Claims
- 1. A down hole tool for determining a parameter of interest for a formation fluid sample comprising:
a main sample chamber for containing a formation fluid sample; a micro sample chamber in fluid communication with the main sample chamber for containing a portion of the formation fluid sample; and an analyzer associated with the micro sample chamber for analyzing the fluid sample.
- 2. The apparatus of claim 1, wherein the micro sample chamber further comprises:
an optical conduit for passing electromagnetic energy into the micro sample chamber for optical analysis of the sample in the micro sample chamber.
- 3. The apparatus of claim 1, wherein the micro sample chamber is made of a material that allows passage of electromagnetic energy for analysis of the sample in the micro sample chamber.
- 4. The apparatus of claim 1, further comprising:
a pressure charge for maintaining a pressure on the micro sample chamber sample during egress from the well bore.
- 5. The apparatus of claim 1, further comprising:
a hydrostatic pressure bias acting on a sample inside of the micro sample chamber.
- 6. The apparatus of claim 5, further comprising:
a micro sample chamber piston for opposing a sample pump during filling of the micro sample chamber with the formation fluid sample.
- 7. The apparatus of claim 1, further comprising:
a water pressure charge for pressurizing the sample in the micro sample chamber after egress from down hole.
- 8. The apparatus of claim 1, further comprising:
a check valve for admitting fluid into the micro sample chamber and preventing fluid from exiting the micro sample chamber.
- 9. The apparatus of claim 8, further comprising:
a valve for isolating the micro sample chamber from the main sample chamber.
- 10. The apparatus of claim 9, further comprising:
a purge line for relieving pressure in a flow line between the micro sample chamber and the main sample chamber.
- 11. The apparatus of claim 1, wherein the micro sample chamber is made of a material to enable visual inspection of the sample inside of the micro sample chamber.
- 12. The apparatus of claim 1, wherein the micro sample chamber is made of a material to enable optical analysis of the sample inside of the micro sample chamber.
- 13. The apparatus of claim 1, wherein the micro sample chamber is removable from the tool for analysis of the sample at the surface by external analysis equipment.
- 14. The apparatus of claim 1, wherein the sample is removable from the micro sample chamber for analysis of the sample at the surface by external analysis equipment.
- 15. A method for determining a parameter of interest for a formation fluid sample comprising:
containing a formation fluid sample in a main sample chamber; containing a portion of the formation fluid sample in a micro sample chamber in fluid communication with the main sample chamber; and analyzing the fluid sample in the micro sample chamber with an analyzer associated with the micro sample chamber.
- 16. The method of claim 15, wherein the micro sample chamber further comprising:
passing electromagnetic energy through an optical conduit into the micro sample chamber for optical analysis of the sample in the micro sample chamber.
- 17. The method of claim 15, wherein the micro sample chamber is made of a material that allows passage of electromagnetic energy for analysis of the sample in the micro sample chamber.
- 18. The method of claim 15, further comprising:
maintaining a pressure on the micro sample chamber sample with a pressure charge for during egress from the well bore.
- 19. The method of claim 15, further comprising:
a hydrostatic pressure bias acting on a sample inside of the micro sample chamber.
- 20. The method of claim 15, further comprising:
opposing a sample pump during filling of the micro sample chamber with the formation fluid sample.
- 21. The method of claim 15, further comprising:
pressurizing the sample in the micro sample chamber after egress from down hole.
- 22. The method of claim 15, further comprising:
admitting fluid into the micro sample chamber and preventing fluid from exiting the micro sample chamber with a check valve.
- 23. The method of claim 15, further comprising:
a valve for isolating the micro sample chamber from the main sample chamber.
- 24. The apparatus of claim 23, further comprising:
relieving pressure in a flow line with a purge line connected to the flow line between the micro sample chamber and the main sample chamber.
- 25. The method of claim 15, further comprising:
visually inspecting the sample inside of the micro sample chamber.
- 26. The method of claim 15, further comprising:
optically analyzing the sample inside of the micro sample chamber.
- 27. The method of claim 15, further comprising:
removing the micro sample chamber from the tool for analysis of the sample inside of the micro sample chamber at the surface by external analysis equipment.
- 28. The method of claim 15, further comprising:
removing the sample from the microsample chamber for analysis of the sample at the surface by external analysis equipment.
- 29. A system for deploying a down hole tool for determining a parameter of interest for a formation fluid sample comprising:
a surface controller for deploying a down hole tool obtaining a formation fluid sample; a main sample chamber for containing a formation fluid sample; a micro sample chamber in fluid communication with the main sample chamber for containing a portion of the formation fluid sample; and an analyzer associated with the micro sample chamber for analyzing the fluid sample.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This patent application claims priority from U.S. Provisional Patent Application Ser. No. 60/467,668 entitled “A Method and Apparatus for an Advanced Optical Cylinder” by M. Shammai et al. filed on May 2, 2003.
Provisional Applications (1)
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Number |
Date |
Country |
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60467668 |
May 2003 |
US |