IP Library Granted Patent US 9,010,462
Granted Patent B2
US 9,010,462 · App. 13/096,939 · Granted Apr 21, 2015

Low headroom confined space geoexchange drilling system and method

Inventor: Thomas Ross King (Vancouver, CA)
Assignee: Fenix Energy Solutions Ltd.
B28D1/14E21B44/00E21B7/02E21B15/006E21B21/015E21B21/066F24J2003/088
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Quick Facts
Patent No.
US 9,010,462
App. No.
13/096,939
Granted
Apr 21, 2015
Kind
B2
Abstract

A low headroom confined space drilling system is disclosed, comprising a low headroom drilling apparatus, a drilling fluid supply system, a drilling fluid collection system, and a drilling fluid recycling apparatus for supplying a recycled drilling fluid to the drilling apparatus. A method of installing a geoexchange borehole in an interior space of a building is also disclosed, comprising installing a borehole access chamber in a floor slab of a building, positioning a low headroom floor mounted rotary drilling apparatus over the borehole access chamber, providing a pressurized drilling fluid to the drill rod string and powering a rotary downhole drilling device attached to the drill rod string to advance the borehole to a desired depth, recovering a drilling fluid and drill cuttings from the borehole, removing drill cuttings from the recovered drilling fluid using the drilling fluid recycling apparatus and returning a recycled drilling fluid to the drilling apparatus.

Claims (54)

1. A method of installing a geoexchange borehole in an interior space of a building, comprising:

installing a borehole access chamber in a floor slab of said building at a desired borehole location;

positioning a low headroom floor supported rotary drilling apparatus comprising a drill rod string over the borehole access chamber at the desired borehole location;

providing a pressurized drilling fluid to said drill rod string of said drilling apparatus with a drilling fluid supply system and powering a rotary downhole drilling device attached to said drill rod string to advance said borehole to a desired depth;

recovering a drilling fluid and drill cuttings returned from said borehole during drilling and removing said drilling fluid and drill cuttings from at least one of:

said borehole;

said borehole access chamber and;

a drilling fluid splash pan installed over said borehole access chamber;

and conveying said drilling fluid and drill cuttings to a drilling fluid recycling

apparatus using a drilling fluid recovery system;

removing at least a substantial portion of said drill cuttings from said recovered drilling fluid and drill cuttings using said drilling fluid recycling apparatus; and

returning a recycled drilling fluid substantially cleaned of said drill cuttings to said drilling apparatus using said drilling fluid supply system;

wherein said drilling fluid collection system comprises at least one drilling fluid collection tank, and at least one sludge lift pump fluidly connected to said drilling fluid recycling system.

2. The method of installing a geoexchange borehole in an interior space of a building according to claim 1 , additionally comprising:

automatically providing and handling threaded drill rod sections from an automated drill rod loading apparatus to said drill rod string of said drilling apparatus.

3. The method of installing a geoexchange borehole in an interior space of a building according to claim 1 , additionally comprising:

installing at least one return loop of geoexchange piping in said geoexchange borehole.

4. The method of installing a geoexchange borehole in an interior space of a building according to claim 3 , additionally comprising:

grouting said loop of geoexchange piping in said geoexchange borehole.

5. The method of installing a geoexchange borehole in an interior space of a building according to claim 1 , wherein positioning said rotary drilling apparatus additionally comprises securing said rotary drilling apparatus to said floor slab.

6. The method of installing a geoexchange borehole in an interior space of a building according to claim 1 , wherein said drilling fluid comprises water and said rotary downhole drilling device comprises a pressurized water downhole hammer drill.

7. The method of installing a geoexchange borehole in an interior space of a building according to claim 6 , wherein said drilling fluid supply system comprises a polishing filter, at least one holding tank, and a high pressure drill water supply pump.

8. The method of installing a geoexchange borehole in an interior space of a building according to claim 1 , wherein said drilling fluid recycling apparatus comprises at least one primary shaking screen particle separator and at least one primary cyclonic particle separator.

9. The method of installing a geoexchange borehole in an interior space of a building according to claim 8 , wherein said drilling fluid recycling apparatus further comprises at least one drill cuttings holding hopper and at least one drill cuttings disposal container.

10. A low headroom confined space drilling apparatus comprising:

a floor supported base frame;

a drill mast rotatingly mounted to said base frame for elevation to a substantially vertical drilling position;

a rotary drill head motor axially extendably mounted to said drill mast for rotating a drill rod string;

an automated drill rod loading apparatus attached to said base frame and comprising:

a drill rod caddy containing at least one threaded drill rod section; and

at least one extendable pivoting arm operable to automatically retrieve

and handle a threaded drill rod section for attachment to said drill rod string;

a pressurized water powered water hammer drill attached a lower end of said drill rod string; and

a high pressure water pump fluidly attached to said water hammer drill through said drill rod string.

11. The low headroom confined space drilling apparatus according to claim 10 , additionally comprising a vertical ceiling jack mounted to a top end of said drill mast for forceably engaging a ceiling surface above said floor slab.

12. A low headroom confined space drilling system comprising:

a low headroom confined space drilling apparatus comprising a floor supported base frame, a pressurized water powered downhole water hammer drill and an automated drill rod loading apparatus attached to said base frame;

a drilling fluid supply system comprising at least one water holding tank and a high pressure water pump for supplying pressurized water to said downhole water hammer drill;

a drilling fluid collection system comprising at least one drilling fluid collection tank, and at least one sludge lift pump; and

a drilling fluid recycling apparatus comprising at least one shaking screen particle separator, at least one cyclonic particle separator, at least one drill cuttings holding hopper and at least one drill cutting disposal container, for providing a recycled drilling fluid stream to said drilling fluid supply system.

13. The low headroom confined space drilling system according to claim 12 , wherein said drilling apparatus additionally comprises an automatic control system for controlling at least the operation of said downhole pressurized water hammer drill and said automated drill rod loading apparatus.

14. A method of installing a geoexchange borehole in an interior space of a building, comprising:

installing a borehole access chamber in a floor slab of said building at a desired borehole location;

positioning a low headroom floor supported rotary drilling apparatus comprising a drill rod string over the borehole access chamber at the desired borehole location;

providing a pressurized drilling fluid to said drill rod string of said drilling apparatus with a drilling fluid supply system and powering a rotary downhole drilling device attached to said drill rod string to advance said borehole to a desired depth;

recovering a drilling fluid and drill cuttings returned from said borehole during drilling and removing said drilling fluid and drill cuttings from at least one of:

said borehole; and

said borehole access chamber; and

conveying said drilling fluid and drill cuttings to a drilling fluid recycling

apparatus using a drilling fluid recovery system;

removing at least a substantial portion of said drill cuttings from said recovered drilling fluid and drill cuttings using said drilling fluid recycling apparatus; and

returning a recycled drilling fluid substantially cleaned of said drill cuttings to said drilling apparatus using said drilling fluid supply system;

wherein said drilling fluid recycling apparatus comprises at least one of: a primary shaking screen particle separator; and a primary cyclonic particle separator.

15. The method of installing the geoexchange borehole in the interior space of the building according to claim 14 , additionally comprising installing at least one return loop of geoexchange piping in said geoexchange borehole.

Assignments (2)
CHANGE OF NAME Recorded Aug 1, 2012
From: GEOCON ENERGY SOLUTIONS LTD.
To: FENIX ENERGY SOLUTIONS LTD.
Reel/Frame 028700/0765 →
NUNC PRO TUNC ASSIGNMENT Recorded May 12, 2011
From: KING, THOMAS ROSS
To: GEOCON ENERGY SOLUTIONS LTD.
Reel/Frame 026271/0083 →
Continuity (2)
Provisional Application 61444060 · Feb 17, 2011
Related Publication 20120211281A1 · Aug 23, 2012