Claims
- 1. A method for using a vibratory resonant densitometer to characterize a fluid, the method comprising:calibrating the densitometer by determining the vibratory resonant frequency of a tubular sample cavity with each of two fluids at single controlled temperature and pressure; wherein each fluid has a different known density; receiving a sample fluid of an unknown density into the tubular sample cavity at a known temperature and pressure; determining a vibratory resonant frequency of the tubular sample cavity; calculating the unknown fluid density using the vibratory resonant frequency and compensating for the known temperature and pressure conditions of the sample fluid versus the controlled temperature and pressure conditions at which the tubular sample cavity was calibrated; wherein the compensating is dependent on the geometry and composition of the sample cavity.
- 2. A method for using a vibratory resonant densitometer to characterize a fluid, the method comprising:receiving a sample fluid into a sample cavity constructed of a sample cavity material; determining a resonant frequency of the sample cavity; calculating a fluid density using the resonant frequency and compensating for actual conditions of the sample fluid versus conditions at which the sample cavity was calibrated; wherein the fluid density (ρ) is determined in accordance with the equation: ρ=A/fn2−B wherein A and B are coefficients determined by geometry and composition of the sample cavity, and wherein fn is the natural frequency of the sample cavity.
- 3. The method of claim 2 where the coefficients A and B correspond to: A=E g(A do28π dil2)2(1-di4do4); andB=ρt(do2di2-1);where E is a modulus of elasticity of the sample cavity material; g is a gravitational constant; do is an outside diameter of the sample cavity, A is a vibration constant, di is an inner diameter of the sample cavity; l is a length of the sample cavity; and ρt is a density of the sample cavity material.
- 4. A method for using a vibratory resonant densitometer to characterize a fluid, the method comprising:receiving a sample fluid into a sample cavity constructed of a sample cavity material; determining a resonant frequency of the sample cavity; calculating a fluid density using the resonant frequency and compensating for actual conditions of the sample fluid versus conditions at which the sample cavity was calibrated; wherein the fluid density (ρf) is determined in accordance with the equation: ρf=(A(T,P)*q2(T)*k2(T,P)f2)+B(T,P);wherein T is temperature, P is pressure, A and B are coefficients determined by geometry and composition of the sample cavity, q is a thermal dependence of the sample cavity, k is a pressure dependence of the sample cavity, and f is the resonant frequency of the sample cavity.
- 5. The method of claim 4 where the coefficients A and B are represented by: A=E g(A do28π dil2)2(1-di4do4); andB=ρt(do2di2-1);where E is a modulus of elasticity of the sample cavity material; g is a gravitational constant; do is an outside diameter of the sample cavity, A is a vibration constant, di is an inner diameter of the sample cavity; l is a length of the sample cavity; and ρt is a density of the sample cavity material.
- 6. The method of claim 5 wherein coefficients A an B vary as a function of temperature and pressure.
- 7. The method of claim 6 wherein the values of A and B at sample temperature and pressure are determined using values of A and B determined at calibration temperature and pressure.
CROSS-REFERENCE TO RELATED APPLICATIONS
This is a continuation-in-part application of U.S. patent application Ser. No. 09/482,793, filed Jan. 13, 2000 now U.S. Pat. No. 6,378,364 and entitled “Downhole Densitometer,” which is hereby incorporated herein by reference.
US Referenced Citations (14)
Foreign Referenced Citations (1)
Number |
Date |
Country |
551888 |
May 1986 |
AU |
Non-Patent Literature Citations (3)
Entry |
Measurement & Control News, Sep. 1993, vol. 27, No. 4 Issue 160 12 pp. |
Mass Flowmeters, Flow Measurement, Copyright © Instrument Society of America 1991, pp. 221-247. |
Straight-Tube Mass Flow and Density Meters, Micro Motion T-Series, Product Data Sheet, PS-00371, Jun. 1999, 8 pp. |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09/482793 |
Jan 2000 |
US |
Child |
10/055202 |
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US |