Claims
- 1. A spray system for mounting with a prime mover to dispense a mosquito insecticide fog, the system comprising:
a nozzle; means for delivering an insecticide liquid to the nozzle; means for producing an air volume through the nozzle to entrain the insecticide liquid as particles in an air stream passing out of the nozzle; and means for controlling the air volume through the nozzle responsive to the size of the particles in the air stream.
- 2. The spray system recited in claim 1, further comprising means for varying the quantity of insecticide liquid delivered to the nozzle responsive to the speed of the prime mover.
- 3. The spray system recited in claim 1, wherein the controlling means comprises means responsive to weather conditions at the prime mover.
- 4. The spray system recited in claim 1, wherein the air volume controlling means comprises a particle detector and means for receiving an output from the particle detector and controlling the air volume responsive to predetermined criteria as a function of the particle detector output.
- 5. The spray system recited in claim 4, wherein the controlling means comprises means for comparing a desired particle size to the detected particle size.
- 6. The spray system recited in claim 5, wherein the controlling means comprises algorithms for determining the desired particle size.
- 7. The spray system recited in claim 2, wherein the liquid varying means comprises a low-volume pump, a flow sensor for detecting an output from the pump, and an electronic controller for controlling flow from the pump.
- 8. The spray system recited in claim 2, further comprising means for sensing and recording the rate of liquid delivery to the nozzle, a total of liquid delivery, location of the vehicle, a speed of the prime mover, mileage of the prime mover, weather conditions, and an estimate of liquid concentration at spray locations.
- 9. The spray system recited in claim 8, wherein the means for sensing a location of the prime mover comprises a Global Position System receiver and antenna.
- 10. The spray system recited in claim 8, wherein the means for measuring the speed of the prime mover comprises a Global Position System receiver and antenna.
- 11. The spray system recited in claim 8, wherein the means for sensing the weather conditions at the prime mover comprises a temperature sensor, a humidity sensor and wind velocity sensor mounted on the vehicle.
- 12. The spray system recited in claim 8, wherein the recording means comprises electronic data storage.
- 13. The spray system recited in claim 3, wherein the means responsive to weather conditions at the prime mover as part of the spray process control comprises a temperature sensor, a humidity sensor and a wind velocity sensor in communication with an electronic controlling means.
- 14. The spray system recited in claim 13, wherein the means responsive to weather conditions at the prime mover further comprises electronic controller algorithms for comparing the data from the weather sensors against set limits to determine if a spray process should continue, be stopped or modified.
- 15. The spray system recited in claim 9, wherein the means for sensing the prime mover location provides inputs to an electronic controller with algorithms to control changes in spray concentration or status at selected position locations.
- 16. The spray system recited in claim 4, wherein the controlling means accepts over an RS-232 link, spray control data for weather limits, liquid concentration limits at geographical locations, speed limits, and particle size requirements for various insecticide liquids.
- 17. A closed-loop system for delivering an insect spray to a treatment area, this system comprising:
means for producing an aerosol spray of the insecticide at the treatment area during a treatment period of time; and means for controlling the aerosol spray producing means responsive to realtime weather conditions at the treatment area during the treatment period.
- 18. The system recited in claim 17, further comprising means for controlling the aerosol spray producing means responsive to the real-time size of insecticide particles in the aerosol spray during the treatment period.
- 19. The system recited in claim 18, wherein the means for controlling the aerosol producing means responsive to the realOtime size of insecticide particles in the aerosol spray comprises:
a particle detector positioned to measure the size of insecticide particles in the spray; and means for receiving an output from the particle detector and providing an input representative thereof.
- 20. The system recited in claim 19, wherein the means for controlling the aerosol spray producing means comprises means for comparing a desired particle size to the detected particle size.
- 21. The system recited in claim 17, wherein the weather conditions comprise one or more of wind speed, wind direction, temperature and humidity.
- 22. The system recited in claim 21, further comprising:
a prime mover for moving the spray system through the treatment area during the treatment period; means mounted on the prime mover for sensing the weather conditions and providing an electronic output representative thereof; and an electronic controller for receiving the electronic output control signals to the means for controlling the aerosol producing spray means.
- 23. The system recited in claim 17, further comprising:
a prime mover for moving the spray system through the treatment area during the treatment period; means for controlling the aerosol spray producing means responsive to the real-time speed of the prime mover while moving through the treatment area during the treatment period.
- 24. A mobile, real-time, closed-loop system for delivering an aerosol insecticide spray to a treatment area during a treatment area of time, the system comprising:
a prime mover for moving through the treatment area during the treatment period; means mounted on the prime mover for producing an aerosol spray of the insecticide at the treatment area during the treatment period of time; means mounted on the prime mover for sensing real-time weather conditions and providing an electronic output representative thereof; means mounted on the prime mover for measuring the real-time size of insecticide particles in the aerosol spray and providing an electronic output representative thereof; and an electronic controller for receiving the electronic outputs from the weather conditions sensing means and the particle size measuring means and providing electronic control signals; and means mounted on the prime mover for receiving the control signals from the electronic controller to regulate one or both of the amount of insecticide or the particle size.
- 25. A closed-loop method for delivering an insect spray to a treatment area, the method comprising the steps of:
producing an aerosol spray of the insecticide at the treatment area during a treatment period of time; and controlling the output of the aerosol spray responsive to real-time weather conditions at the treatment area during the treatment period.
- 26. The method recited in claim 25, further comprising the step of controlling the aerosol spray output responsive to the real-time size of insecticide particles in the aerosol spray during the treatment period.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application incorporates by reference and claims priority to commonly owned Provisional Application Ser. No. 60/232,214, for “An Effective Mosquito Insecticide Delivery System and Method,” having a filing date of Sep. 13, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60232214 |
Sep 2000 |
US |