Reciprocating type low-pressure and high-frequency hydraulic power pulse vibrator

A hydraulic pulse, reciprocating technology, applied in the direction of drilling with vibration, etc., can solve the problems of bit damage, non-adjustable drilling fluid flow area, large rotor torque, etc.

Active Publication Date: 2019-12-20
合力(天津)能源科技股份有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Axial static friction leads to the ineffective transmission of bit pressure; circumferential static friction leads to discontinuous rotation of drill tools
These two phenomena create various problems for drilling operations: under pressure of the motor, damage of the drill bit, difficult control of the tool face, excessive compression of the drill tool, sticking of the drill bit, torque fluctuation, increased risk of drill to

Method used

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  • Reciprocating type low-pressure and high-frequency hydraulic power pulse vibrator
  • Reciprocating type low-pressure and high-frequency hydraulic power pulse vibrator
  • Reciprocating type low-pressure and high-frequency hydraulic power pulse vibrator

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Embodiment Construction

[0016] Such as Figure 1-5 As shown, the reciprocating low-pressure high-frequency hydraulic pulse vibrator of the present invention is composed of a combination of a vibrating sub-joint 1 and a power sub-joint 2, both of which are hollow tubular, and the vibrating sub-joint 1 passes through The lower joint 3 below it is threadedly connected with the upper joint 4 above the power sub-joint 2 , so that a pulse channel 5 is formed between the vibration sub-joint 1 and the power sub-joint 2 . Specifically, the spline mandrel 6, the spline outer cylinder 7, the piston inner cylinder 25, the piston outer cylinder 8, the lower joint 3, the upper joint 4, the stator sleeve 16 and the bottom joint 23 are all hollow tubular, and the pulse channel 5 It consists of a splined mandrel 6, a piston inner cylinder 25, a lower joint 3, an upper joint 4, a stator sleeve 16, a flushing channel 21 and a bottom joint 23 connected in sequence.

[0017] The vibrating short joint 1 is formed by inse...

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Abstract

The invention relates to a reciprocating type low-pressure and high-frequency hydraulic power pulse vibrator and belongs to the field of vibration or oscillation method well drilling. The reciprocating type low-pressure and high-frequency hydraulic power pulse vibrator is composed of a vibration short joint and a power short joint. The vibration short joint is formed in the manner that a spline core shaft is inserted in a spline outer cylinder and a piston outer cylinder, and a disc spring is installed in the circular clearance between the middle portion of the spline core shaft and the pistonouter cylinder. The lower end of the spline core shaft is fixedly connected with a piston inner cylinder. A piston I, a piston II and a piston III are sequentially fixed to the piston inner cylinderfrom top to bottom, and an isolation ring I and an isolation ring II are fixed to the inner surfaces of the parts, between the piston II and the piston II and between the piston II and the piston III,of the piston outer cylinder correspondingly. A spiral worm is arranged in a stator sleeve in the axial direction, the lower end of the spiral worm abuts against a disc support, and a connecting rodhinged to the lower end face of the spiral worm is hinged to the center position of the upper end of a vibrator valve cone which is arranged in the stator sleeve in a clearance fit manner. By means ofthe reciprocating type low-pressure and high-frequency hydraulic power pulse vibrator, the pressure loss of the tool can be reduced by 45%, and meanwhile the problems of motor backing pressure, drillhead damage, drilling tool clamping, torque fluctuation, drilling tool fatigue and the like are solved.

Description

technical field [0001] The invention relates to the field of well drilling by means of vibration or oscillation, in particular to a reciprocating low-pressure high-frequency hydraulic pulse vibrator. Background technique [0002] The static friction between the drilling tool and the borehole wall has brought great challenges to the drilling construction of directional wells and horizontal wells. According to the direction, this static friction can be divided into two categories: one is axial friction during sliding drilling, and the other is circumferential friction during rotary drilling. Axial static friction leads to ineffective transmission of bit pressure; circumferential static friction leads to discontinuous rotation of drill tools. These two phenomena create various problems for drilling operations: under pressure of the motor, damage of the drill bit, difficult control of the tool face, excessive compression of the drill tool, sticking of the drill bit, torque fluc...

Claims

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Application Information

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IPC IPC(8): E21B7/24
CPCE21B7/24
Inventor 侯立东
Owner 合力(天津)能源科技股份有限公司
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