Claims
- 1. An instrument comprising:
exactly one tube that receives a sample fluid having a density; a rigid pressure housing enclosing said tube and forming an annular area between said tube and said pressure housing; a vibration source attached to said tube; exactly one vibration detector attached to said tube; and a measurement module electrically coupled to said vibration source and said vibration detector, wherein the measurement module is configured to determine a density of the sample fluid using a resonant frequency of the tube, wherein said vibration detector comprises: a first magnet mounted to said tube wherein said first magnet has a first magnetic field; a second magnet mounted to said first magnet wherein said second magnet has a second magnetic field that opposes the first magnetic field; a first coil winding mounted to said pressure housing; and a second coil winding mounted to said pressure housing adjacent to said first coil.
- 2. The instrument of claim 1 wherein said first coil winding and said second coil winding have axes of symmetry that align with axes of symmetry of said first and second magnets.
- 3. The instrument of claim 1 wherein a plane defined between said coiled windings is aligned with a plane defined between said first and second magnets.
- 4. The instrument of claim 1 wherein said coil windings are phased in opposition so as to minimize voltage generated by external magnetic fields.
- 5. An apparatus for determining the resonance frequency of a tube comprising:
a vibration generator comprising:
a first magnetic core attached to the tube; and a first coiled winding attached to a rigid housing; and a vibration detector comprising:
a second magnetic core attached to the tube; and a second coiled winding attached to the rigid housing, wherein said second magnetic core is comprised of a first magnet and a second magnet arranged so that their axes of symmetry align and their magnetic fields repel, wherein said second coiled winding comprises two coiled windings mounted end-to-end with symmetry axes aligned and electrically connected in series, and wherein a plane defined by the intersection of the first magnet and second magnet is aligned with a plane defined by the intersection of the two coiled windings.
- 6. A method for characterizing a fluid comprising:
receiving a fluid sample of a first fluid at a first temperature and first pressure into a sample tube of a measurement device; determining a first resonant frequency of the sample tube; receiving a fluid sample of a second fluid at a first temperature and first pressure into the sample tube of the measurement device; determining a second resonant frequency of the sample tube; receiving a fluid sample of a third fluid at a second temperature and second pressure into the sample tube of the measurement device; determining a third resonant frequency of the sample tube; and calculating a density of the third fluid using the third resonant frequency and compensating for any difference between the first temperature and second temperature and the first pressure and second pressure.
- 7. An instrument comprising:
no more than one tube that receives a sample fluid having a density; a rigid pressure housing enclosing said tube and forming an annular area between said tube and said pressure housing; a vibration source attached to said tube; no more than one vibration detector attached to said tube; and a measurement module electrically coupled to said vibration source and said vibration detector, wherein the measurement module is configured to determine a density of the sample fluid using a resonant frequency of the tube.
- 8. The instrument of claim 7 wherein said vibration detector comprises:
a first magnet mounted to said tube wherein said first magnet has a first magnetic field; a second magnet mounted to said first magnet wherein said second magnet has a second magnetic field that opposes the first magnetic field; a first coil winding mounted to said pressure housing; and a second coil winding mounted to said pressure housing adjacent to said first coil.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a divisional application of U.S. patent application Ser. No. 10/055,202, filed Oct. 29, 2001 and entitled “Single Tube Densitometer”, which is a continuation-in-part application of U.S. Pat. No. 6,378,364, issued Apr. 30, 2002 and entitled “Downhole Densitometer.” Such patent application and patent are hereby incorporated herein by reference.
Divisions (1)
|
Number |
Date |
Country |
Parent |
10055202 |
Oct 2001 |
US |
Child |
10729161 |
Dec 2003 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09482793 |
Jan 2000 |
US |
Child |
10055202 |
Oct 2001 |
US |