Claims
- 1. A bucket for depositing a flowable material, the bucket comprising:
- means for attaching the bucket to an aircraft;
- an opening in the bucket for discharging the material; and
- a flow controller for varying the characteristics of the flow through said opening to discharge the material at a volume flow rate as a desired function of time while the aircraft flies over a drop zone, wherein said flow controller varies the characteristics of the flow through said opening as a set function of time determined prior to initiation of discharge.
- 2. A bucket as in claim 1, wherein said flow controller varies a resistance of the flow through said opening to vary the volume flow rate therethrough.
- 3. A bucket as in claim 1, wherein said flow controller varies a configuration of the flow through said opening to vary the volume flow rate therethrough.
- 4. A bucket as in claim 1, wherein said flow controller varies the area of said opening to vary the volume flow rate therethrough.
- 5. A bucket having a predetermined configuration for depositing a flowable material, the bucket comprising:
- means for attaching the bucket to an aircraft;
- an opening in the bucket for discharging the material; and
- a flow controller for varying the characteristics of the flow through said opening to discharge the material at a volume flow rate as a desired function of time while the aircraft flies over a drop zone, wherein said flow controller varies the flow characteristics through said opening as a set function of time determined prior to initiation of discharge in accordance with the configuration of the bucket and the amount of the material in the bucket before discharge begins.
- 6. A bucket as in claim 5, wherein said flow controller varies a flow resistance through said opening to vary the flow characteristics thereof.
- 7. A bucket as in claim 5, wherein said flow controller varies a configuration of the flow through said opening to vary the flow characteristics thereof.
- 8. A bucket as in claim 5, wherein said flow controller comprises:
- a valve for varying the area of said opening; and
- a mechanism for controlling said valve to vary the area of said opening in accordance with a set function of time determined prior to initiation of discharge in accordance with the configuration of the bucket, the flow characteristics of said opening as said valve varies the area thereof, and the amount of the material in the bucket before discharge begins.
- 9. A bucket as in claim 8, wherein said mechanism includes a valve actuator having a configuration determining the set function of time.
- 10. A bucket as in claim 8, wherein the flow characteristics of said opening as said valve varies the area thereof are determined experimentally.
- 11. A bucket as in claim 8, wherein the flow characteristics of said opening as said valve varies the area thereof are determined analytically.
- 12. A bucket as in claim 5, wherein the volume flow rate is substantially constant during the deposition.
- 13. A bucket as in claim 5, wherein said means for attaching the bucket to an aircraft includes cables for suspending the bucket from a helicopter to deposit fire-retardant material, and said opening is located proximate to the bottom of the bucket when it is suspended from the helicopter.
- 14. A bucket as in claim 13, wherein said flow controller comprises:
- a valve for varying the area of said opening substantially without moving against a hydrostatic force generated on said valve by the fire-retardant material in the bucket; and
- a mechanism for controlling said valve to vary the area of said opening in accordance with a set function of time determined prior to initiation of discharge in accordance with the configuration of the bucket, the flow characteristics of said opening as said valve varies the area thereof, and the amount of the material in the bucket before discharge begins.
- 15. A bucket as in claim 14, wherein said valve comprises:
- a fixed first plate member having a plurality of first holes therethrough;
- a second plate having a plurality of second holes therethrough, said second plate being mounted to said first plate for movement relative thereto for bringing said first and second holes into varying degrees of registration to form said opening; and
- a valve actuator for moving said second plate relative to said first plate to vary the area of said opening.
- 16. A bucket as in claim 15, wherein said valve actuator has a configuration for controlling the position of said second plate to vary the area of said opening in accordance with the set function of time.
- 17. A bucket as in claim 14, wherein said valve comprises a clamshell with two hinged plates forming said opening therebetween and a valve actuator for moving said plates relative to each other to vary the area of said opening.
- 18. A bucket as in claim 13, wherein said flow controller comprises:
- a first valve for varying the area of said opening;
- a mechanism for controlling said first valve to vary the area of said opening in accordance with a set function of time determined prior to initiation of discharge in accordance with the configuration of the bucket, the flow characteristics of said opening as said valve varies the area thereof, and the amount of the material in the bucket before discharge begins;
- a second valve for preventing discharge of the material through said opening; and
- means for moving said first valve to set the area of said opening required at the initiation of discharge and thereafter rapidly opening said second valve.
- 19. A bucket as in claim 13, further comprising means for filling the bucket with a predetermined amount of fire-retardant material.
- 20. A bucket as in claim 13, further comprising means for detecting the amount of fire-retardant material in the bucket.
- 21. A bucket as in claim 13, further comprising control circuitry for determining the set function of time further in accordance with a ground coverage to be achieved by the material and the desired speed of the aircraft over the drop zone.
- 22. A bucket as in claim 13, further comprising a sensor for detecting the height of the material above said opening before a deposition is initiated.
- 23. A method for depositing a flowable material at a volume flow rate as a desired function of time, the method comprising the steps of:
- providing a bucket having an opening for discharging the material;
- attaching said bucket to an aircraft with said opening disposed proximate to the bottom of said bucket;
- filling said bucket with an amount of the material;
- flying over a drop zone with said bucket attached to the aircraft; and
- depositing the material on the drop zone at the desired volume flow rate by controlling the characteristics of the flow through said opening as a set function of time determined prior to initiation of discharge.
- 24. A method as in claim 23, wherein a resistance of the flow through said opening is controlled to vary the volume flow rate therethrough.
- 25. A method as in claim 23, wherein a configuration of the flow through said opening is controlled to vary the volume flow rate therethrough.
- 26. A method as in claim 23, wherein the area of said opening is controlled to vary the volume flow rate therethrough.
- 27. A method for depositing a flowable material at a volume flow rate as a desired function of time, the method comprising the steps of:
- providing a bucket with a predetermined configuration and an opening in the bucket for discharging the material;
- suspending said bucket from an aircraft with said opening disposed proximate to the bottom of said bucket;
- filling said bucket with an amount of the material;
- flying over a drop zone with said bucket suspended from the aircraft; and
- depositing the material on the drop zone at the desired volume flow rate by varying the characteristics of the flow through said opening as a set function of time determined prior to initiation of discharge in accordance with the configuration of said bucket and the amount of the material in said bucket before discharge begins.
- 28. A method as in claim 27, wherein a flow resistance through said opening is controlled to vary the flow characteristics therethrough.
- 29. A method as in claim 27, wherein a configuration of the flow through said opening is controlled to vary the flow characteristics therethrough.
- 30. A method as in claim 27, wherein the set function of time is determined further in accordance with a ground coverage to be achieved by the material and the desired speed of the aircraft over the drop zone.
- 31. A method for depositing a flowable fire-retardant material on a fire at a volume flow rate as a desired function of time while the aircraft flies over a drop zone, the method comprising the steps of:
- providing a bucket with a predetermined configuration and a valve for varying the area of an opening in said bucket through which the material is discharged;
- suspending said bucket from an aircraft with said opening disposed proximate to the bottom of said bucket;
- filling said bucket with an amount of the material;
- flying over a drop zone with said bucket suspended from the aircraft;
- opening said valve to an initial position to begin discharging at an initial value of the desired volume flow rate; and
- thereafter controlling said valve to vary the area of said opening in accordance with a set function of time determined prior to initiation of discharge in accordance with the configuration of said bucket, the flow characteristics of said opening as said valve varies the area thereof, and the amount of the material in said bucket before discharge begins.
- 32. A method as in claim 31, further comprising the step of terminating discharge by closing said valve when there is a predetermined amount of material remaining in said bucket.
- 33. A method as in claim 32, wherein discharge of material is terminated when the set function of time specifies that the predetermined amount of material remains in said bucket.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application claims the benefit of U.S. provisional application No. 60/077,931, filed Mar. 13, 1998.
ACKNOWLEDGEMENT OF GOVERNMENT SUPPORT
This invention is based upon work supported by the Cooperative State Research, Education, and Extension Service, U.S. Department of Agriculture, under Agreement No. 96-33610-2598.
US Referenced Citations (9)