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1.
公开(公告)号:US12196076B1
公开(公告)日:2025-01-14
申请号:US18750211
申请日:2024-06-21
Inventor: Yifan Zeng , Weihong Yang , Qiang Wu , Xinjiang Wei , Xuejun Wang , Kai Pang , Xuan Xiao , Xue Liu
IPC: E21B49/00 , E21B7/04 , E21B21/06 , E21B33/138
Abstract: Disclosed is a grouting and water blocking method for a hard rock stratum. The grouting and water blocking method include the following steps. At first, hydrogeological information and coal seam information of a hard rock stratum is obtained. Then, a drilling trajectory of the hard rock stratum is determined based on the hydrogeological information and the coal seam information. Later, at least one drilling device is determined corresponding to the drilling trajectory based on types of multiple rock layers contained in the hard rock stratum. After that, the multiple rock layers contained in the hard rock stratum are drilled sequentially according to the drilling trajectory using the at least one drilling device. At last, in response to determining there is a water leakage area, the water leakage area is grouted.
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公开(公告)号:US12091972B1
公开(公告)日:2024-09-17
申请号:US18596373
申请日:2024-03-05
Inventor: Yifan Zeng , Aoshuang Mei , Qiang Wu , Huaming Wei , Yashuai Cui , Shihao Meng , Weihong Yang , Kai Pang , Liang Yang , Yidi Xing
CPC classification number: E21C41/18 , E21C39/00 , E21C2100/00 , E21F17/18
Abstract: Disclosed are a method and a related device for determining a development status of a separation layer in a coal mine. The method includes: obtaining surface subsidence variation data of the coal mine within a preset time interval, rock stress variation data of a caving zone of the coal mine and water pressure variation data; determining a height decrease of the caving zone based on the rock stress variation data and the water pressure variation data; and determining the development status of the separation layer of the coal mine based on the height decrease and the surface subsidence variation data.
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公开(公告)号:US12140025B1
公开(公告)日:2024-11-12
申请号:US18735748
申请日:2024-06-06
Inventor: Yifan Zeng , Weihong Yang , Qiang Wu , Xuan Xiao , Kai Pang , Xinjiang Wei , Xue Liu , Aoshuang Mei , Shihao Meng , Chao Yu
IPC: E21B7/06 , E21B47/022
Abstract: A directional drilling method applied to a rigid bending joint directional drilling device includes: obtaining geological data; determining a lateral drilling point and a target point of a branching borehole based on the geological data; drawing a target borehole trajectory of the branching borehole based on the lateral drilling point and the target point; obtaining parameters of the drill pipe; determining a propulsion force corresponding to the target borehole trajectory based on the parameters, the target borehole trajectory, and the geological data; and applying the propulsion force to the rigid bending joint directional drilling device for drilling the branching borehole. A directional drilling system and related devices are also disclosed.
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公开(公告)号:US12129620B1
公开(公告)日:2024-10-29
申请号:US18600416
申请日:2024-03-08
Inventor: Yifan Zeng , Weihong Yang , Qiang Wu , Kai Pang , Xinjiang Wei , Xue Liu , Xuan Xiao , Aoshuang Mei , Shihao Meng , Chao Yu
CPC classification number: E02D3/12 , E02D2250/003 , E21B33/13
Abstract: Disclosed is a method for repairing an aquifer in a coal mine area by grouting, including: drilling a survey hole in a ground area corresponding to a water inflow position from ground surface to a caving zone in a goaf; determining a target layer for grouting in the survey hole based on drilling data collected from the survey hole while drilling; changing the survey hole to a grouting hole; measuring a first water level from the grouting hole; grouting through the grouting hole; changing the grouting hole to an observation hole; measuring a second water level from the observation hole; and determining a water retention level based on the first water level and the second water level.
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公开(公告)号:US11781429B1
公开(公告)日:2023-10-10
申请号:US18332606
申请日:2023-06-09
Applicant: CHINA UNIVERSITY OF MINING AND TECHNOLOGY, BEIJING , University of Mining and Technology-Beijing Inner Mongolia Research Institute
Inventor: Yifan Zeng , Qiang Wu , Weihong Yang , Zhaolai Hua , Yanping Miao , Lu Wang , Kai Pang , Lei Yang , Aoshuang Mei , Shihao Meng , Han Bao , Xue Liu , Xuan Xiao
Abstract: A method for blocking mine water inrush includes: grouting first slurry into an interface between the quaternary aquifer and the weathered bedrock aquifer in a fracture grouting manner until a first preset condition is met; forming a first water-resisting cushion after the first slurry is solidified; drilling a curve branch drill hole in the surface horizon downward; grouting second slurry into the curve branch drill hole in a downward grouting manner until a second preset condition is met; forming a second water-resisting cushion after the second slurry is solidified; grouting third slurry onto a top of the first water-resisting cushion in an upward grouting manner until a third preset condition is met; forming a third water-resisting cushion after the third slurry is solidified; wherein the third water-resisting cushion is located on the top of the first water-resisting cushion.
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6.
公开(公告)号:US11459849B1
公开(公告)日:2022-10-04
申请号:US17730031
申请日:2022-04-26
Applicant: CHINA UNIVERSITY OF MINING AND TECHNOLOGY, BEIJING , Shaanxi Coal Caojiatan Mining Co., Ltd.
Inventor: Yifan Zeng , Qiang Wu , Zhaolai Hua , Rui Wang , Zhenzhong Pang , Lu Wang , Yang Lv , Xin Du , Kai Pang , Aoshuang Mei
Abstract: A sealing method for a drilled hole in three zones of overburden comprises: blocking the fissure zone and the caving zone with at least one filling bag; and transporting prepared cement slurry to the drilled hole through a hollow drill pipe, so as to block the curved subsidence zone. The three zones of overburden comprise a fissure zone, a caving zone and a curved subsidence zone.
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公开(公告)号:US12055040B1
公开(公告)日:2024-08-06
申请号:US18413509
申请日:2024-01-16
Inventor: Yifan Zeng , Weihong Yang , Qiang Wu , Xuan Xiao , Kai Pang , Xinjiang Wei , Xue Liu , Han Bao
IPC: E21B7/06
Abstract: A curvature controllable directional drilling device is disclosed. The drilling device includes: a drill bit, a power unit, a rigid bending unit, a bendable outer wall, and a wedge deflection tool. The power unit is to provide a rotary power to the drill bit. The rigid bending unit is set between the drill bit and the power unit, to bend on a basis of an initial curvature under an external force. The bendable outer wall is set on an outer side of the power unit and the rigid bending unit. The wedge deflection tool is set at one end of the bendable outer wall near the drill bit, to receive a reaction force and bend the rigid bending unit. By a coordination between the wedge deflection tool and the power unit, a drilling direction of the drill bit connected to the rigid bending unit can be adjusted.
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