Method & apparatus for fluid flow rate and density measurement
First Claim
1. A system for measuring fluid flow through a conduit having a central axis, the device comprising:
- a first pressure responsive element for measuring dynamic and static pressure, the first pressure responsive element having a first opening at a radial position relative to the central axis, the first opening facing a direction opposite to a direction of fluid flow through the conduit;
a second pressure responsive element for measuring one of dynamic and static pressure;
the first and second pressure responsive elements allowing the determination of each of mass flow rate, volumetric flow rate and a density of the fluid; and
a structure supported in a fixed position circumjacent about the central axis, the structure reducing a cross-sectional area of the conduit in the area of the structure.
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Abstract
A fluid flow rate and density measuring apparatus is disclosed including a section of cylindrical conduit comprising a measurement section or housing for the flow sensor. The flow sensor housing is fixedly attached to a conduit at its distal ends allowing fluid to pass through the open ends of the sensor housing as fluid flows through the conduit. An elongated, streamlined, cylindrically symmetric structure is located within the housing with its longitudinal axis aligned along that of the housing thereby forcing fluid through the annular gap between the exterior of the elongated cylindrical structure and the interior wall of the sensor housing.
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Citations
37 Claims
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1. A system for measuring fluid flow through a conduit having a central axis, the device comprising:
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a first pressure responsive element for measuring dynamic and static pressure, the first pressure responsive element having a first opening at a radial position relative to the central axis, the first opening facing a direction opposite to a direction of fluid flow through the conduit; a second pressure responsive element for measuring one of dynamic and static pressure; the first and second pressure responsive elements allowing the determination of each of mass flow rate, volumetric flow rate and a density of the fluid; and a structure supported in a fixed position circumjacent about the central axis, the structure reducing a cross-sectional area of the conduit in the area of the structure. - View Dependent Claims (2, 3, 4, 5)
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6. A system for measuring fluid flow through a conduit having a central axis, the device comprising:
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a first port for measuring dynamic and static pressure, the first port having a first opening at a fixed radial position relative to the central axis, the first opening facing a direction opposite to a direction of fluid flow through the conduit; a second port for measuring static pressure, the second port having an opening facing a direction substantially perpendicular to the direction of fluid flow through the conduit; a structure supported in a fixed position circumjacent about the central axis, the structure reducing a cross-sectional area of the conduit in the area of the structure; a temperature sensor for sensing a temperature of the fluid; and a processor for determining at least one of a mass flow rate of the fluid, a volumetric flow rate of the fluid and a density of the fluid from the measurements taken by the first port, second port and temperature sensor. - View Dependent Claims (7, 8, 9, 10, 11, 12, 13, 14)
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15. A system for measuring fluid flow through a conduit having a central axis, the device comprising:
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a first port for measuring dynamic and static pressure, the first port having a first opening at a fixed radial position relative to the central axis, the first opening facing a direction opposite to a direction of fluid flow through the conduit; a second port for measuring dynamic and static pressure, the second port having a second opening at the same radial position relative to the central axis as the first opening, the second opening facing the same direction as a direction of fluid flow through the conduit; a structure supported in a fixed position circumjacent about the central axis, the structure reducing a cross-sectional area of the conduit in the area of the structure; a temperature sensor for sensing a temperature of the fluid; and a processor for determining at least one of a mass flow rate of the fluid, a volumetric flow rate of the fluid and a density of the fluid from a difference in the measurements taken by the first and second ports, and the temperature sensor. - View Dependent Claims (16, 17, 18, 19, 20, 21, 22)
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23. A method of measuring fluid flow through a conduit having a central axis, the method comprising the steps of:
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(a) decreasing a cross-sectional area across which fluid flows in a section of the conduit by positioning a structure within the conduit; (b) measuring a dynamic pressure with an inlet port having an opening in the section of conduit of decreased cross-sectional area, the opening facing upstream relative to a direction of the fluid flow; (c) measuring a static pressure with an inlet port having an opening perpendicular to the direction of fluid flow; and (d) determining the fluid flow of the fluid through the conduit based on the measurements taken in said steps (b) and (c). - View Dependent Claims (24, 25, 26, 27)
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28. A method of measuring fluid flow through a conduit having a central axis, the method comprising the steps of:
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(a) decreasing a cross-sectional area across which fluid flows in a section of the conduit by positioning a structure within the conduit; (b) measuring a dynamic pressure with one and only one inlet port having an opening in the section of conduit of decreased cross-sectional area, the opening facing upstream relative to a direction of the fluid flow; (c) measuring a static pressure with an inlet port having an opening perpendicular to the direction of fluid flow; and (d) determining the fluid flow of the fluid through the conduit based on the measurements taken in said steps (b) and (c). - View Dependent Claims (29)
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30. A method of measuring fluid flow through a conduit having a central axis, the method comprising the steps of:
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(a) measuring a first dynamic pressure of the fluid with a first inlet port at a distance from the central axis and facing a first direction relative to the fluid flow; (b) measuring a second dynamic pressure of the fluid with a second inlet port at the same distance from the central axis and facing a second direction opposite the first direction; (c) determining the fluid flow of the fluid through the conduit based on the measurements taken in said steps (a) and (b); and (d) increasing a dynamic pressure of the fluid measured in said step (a) by positioning an obstruction in the conduit in the area where the first dynamic pressure is measured to decrease a cross-sectional area of the conduit in an area where the first dynamic pressure is measured. - View Dependent Claims (31, 32, 33, 34, 35, 36, 37)
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Specification