Claims
- 1. An induction instrument comprising:
a transmitter for transmitting an electromagnetic signal into a layered formation adjacent a well bore; a receiver for receiving a signal from the formation in response to the transmitted electromagnetic signal; and a processor for analyzing the received signal for determining from the received signal polarity indicative of a direction for a boundary between layers in the well bore.
- 2. The instrument of claim 1, further comprising:
a quadrupole transmitter comprising a first transmitter coil having a moment pointing in a first direction and a second transmitter coil having a moment pointing in a direction opposite to the first direction.
- 3. The instrument of claim 2, further comprising:
a receiver positioned between the first and second transmitter coils.
- 4. The instrument of claim 3, wherein the first transmitter coil and second transmitter coil are separated by a distance of about 10 cm.
- 5. The instrument of claim 2 further comprising:
a switch for reversing a direction for a current flowing in the first transmitter coil so that the moment of the first transmitter coil and the moment of the second transmitter coil point in the same direction for obtaining array type induction measurements resistitivy data.
- 6. The instrument of claim 1, further comprising:
electronics for exciting the transmitter at frequencies ranging from 100 kHz to 2 MHz.
- 7. The instrument of claim 2, wherein the opposing transmitter coil moments cancel eddy currents associated with the transmitter coils.
- 8. The instrument of claim 1, wherein the signal received from the formation further comprises:
an in-phase and quadrature component.
- 9. The instrument of claim 1, further comprising:
A sign reversal between a signal received from an up boundary for a layer above the instrument and the signal received from a down boundary for layer below the instrument.
- 10. The instrument of claim 2, further comprising:
an array of receivers for obtaining array type induction measurements resistitivy data.
- 11. A method for determining the direction of layer in a layer formation comprising:
transmitting an electromagnetic signal into a layered formation adjacent a well bore; receiving a signal from the formation in response to the transmitted electromagnetic signal; and determining from the received signal polarity a direction for a boundary between layers in the well bore.
- 12. The method of claim 11, further comprising:
directing a current into a first transmitter of a quadrupole transmitter thereby generating a moment pointing in a first moment direction; and directing current into a second transmitter coil of a quadrupole transmitter thereby generating a moment pointing in a direction opposite to the first moment direction.
- 13. The method of 12, further comprising:
positioning a receiver between the first and second transmitter coils for receiving a signal from the formation.
- 14. The method of claim 13, further comprising:
separating the first transmitter coil and second transmitter coil by a distance of about 10 cm.
- 15. The method of claim 12 further comprising:
reversing a direction for a current flowing in the first transmitter coil so that the moment of the first transmitter coil and the moment of the second transmitter coil point in the same direction for obtaining array type induction resistivity measurement data.
- 16. The method of claim 11, further comprising:
exciting the transmitter at frequencies ranging from 100 kHz to 2 MHz.
- 17. The method of claim 12, further comprising:
generating opposing transmitter coil moments for canceling eddy currents induced associated with the transmitter coils.
- 18. The method of claim 11 further comprising:
obtaining array type induction measurements resistitivy data
- 19. The method of claim 11, further comprising:
processing an in-phase and quadrature component of the signal received from the formation.
- 20. The method of claim 11, further comprising:
detecting a sign reversal between a signal received from an up boundary for a layer above the instrument and a signal received from a down boundary for a layer below the instrument.
- 21. A computer readable medium containing instruction that when executed by a computer perform a method for determining the direction of layer in a layer formation comprising:
transmitting an electromagnetic signal into a layered formation adjacent a well bore; receiving a signal from the formation in response to the transmitted electromagnetic signal; and determining from the received signal polarity a direction for a boundary between layers in the well bore.
- 22. The medium of claim 21, further comprising:
directing a current into a first transmitter of a quadrupole transmitter thereby generating a moment pointing in a first moment direction; and directing current into a second transmitter coil of a quadrupole transmitter thereby generating a moment pointing in a direction opposite to the first moment direction.
- 23. The medium of 22, further comprising:
positioning a receiver between the first and second transmitter coils for receiving a signal from the formation.
- 24. The medium of claim 23, further comprising:
separating the first transmitter coil and second transmitter coil by a distance of about 10 cm.
- 25. The medium of claim 22 further comprising:
reversing a direction for a current flowing in the first transmitter coil so that the moment of the first transmitter coil and the moment of the second transmitter coil point in the same direction for obtaining array type induction measurements resistivity data.
- 26. The medium of claim 21, further comprising:
exciting the transmitter at frequencies ranging from 100 kHz to 2 MHz.
- 27. The medium of claim 22, further comprising:
generating opposing transmitter coil moments for canceling eddy currents induced associated with the transmitter coils.
- 28. The medium of claim 21 further comprising:
obtaining array type induction measurements resistitivy data.
- 29. The medium of claim 21, wherein the signal received from the formation further comprises:
processing an in-phase and quadrature component of the signal received from the formation.
- 30. The medium of claim 21, further comprising:
detecting a sign reversal between a signal received from an up boundary for a layer above the instrument and a signal received from a down boundary for a layer below the instrument.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This patent application claims priority from U.S. Provisional Patent Application serial No. 60/408,615 filed on Sep. 6, 2002 entitled Method and Apparatus for the Use of Multicomponent Induction Tool and Cross Component Measurements for Geosteering and Formation Resistivity Data Interpretation in Horizontal Wells” by Wang, Tabarovksy, Tchakarov, Signorelli, and Fang.
Provisional Applications (1)
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Number |
Date |
Country |
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60408615 |
Sep 2002 |
US |