IP Library Granted Patent US 9,353,621
Granted Patent B2
US 9,353,621 · App. 14/426,566 · Granted May 31, 2016

Collecting and removing condensate from a gas extraction system

Inventor: Neil Patrick Schexnaider (Rayne, LA)
Assignee: HALLIBURTON ENERGY SERVICES, INC.
E21B49/08B01D19/00B01D19/0063E21B21/067E21B43/34F04B43/0072F04B43/1223
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Quick Facts
Patent No.
US 9,353,621
App. No.
14/426,566
Granted
May 31, 2016
Kind
B2
Abstract

A gas extraction system for gas analysis is provided. The gas extraction system includes the use of a peristaltic pump for moving condensates to a liquid trap assembly. An improved fluid flow is thus provided, which includes delivering condensate from a condensate separator to a peristaltic pump and delivering the condensate from the peristaltic pump to a liquid trap assembly.

Claims (26)

1. A gas extraction system for gas analysis, comprising:

a degasser for separating gasses out of drilling fluid;

a vortex cooler for removing heat from separated gasses;

a condensate separator for separating cooled gas laden with condensates;

a peristaltic pump for moving condensates to a liquid trap assembly; and

a liquid trap assembly for receiving condensates from the peristaltic pump.

2. The gas extraction system of claim 1 , wherein the peristaltic pump comprises an air motor.

3. The gas extraction system of claim 1 , wherein the peristaltic pump comprises tubing of a material suitable for withstanding drilling fluid condensates and intermittent occlusion and restitution.

4. The gas extraction system of claim 1 , wherein the peristaltic pump comprises a rotor and at least two protrusions.

5. The gas extraction system of claim 1 , wherein the peristaltic pump comprises an inlet in fluid communication with the condensate separator and an outlet in fluid communication with the liquid trap assembly.

6. The gas extraction system of claim 1 , wherein the liquid trap assembly returns condensates to a drilling fluid flow.

7. The gas extraction system of claim 1 , wherein the peristaltic pump comprises an inlet, an outlet, tubing extending between the inlet and the outlet, and a rotor having at least first and second protrusions, and wherein the pump is self-sealing due to pressure on the tubing from the first protrusion near the inlet and pressure on the tubing from the second protrusion near the outlet.

8. The gas extraction system of claim 1 , wherein the peristaltic pump provides a pump rate of about 10-50 cc/min.

9. The gas extraction system of claim 1 , wherein the peristaltic pump further comprises a gearbox between a pump head and an motor to increase torque, change pump head speed, or both.

10. A method for extracting gas from a fluid using a gas extraction system, comprising:

releasing gasses from the fluid by a degasser;

delivering released gasses from the degasser to a vortex cooler;

cooling the released gasses to provide a cooled sample gas laden with condensate;

delivering the cooled sample gas laden with condensate from the vortex cooler to a condensate separator;

separating sample gas from condensates;

delivering sample gas from the condensate separator to an analyzer;

delivering condensate from the condensate separator to a peristaltic pump;

pumping the condensate to a liquid trap assembly.

11. The fluid flow of claim 10 , wherein the peristaltic pump comprises an air motor and tubing of a material suitable for withstanding drilling fluid condensates and continued intermittent occlusion and restitution.

12. The fluid flow of claim 10 , wherein the peristaltic pump comprises an inlet in fluid communication with the condensate separator and an outlet in fluid communication with the liquid trap assembly.

13. The fluid flow of claim 10 , wherein the liquid trap assembly collects condensates and returns the condensates to a drilling fluid flow via a return pump.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 6, 2015
From: SCHEXNAIDER, NEIL PATRICK
To: HALLIBURTON ENERGY SERVICES, INC.
Reel/Frame 035104/0124 →
Continuity (2)
Provisional Application 61879741 · Sep 19, 2013
Related Publication 20160032720A1 · Feb 4, 2016