Claims
- 1. A method of controlling a drilling operation involving rotation of a bottom hole drilling assembly carried by a drillstring, comprising:
(a) obtaining real-time sensor data regarding at least one dynamic operational parameter of said bottom hole assembly; (b) performing real-time analysis of said sensor data to calculate at least one dynamic critical value of an operator-adjustable operational parameter of said bottom hole assembly; (c) presenting to an operator a display of the real-time value of said operator-adjustable operational parameter over time along with the real-time value of said at least one dynamic critical value of said operator-adjustable operational parameter.
- 2. A method in accordance with claim 1, further comprising:
(d) providing means for an operator of said drilling operation to adjust the value of said operator-adjustable operational parameter to avoid said critical value.
- 3. A method in accordance with claim 2, wherein said operator-adjustable operational parameter comprises rotational speed of said bottom hole assembly.
- 4. A method in accordance with claim 1, wherein said real-time sensor data regarding at least one operational parameter includes without limitation vibrational data.
- 5. A method in accordance with claim 4, wherein said vibrational data includes lateral vibration data.
- 6. A method in accordance with claim 3, wherein said at least one critical value comprises a resonant frequency of said bottom hole assembly and drill string.
- 7. An apparatus for carrying out a drilling operation involving rotation of a bottom hole drilling assembly carried by a drillstring, comprising:
a sensor for obtaining real-time sensor data regarding at least one dynamic operational parameter of said bottom hole assembly; a dynamics analysis application for peforming real-time analysis of said sensor data and calculating at least one dynamic critical value of an operator-adjustable operational parameter of said bottom hole assembly; a display for presenting to an operator the real-time value of said operator-adjustable operational parameter over time along with the real-time value of said at least one dynamic critical value of said operator-adjustable operational parameter.
- 8. An apparatus in accordance with claim 7, further comprising:
means for an operator of said drilling operation to adjust the value of said operator-adjustable operational parameter to avoid said critical value.
- 9. An apparatus in accordance with claim 8, wherein said operator-adjustable operational parameter comprises rotational speed of said bottom hole assembly.
- 10. An apparatus in accordance with claim 7, wherein said real-time sensor comprises a vibrational sensor.
- 11. An apparatus in accordance with claim 10, wherein said vibrational sensor detects vibration in three orthogonal axes.
- 12. An apparatus in accordance with claim 9, wherein said at least one critical value comprises a resonant frequency of said bottom hole assembly and drill string.
- 13. A system for controlling a drilling operation involving rotation of a bottom hole drilling assembly carried by a drillstring, comprising:
a sensor for obtaining real-time sensor data regarding at least one dynamic operational parameter of said bottom hole assembly; a dynamics analysis application for peforming real-time analysis of said sensor data and calculating at least one dynamic critical value of an operator-adjustable operational parameter of said bottom hole assembly; a display for presenting to an operator the real-time value of said operator-adjustable operational parameter over time along with the real-time value of said at least one dynamic critical value of said operator-adjustable operational parameter.
- 14. A system in accordance with claim 13, further comprising:
means for an operator of said drilling operation to adjust the value of said operator-adjustable operational parameter to avoid said critical value.
- 15. A system in accordance with claim 14, wherein said operator-adjustable operational parameter comprises rotational speed of said bottom hole assembly.
- 16. A system in accordance with claim 13, wherein said real-time sensor comprises a vibrational sensor.
- 17. A system in accordance with claim 16, wherein said vibrational sensor detects vibration in three orthogonal axes.
- 18. A system in accordance with claim 15, wherein said at least one critical value comprises a resonant frequency of said bottom hole assembly and drill string.
RELATED APPLICATION
[0001] This application claims the priority of prior provisional application Ser. No. 60/440,819, filed on Jan. 17, 2003, which application is hereby incorporated by reference herein in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60440819 |
Jan 2003 |
US |