IP Library Granted Patent US 9,581,012
Granted Patent B2
US 9,581,012 · App. 14/772,058 · Granted Feb 28, 2017

Well tool for use in a well pipe

Inventors: Sergey Ivanovich Krivosheev (St. Petersburg, RU); Evgeni Lvovich Svechnikov (St. Petersburg, RU); Georgy Petrovich Zhabko (St. Petersburg, RU); Andrey Aleksandrovich Belov (St. Petersburg, RU); Yuri Eduardovich Adamian (Pos. Kuzmolovski Leningradskaya obl., RU)
Assignee: FMC Kongsberg Subsea AS
E21B47/0005E21B28/00
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Quick Facts
Patent No.
US 9,581,012
App. No.
14/772,058
Granted
Feb 28, 2017
Kind
B2
Abstract

A well tool ( 10 ) for use in a well pipe comprises a housing ( 11 ) and a pulse generator ( 14 ) provided within the housing ( 11 ). The pulse generator ( 14 ) comprises an inductor (Ls), and a power supply device (HV, c) for supplying electrical power to the inductor (L) and thereby providing that an electromagnetic pulse is generated, in such a way that the electromagnetic pulse is providing physical vibrations in the well pipe. A cross sectional gap area (Agap) of an annular gap between a median of the inductor (Ls) and an inner surface of the well pipe is substantially equal to an inner cross sectional area (Ainner) of the inductor (Ls) up to the median diameter (d) of the inductor.

Claims (80)

1. A well system comprising a well pipe and a well tool arranged within the well pipe, wherein the well tool comprises:

a housing; and

a pulse generator provided within the housing, the pulse generator comprising a cylindrical inductor and a power supply device for supplying electrical power to the inductor to thereby generate an electromagnetic pulse which creates physical vibrations in the well pipe, the inductor comprising a coil arranged axially within the well pipe;

wherein a ratio between a cross sectional gap area, Agap, and an inner cross sectional area of the inductor, Ainner, is in the range 0.9 to 1.1; and

wherein the cross sectional gap area, Agap, is defined by

Agap

=

π

(

D

2

)

2

-

π

(

d

2

)

2

,

 and the cross sectional area, Ainner, is defined by

Ainner

=

π

(

d

2

)

2

,

 wherein D denotes an inner diameter of the well pipe and d denotes a median diameter of the inductor, the median diameter of the inductor being an average value of an inner diameter and an outer diameter of the inductor.

2. The well system according to claim 1 , wherein the well tool comprises a centralizing device configured to position the well tool centrally within the well pipe.

3. The well system according to claim 1 , wherein the inductor has an inductance in the range of 10*10 −6 H to 40*10 −6 H.

4. The well system according to claim 1 , wherein the power supply device comprises a capacitor connected to the inductor the capacitor being configured to discharge its energy over the inductor.

5. The well system according to claim 4 , wherein the power supply device comprises a switch connected between the inductor and the capacitor.

6. The well system according to claim 1 , wherein the well pipe is made of a magnetic material.

7. The well system according to claim 1 , wherein the inductor comprises a metallic core.

8. The well system according to claim 7 , wherein the metallic core is a cylinder.

9. The well system according to claim 1 , wherein the ratio between the cross sectional gap area (Agap) and the inner cross sectional area (Ainner) is in the range 0.95 to 1.05.

10. The well system according to claim 1 , wherein the ratio between the cross sectional gap area (Agap) and the inner cross sectional area (Ainner) is in the range 0.98 to 1.02.

11. The well system according to claim 1 , wherein the cross sectional gap area (Agap) is equal to the inner cross sectional area (Ainner).

12. A method for generating vibrations in a well pipe, comprising:

arranging a well tool within the well pipe, wherein the well tool comprises a housing and a pulse generator provided within the housing, the pulse generator comprising an inductor and a power supply device, the inductor comprising a coil arranged axially within the well pipe;

wherein a ratio between a cross sectional gap area, Agap, and an inner cross sectional area of the inductor, Ainner, is in the range 0.9 to 1.1;

wherein the cross sectional gap area, Agap, is defined by

Agap

=

π

(

D

2

)

2

-

π

(

d

2

)

2

,

 and the cross sectional area, Ainner, is defined by

Ainner

=

π

(

d

2

)

2

,

 wherein D denotes an inner diameter of the well pipe and d denotes a median diameter of the inductor, the median diameter of the inductor being an average value of an inner diameter and an outer diameter of the inductor; and

supplying electrical power to the inductor, to thereby generate an electromagnetic pulse which creates physical vibrations in the well pipe.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 21, 2015
From: KRIVOSHEEV, SERGEY IVANOVICH; SVECHNIKOV, EVGENI LVOVICH; ZHABKO, GEORGY PETROVICH; BELOV, ANDREY ALEKSANDROVICH; ADAMIAN, YURI EDUARDOVICH
To: FMC KONGSBERG SUBSEA AS
Reel/Frame 037345/0301 →
Priority Claims (1)
EP PCT/EP2013/055404 · Mar 15, 2013 · regional
Continuity (1)
Related Publication 20160024907A1 · Jan 28, 2016