这种布置使得供应到加压孔(32)的加压液体(A)能够从出口(42)排出,以使得沉积物材料在液体的液压作用下朝向提升孔(34)移动, 所述提升孔中的压缩气体(B)的排放对于朝向提升孔(34)移动的材料提供空气提升作用,使得材料在提升孔(34)中升高。