Pressure operated test tool

4341266
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Inventors

Craig, Gene C.

Application #

187283

Filed

Sep-15-1980

Published

Jul-27-1982

Current US Class

137/596.14
166/317
166/321

International Classes

E21B 034/10

Field of Search

166/321 166/317 166/322 166/323 166/264 137/625.6 137/596.14

Assignee

Lynes, Inc. (Houston, TX)

Examiners

Leppink; James A.

Attorney, Agent or Firm

Norvell, Jr.; William C.

US Patent References

3976136   Pressure operated i...
4064937   Annulus pressure o...

Referenced by:

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Citation

Cite This Patent

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Abstract
A test tool is provided for testing the production capabilities of a preselected formation subsequent to the drilling of a subterranean well. The test tool is part of a testing string which incorporates a packer which may be releasably engaged in the casing string at a depth immediately above a region where formation testing is desired. The test tool includes a rotary ball valve which is normally maintained in a closed position during the insertion of the tool into the well. After setting of the packer, the ball valve is opened by increasing the fluid pressure existing in the annulus between the casing and the testing string. Such annulus pressure is applied to a first reservoir of trapped fluid which may contain water, and supplies fluid at annulus pressure to one side of a valve operating piston to shift the operating piston to actuate the rotary ball valve to its open position and compress a piston return spring. A second reservoir maintains a pressure equal to the hydrostatic pressure in the well at the selected depth. The control valve for the ball valve piston is a piston exposed at opposite ends respectively to the two trapped fluids, and hence is shiftable to a valve opening position by an increase in fluid pressure in the first reservoir over that in the second reservoir. When annulus pressure is reduced, the trapped pressure and a compressed spring in the second fluid reservoir shifts the control valve to cause closing of the ball valve. An over pressure valve which permits fluid pressure in the second reservoir to be increased in the event that a significant further increase in annulus pressure is encountered.
 
Claims
What is claimed and desired to be secured by Letters Patent is:

1. A primary valve for use in a subterranean well test string positionable in a well bore and having a packer arranged for selectively sealing the well bore to isolate the annulus between the well bore and the test string above the packer from that portion of the well bore below the packer, comprising: means for mounting said primary valve in said test string for movement between an open and closed position relative to the interior of said test string; an actuating piston for shifting said primary valve between said open and closed positions; resilient means urging said actuating piston to its valve closing position; a first fluid reservoir containing an isolated fluid; a shiftable control valve for selectively connecting one end of said piston to one of said first fluid reservoir and said test string bore, said control valve having opposed piston faces, one piston face on said control valve being exposed to said isolated fluid; means responsive to an increase in annulus pressure above well bore hydrostatic pressure for increasing said isolated fluid pressure to shift said control valve to cause said isolated fluid to open said primary valve; and means including said other piston face responsive to a subsequent decrease in annulus pressure to well bore hydrostatic pressure for shifting said control valve to remove the isolated fluid from said actuating piston, thereby permitting said primary valve to be closed by said resilient means.



Description
BACKGROUND OF THE INVENTION

1. Field of the Invention

The invention relates to a pressure operated test tool for use in a subterranean well.

2. Description of the Prior Art

During the course of drilling a subterranean well, the bore hole is filled with a fluid known as "drilling fluid" or "mud". One of the purposes, among others, of this drilling fluid is to contain in the intersected formations any fluid which may be found there. This is done by weighting the mud with various additives so that the hydrostatic pressure of the mud at the formation depth is sufficient to keep the formation fluid from escaping out of formation into the bore hole.

When it is desired to test the production capabilities of the formation, a test string is lowered into the bore hole to the formation depth and the formation fluid is allowed to flow into the string in a controlled testing program. Lower pressure is maintained in the interior of the test string as it is lowered into the bore hole, and this is usually done by keeping a valve in the closed position near the lower end of the test string. When the test depth is reached, a packer is set to seal the bore hole, thus isolating the formation from changes in the hydrostatic pressure of the drilling fluid.
 
  A circulating valve for use in oil field operations which is pressure operated without use of a wireline tool. The valve has a sleeve assembly with telescopically...  A pressure operated test valve for use in a well test string in a well bore is shown. The test string has a packer arranged for sealing the well bore to...