Claims
- 1. An apparatus for mixing fluids, comprising:
a fluid delivery line adapted to communicate with a first fluid source; a ratio controller disposed within the fluid delivery line, the ratio controller comprising a first restriction area, the first restriction area being adapted to receive a second fluid; a flow control valve in communication with the fluid delivery line at the first restriction area, the flow control valve comprising an area controlling device having an adjustable second restriction area; an electrically driven fluid pump introducing the second fluid from a second fluid source, the fluid pump being connected to the flow control valve to deliver the second fluid to the first restriction area via the second restriction area; a pressure sensing module sensing a pressure of the first fluid upstream of the first restriction area, and sensing a pressure of the second fluid upstream of the second restriction area; an interface for setting a relative flow amount of the second fluid compared to the first fluid; and a control computer in communication with the pressure sensing module and the fluid pump, the control computer processing the pressures measured from the pressure sensing module, the control computer sending command signals to the fluid pump to modulate the pressure of the second fluid such that the pressure of the second fluid is maintained substantially equal to the pressure of the first fluid; whereby when the pressures of the first and second fluids are substantially equal, a ratio defined by the first restriction area to the second restriction area determines the relative flow amount of the second fluid compared to the first fluid.
- 2. The apparatus according to claim 1, wherein the apparatus is a fire fighting apparatus, the first fluid is water, and the second fluid is a firefighting foam concentrate.
- 3. The apparatus according to claim 1, wherein the pressure sensing module comprises first and second pressure transducers, the first pressure transducer sensing the pressure from the flow of the first fluid from the first fluid source, the second pressure transducer sensing the pressure from the flow of the second fluid from the second fluid source, wherein the control computer is operatively connected with the first and second pressure transducers, and the control computer processes the pressures measured from the first and second pressure transducers.
- 4. The apparatus according to claim 1, wherein the control computer uses an algorithm based on the pressures of the first and second fluids to determine the command signals to send to the fluid pump.
- 5. The apparatus according to claim 1, wherein gravity feed from the second fluid source is not required.
- 6. The apparatus according to claim 1, wherein the pump generates sufficient force to pull the second fluid upward a vertical distance from the second fluid source.
- 7. The apparatus according to claim 1, wherein the pump generates sufficient force to pull the second fluid upward a vertical distance of at least six feet from the second fluid source.
- 8. The apparatus according to claim 1, further comprising a pick up tube adapted to provide fluid communication between the second fluid source and the fluid pump.
- 9. The apparatus according to claim 1, wherein the pump is adapted to pump either type A firefighting foam or type B firefighting foam as a second fluid.
- 10. The apparatus according to claim 1, wherein the flow control valve is adapted controllably dispense either type A firefighting foam or type B firefighting foam as a second fluid.
- 11. The apparatus according to claim 1, wherein the flow control valve is adapted to controllably dispense the first and second fluids such that a concentration of the second fluid at least includes a range of 0.1% to 3%.
- 12. The apparatus according to claim 1, wherein the flow control valve comprises:
a valve body defining an outflow opening therein, and a valve stem having an end thereof disposed at least partially in the outflow opening so as to control a flow of the second fluid therethrough, the outflow opening and the valve stem end cooperating to comprise the second restriction area, wherein the second restriction area is a portion of the outflow opening that is unobstructed by the valve stem end; a helical groove defined in the valve stem; and a positioning pin connected to the body and engaged with the helical groove, such that rotating the valve stem causes the stem to move linearly so as to change the portion of the outflow opening that is unobstructed by the valve stem end.
- 13. The apparatus according to claim 12, wherein:
a pitch of the helical groove is such that the flow control valve is adapted to controllably dispense the first and second fluids such that a concentration of the second fluid at least includes a range of 0.1% to 3%.
- 14. The apparatus according to claim 12, wherein:
a pitch of the helical groove is not steeper than 0.003 inches per degree of rotation.
- 15. The apparatus according to claim 12, wherein:
a pitch of the helical groove is such that valve stem engages the positioning pin to such a degree that operating pressures are insufficient to cause linear movement of the valve stem.
- 16. The apparatus according to claim 12, wherein a pitch of the helical groove varies along a length of the helical groove.
- 17. The apparatus according to claim 1, wherein the ratio controller includes a diameter corresponding to a diameter of the fluid delivery line.
- 18. The apparatus according to claim 12, wherein the valve stem comprises a thicker shaft portion with the helical groove defined therein.
- 19. The apparatus according to claim 18, wherein a diameter of the ratio controller is approximately 2.0 inches to about 8.0 inches.
- 20. The apparatus according to claim 19, wherein the diameter of the ratio controller is approximately 2.5 inches and a diameter of the first restriction area is approximately 1.155 inches at a center of the first restriction area.
- 21. The apparatus according to claim 1, wherein the first restriction area is defined by a ported annulus extending inward from an inner sidewall of a portion of the fluid delivery line.
- 22. The apparatus according to claim 1, wherein the first restriction area defines a venturi section.
- 23. The apparatus according to claim 1, wherein the first restriction area is a tapered restriction.
- 24. The apparatus according to claim 23, wherein the tapered restriction is a smoothly-tapered restriction.
- 25. The apparatus according to claim 21, wherein the first restriction area comprises a restriction vortex, the restriction vortex defining a low-pressure area, and wherein the ported annulus is disposed at the restriction vortex permitting access to the low-pressure area.
- 26. The apparatus according to claim 25, wherein the fluid control valve is a variable cone valve.
- 27. The apparatus according to claim 1, further comprising waterproof electrical connections between the interface and at least one of the group consisting of the pressure sensing module, the control computer, the fluid pump, and the motor.
- 28. The apparatus according to claim 1, further comprising unique plug connections between the interface and at least one of the group consisting of the pressure sensing module, the control computer, the fluid pump, and the motor.
- 29. The apparatus according to claim 1, wherein the interface is distal from at least one of the group consisting of the pressure sensing module, the control computer, the fluid pump, and the motor.
- 30. The apparatus according to claim 1, wherein the interface is incorporated into a control module, and at least one of the group consisting of the pressure sensing module, the control computer, the fluid pump, and the motor are incorporated into an active module.
- 31. The apparatus according to claim 1, further comprising a skid, wherein at least the one of the group consisting of the pressure sensing module, the control computer, the fluid pump, and the motor are disposed in the skid.
- 32. The apparatus according to claim 31, wherein the interface is disposed on the skid.
- 33. A kit for a fluid mixing apparatus, comprising:
a control module, comprising:
an interface for setting a relative flow amount of a second fluid compared to a first fluid; a fluid control valve in communication with the interface, the fluid control valve being adapted to receive the second fluid therein, the fluid control valve comprising an area controlling device having an adjustable second restriction area; and an active module, comprising:
a ratio controller adapted to be disposed within a fluid delivery line for the first fluid from a first fluid source, the ratio controller comprising a first restriction area, the first restriction area being adapted to receive the second fluid via the second restriction area; an electrically driven fluid pump adapted to introduce the second fluid from a second fluid source, the fluid pump being connected to the flow control valve to deliver the second fluid to the first restriction area via the second restriction area; a pressure sensing module sensing a pressure of the first fluid upstream of the first restriction area, and sensing a pressure of the second fluid upstream of the second restriction area; and a control computer in communication with the pressure sensing module and the fluid pump, the control computer processing the pressures measured from the pressure sensing module, the control computer sending command signals to the fluid pump to modulate the pressure of the second fluid such that the pressure of the second fluid is maintained substantially equal to the pressure of the first fluid; whereby when the pressures of the first and second fluids are substantially equal, a ratio defined by the first restriction area to the second restriction area determines the relative flow amount of the second fluid compared to the first fluid.
- 34. The kit according to claim 33, wherein:
the fluid control valve is incorporated into the control module.
- 35. The kit according to claim 33, further comprising waterproof electrical connections between the interface and at least one of the group consisting of the pressure sensing module, the control computer, the fluid pump, and the motor.
- 36. The kit according to claim 33, further comprising unique plug connections between the interface and at least one of the group consisting of the pressure sensing module, the control computer, the fluid pump, and the motor.
- 37. A method of mixing fluids, comprising the steps of:
providing a delivery line, the delivery line comprising a first restriction area; introducing a first fluid into the delivery line at a first pressure; providing a fluid control mechanism for a second fluid, comprising an electrically driven fluid pump and a flow control valve comprising an adjustable second restriction area; introducing a second fluid at a second pressure for delivery to the first restriction area via the second restriction area; measuring the first and second fluid pressures with a pressure sensing module; processing the first and second fluid pressures measured by the pressure sensing module using a control computer; providing a feedback loop between the control computer and the fluid pump; sending command signals from the control computer to the fluid pump to maintain the second fluid pressure substantially equal to the first fluid pressure, whereby a relative flow amount of the second fluid to the first fluid is a ratio of the first restriction area to the second restriction area; and controlling the relative amount of the second fluid to the first fluid by controlling the second restriction area.
- 38. The method according to claim 37, wherein the pressure sensing module comprises first and second pressure transducers, further comprising the steps of:
measuring the first fluid pressure with the first transducer; measuring the second fluid pressure with the second transducer.
- 39. The method according to claim 37, further comprising the step of:
using the fluid pump to generate sufficient force to pull the second fluid upward a vertical distance from a second fluid source.
- 40. The method according to claim 37, further comprising the step of:
using the fluid pump to generate sufficient force to pull the second fluid upward a vertical distance of at least six feet from a second fluid source.
- 41. The method according to claim 37, further comprising the step of:
using a pick up tube to convey the second fluid from a second fluid source to the fluid pump.
RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Application No. 60/362,561, filed Mar. 6, 2002 and entitled FIRE SUPPRESSING DEVICE MIXING FOAM AND WATER AND METHOD OF MIXING FOAM AND WATER, which is in its entirety incorporated herewith by reference.
[0002] This application also incorporates by reference in its entirety U.S. Provisional Application No. (serial number not available as of filing), filed Mar. 6, 2003 and entitled APPARATUS & METHOD FOR COMPARING AND CONTROLLING PRESSURES, attorney docket number 13867.18USP1.
Provisional Applications (1)
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Number |
Date |
Country |
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60362561 |
Mar 2002 |
US |