Single well vapor extraction process

5771973
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Inventors

Jensen, Earl M.
Uhrich, Kurt D.
Hassan, David J.

Application #

686577

Filed

Jul-26-1996

Published

Jun-30-1998

Current US Class

166/303
166/306
166/50

International Classes

E21B 036/00; E21B 043/24

Field of Search

166/50 166/267 166/272.2 166/272.3 166/272.4 166/272.7 166/303 166/305.1 166/306

Assignee

Amoco Corporation (Chicago, IL)

Examiners

Suchfield; George A.

Attorney, Agent or Firm

Gabala; James A., Sloat; Robert E.

US Patent References

3960213   Production of bitu...
4067391   In-situ extraction of...
4116275   Recovery of hydroc...
4160481   Method for recoveri...
5127457   Method and well sy...
5148869   Single horizontal w...
5273111   Laterally and vertic...
5289881   Horizontal well co...
5411094   Imbibition process...
5511616   Hydrocarbon recov...

Referenced by:

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Citation

Cite This Patent

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Abstract
A method of producing hydrocarbons from a subterranean formation comprising the steps of: forming a well having a horizontal section located between the midpoint and the bottom of the formation and having a raised end; and continuously injecting a fluid through said raised end to induce hydrocarbons to flow towards the horizontal section in response to gravity drainage while continuously producing hydrocarbons through the horizontal section of the well-bore, so that the injection of fluids occurs simultaneously with the production of hydrocarbons.
 
Claims
We claim:

1. A method of producing hydrocarbons and associated fluids from a subterranean formation containing such hydrocarbons and fluids, comprising the steps of:

a) forming a well-bore having a horizontal section that is located within the formation, between the midpoint and the bottom of the formation, and close to the bottom of the formation;

b) forming one end of said horizontal section of the well-bore to be raised above the highest point of the remainder of said horizontal section of the well-bore;

c) completing the well-bore so that fluids can be injected into the formation through said horizontal section of the well-bore at a point located generally adjacent to said raised one end of said horizontal section of the well-bore, and so that fluids can be produced from the formation through said horizontal section of said well-bore along at least one position that is located below said raised one end of said horizontal section of said well-bore;



Description
TECHNICAL FIELD

This invention relates to the general subject of methods and devices for recovering hydrocarbons from subterranean formations, and, in particular, to processes and apparatus for recovering heavy oil by means of injecting fluids into the formation.

BACKGROUND OF THE INVENTION

It is well-known that liquid hydrocarbons, commonly known as crude oils, found in subterranean formations vary considerably as to viscosity and specific gravity. Crude oils with an API gravity of twenty-two degrees or less are generally considered to be heavy crude oils. As heavy crude oils are more difficult to treat, transport and refine than lighter crude oils, the market value of heavy crude oils has been historically lower than the value of lighter crude oils.

It is also known that the composition, thickness and condition of the subterranean formations in which crude oils are found vary a great deal. Hydrocarbon bearing formations can vary in physical composition from consolidated rock to unconsolidated sands, which may affect permeability and porosity. These formations may also vary in thickness from several hundred feet to less than six feet. Natural layering and mixing of a variety of natural impermeable materials within a subterranean formation can also occur. The presence of diagenetic clay, or impermeable partial barriers (such as mud or mud stone laminations), or calcite lenses within a subterranean formation may affect the ability of fluids to flow within the formation.
 
  Methods of fracturing subterranean formations are provided. The methods basically comprise positioning a hydrajetting tool having at least one fluid jet...  A downhole multilateral completion tool is disclosed which includes a premachined window joint and a production tube adapted to be moved downhole through...