Claims
- 1. A vortex flowmeter comprising:
- a sensor housing connected about a fluid flow conduit;
- means disposed within said conduit for generating vortices in the flow of fluid;
- a transmitter positioned within said sensor housing for propagating an ultrasonic wave through said vortices;
- an ultrasonic receiver positioned within said sensor housing for receiving said propagated wave;
- a phase detector means disposed within a circuit housing remotely located from said sensor housing, said phase detector means being connected to said transmitter and receiver for producing an output representative of any phase difference between the transmitted wave and the received wave;
- processor means disposed within said circuit housing and responsive to said phase detector means output for determining the fluid flow rate as a function of the phase difference caused by said vortices;
- an optimal phase range detecting means disposed within said circuit housing and connected to said phase detector means for detecting if said phase difference is approximately 0 degrees or 180 degrees; and
- a phase shifting means disposed within said circuit housing and connected to said optimal phase range detecting means for shifting the phase of the transmitter signal supplied to said phase detecting means by substantially 90 degrees.
- 2. The vortex flowmeter of claim 1 wherein said phase detecting means comprises an Exclusive Or gate having an output connected to a means for filtering said output into a DC component representative of the phase difference between the transmitted and received waves, and an AC component representative of the frequency of said vortices.
- 3. The vortex flowmeter of claim 2 wherein said optimal phase range detecting means is responsive to the amplitude of said DC component to determine if said phase difference is approximately 0 or 180 degrees.
- 4. The vortex flowmeter of claim 2 wherein said phase shifting means comprises a means for inverting said transmitter signal supplied to said phase detecting means, and a frequency divider for dividing said inverted signal by 2.
- 5. The vortex flowmeter of claim 1 wherein said sensor housing comprises a yoke dimensioned to slip about a bluff body conduit connector coupled to said fluid flow conduit.
- 6. The vortex flowmeter of claim 5 wherein said yoke is removably fastened about said bluff body conduit connector by a locking mechanism.
- 7. The vortex flowmeter of claim 5 wherein said transmitter and receiver are mounted within said yoke so as to be respectively positioned on opposing sides of said bluff body conduit connector.
- 8. A vortex flowmeter for measuring the flow rate of a fluid in a fluid flow conduit, said vortex flowmeter comprising:
- a bluff body conduit connector coupled into said fluid flow conduit and containing a bluff body disposed to produce vortices in the flow of fluid;
- a single-piece yoke dimensioned to slip about and removably mate with said bluff body conduit connector, said yoke being formed to slip about and removably mate with said bluff body conduit connector in a direction transverse to the direction of the fluid flow;
- an ultrasonic transmitter and receiver disposed within said yoke so as to be respectively positioned on opposing sides of said bluff body conduit connector, and with said transmitter propagating an ultrasonic wave through said vortices for receipt by said receiver;
- a phase detector means disposed within a circuit housing remotely located from said yoke, said phase detector means being connected to said transmitter and receiver for producing an output representative of any phase difference between the transmitted wave and the received wave; and
- a processor means disposed within said remote circuit housing and responsive to said phase detector means output for determining the fluid flow rate as a function of the phase difference caused by said vortices.
- 9. The vortex flowmeter of claim 8 further comprising:
- an optimal phase range detecting means disposed within said remote circuit housing and connected to said phase detector means for detecting if said phase difference is approximately 0 degrees or 180 degrees; and
- a phase shifting means disposed within said remote circuit housing and connected to said optimal phase range detecting means for shifting the phase of the transmitter signal supplied to said phase detecting means by substantially 90 degrees.
- 10. The vortex flowmeter of claim 9 wherein said phase detecting means comprises an Exclusive Or gate having an output connected to a means for filtering said output into a DC component representative of the phase difference between the transmitted and received waves, and an AC component representative of the frequency of said vortices.
- 11. The vortex flowmeter of claim 10 wherein said optimal phase range detecting means is responsive to the amplitude of said DC component to determine if said phase difference is approximately 0 or 180 degrees.
- 12. The vortex flowmeter of claim 11 wherein said phase shifting means comprises a means for inverting said transmitter signal supplied to said phase detecting means, and a frequency divider for dividing said inverted signal by 2.
- 13. The vortex flowmeter of claim 8 wherein said yoke is removably fastened about said bluff body conduit connector by a locking mechanism.
- 14. The vortex flowmeter of claim 8 wherein said yoke is constructed entirely of noncorrosive material.
CROSS-REFERENCE TO RELATED APPLICATIONS
The present invention is a continuation-in-part of copending U.S. patent application Ser. No. 08/662,037, filed on Jun. 12, 1996.
US Referenced Citations (18)
Foreign Referenced Citations (5)
Number |
Date |
Country |
0 339 016 |
Oct 1989 |
EPX |
54-121780 |
Sep 1979 |
JPX |
57-25141 |
May 1982 |
JPX |
64-78114 |
Mar 1983 |
JPX |
58-32333 |
Jul 1983 |
JPX |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
662037 |
Jun 1996 |
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