Self-feeding rotary jet flow multi-hole spray nozzle

A multi-hole nozzle and self-propelled technology, which is applied in the direction of drilling with liquid/gas jet, can solve the problems of large forward jet recoil, irregular shape, fast jet attenuation, etc., and achieve reliability, simple structure, and reduced The effect of small self-progressive resistance

Active Publication Date: 2014-05-21
CHINA UNIV OF PETROLEUM (BEIJING)
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, under the condition of confining pressure, the jet attenuates quickly; the hole formed by it has a small diameter and irregular shape; the recoil force of the forward jet is relatively large, which is not conducive to forward drilling

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  • Self-feeding rotary jet flow multi-hole spray nozzle
  • Self-feeding rotary jet flow multi-hole spray nozzle
  • Self-feeding rotary jet flow multi-hole spray nozzle

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Embodiment Construction

[0029] The self-advancing rotary jet porous nozzle of the present invention mainly includes a nozzle cap, a rear end shaft, a screw, and the like. It is characterized in that a plurality of forward holes are evenly distributed at the front end of the nozzle cap on a certain circle away from the center, and the jet formed by the high-pressure fluid through the forward holes has a high tangential velocity, which is conducive to rock breaking; The impulsive force makes the nozzle cap rotate, and the orbital scanning of each hole is combined to break the rock, which is conducive to the formation of large-diameter regular holes and the self-advance of the nozzle; the outer side of the nozzle cap is evenly distributed with multiple backward holes in the same width area, which can be used for The nozzle provides self-propelled force and torque; the rear end shaft is a hollow cylinder with variable diameter, the rear large diameter part is used to connect the fluid pipeline, and the fr...

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Abstract

The invention relates to a self-feeding rotary jet flow multi-hole spray nozzle, which comprises a spray nozzle cap, a back end shaft, a screw and the like. The self-feeding rotary jet flow multi-hole spray nozzle has the basic work principle that a plurality of forward holes are uniformly formed in a certain circle, leaving away from the center for a certain distance, of the front end surface of the spray nozzle, a plurality of center axes of the holes are in the located plane of a certain tangent line of the circle and are distributed in a way of forming different angles with an axial line of the spray nozzle cap, and the projection of the axial lines of the holes in the front end surface is a tangent line of the same circle, so the jet flow has high tangential speed, and the efficient rock breaking is favorably realized; the jet flow dispersion is realized, the acting range is wide, and large-aperture holes are favorably formed; the spray nozzle cap realizes autorotation through the jet flow reaction, each hole is scanned along the self rail for completing the rock breaking, and the formed holes are more regular; the spray nozzle cap realizes the autorotation, and the self feeding of the spray nozzle is favorably realized. The backward spray nozzle provides the self-feeding force, and meanwhile, the autorotation of the spray nozzle cap can be controlled. The self-feeding rotary jet flow multi-hole spray nozzle has the advantages that the structure is simple, the efficient rock breaking can be realized, and large-diameter regular holes are formed.

Description

technical field [0001] The invention relates to the field of oil exploitation, and is the core component of the ultra-short radius radial horizontal well technology of new drilling technology, namely a novel self-propelled rotary jet porous nozzle. The invention can realize high-efficiency rock breaking while providing self-propelled force, and form relatively regular and large-diameter holes. Background technique [0002] Ultra-short radius sidetracking horizontal well drilling technology (also known as radial horizontal well drilling technology) refers to drilling one or more radially distributed horizontal wellbores in a vertical wellbore along the radial direction. This technology is a new oilfield stimulation technology developed in recent decades. The use of this technology can revive dead wells, greatly improve oil well production and crude oil recovery, and reduce drilling costs. , heavy oil, low permeability and other reservoir development. However, the developme...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E21B7/18
Inventor 李根生李敬彬黄中伟宋先知牛继磊田守嶒史怀忠
Owner CHINA UNIV OF PETROLEUM (BEIJING)
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