Claims
- 1. A water-borne hazard detection and water treatment system, comprising:
detectors deployed at nodes along a water distribution system for detection biological microorganims or chemicals; communications deployed with said detectors at the nodes for reporting detection of the biological microorganisms or the chemical to remote monitoring systems and for receiving treatment commands from said remote monitoring systems; and treatment areas deployed at said nodes for providing ultraviolet light into water containing said biological microorganisms.
- 2. The invention of claim 1, further comprising flow sensors deployed at said nodes, wherein said sensors turn on the ultraviolet laser light sources whenever flow through nodes is sensed.
- 3. The invention of claim 1, further comprising filters deployed at at least one of input or output points relative to said nodes.
- 4. The invention of claim 1, further comprising at least one shut-off valve deployed at said nodes, said at least one shut-off valve responsive to at least one of said detectors or said remote monitoring systems by blocking water flow through said nodes.
- 5. The invention of claim 1 wherein said communications further comprises
- 6. The invention of claim 1, said treatment area further comprising a junction box having an entry point for receiving water from input tubing connected to the input portion of the junction box and an exit point for to allow treated water to continue moving towards its point of use and at least one ultraviolet laser light source coupled to the junction box.;
- 7. The invention of claim 6 wherein said ultraviolet laser light source can be provided in the form of at least one of: a fiber optic line coupled to a laser and also coupled to the junction box, or as at least one laser directly coupled to the junction box, at at least one point about the junction box.
- 8. The invention of claim 6 wherein the junction box further comprises a stainless steel, watertight housing wherein internal surfaces of the housing are highly polished to allow for reflection of light.
- 9. The invention of claim 8 wherein said junction box further comprises at least one of reflectors, deflectors and diffusers within said housing to scatter light provided by said ultraviolet laser light source.
- 10. The invention of claim 6 further including at least one of baffles or walls that are formed within the housing to create flow channels throughout the housing, wherein said at least one of baffles or walls slow down water flow within said treatment area thereby providing more opportunities for ultraviolet light exposure of water and its treatment.
- 11. The invention of claim 6 wherein said treatment area includes a housing and baffles that create chambers in a serpentine configuration for the flow of water through said chambers within the housing. Laser light sources can be provided for/within each chamber of the serpentine configuration.
- 12. The invention of claim 11 further comprising at least one ultraviolet laser light source assigned to each chamber, wherein each of said ultraviolet laser light source can be tuned to a unique wavelength.
- 13. A water-borne hazard detection and water treatment system for deployment at nodes along a water distribution system, comprising:
at least one detector, said detector for detecting the presence of biological microorganisms or chemicals in water; a communication system, said communication system for reporting detection of the biological microorganisms or the chemical by said at least one detector to at least one remote monitoring system and for receiving treatment commands from said at least one remote monitoring system; and a treatment area comprising a housing having an entry point for receiving water into said treatment area and an exit point for to allow treated water to continue moving towards its point of use and at least one ultraviolet laser light source coupled to the housing, said treatment area for providing ultraviolet light into water containing biological microorganisms.
- 14. The invention of claim 13, further comprising at least one shut-off valve responsive to said detector or said at least one remote monitoring system by preventing water flow.
- 15. The invention of claim 14 wherein said housing is watertight and comprised of stainless steel internal surfaces that are highly polished.
- 16. The invention of claim 14 wherein said housing further comprises at least one of reflectors, deflectors and diffusers to scatter light provided by said ultraviolet laser light source.
- 17. The invention of claim 5 said housing further including walls forming channels defining a serpentine configuration wherein water can flow through said channels.
- 18. A water-borne hazard detection and water treatment system, comprising:
at least one detector, said detector for detecting the presence of biological microorganisms or chemicals in water; and a communication system, said communication system for reporting detection of the biological microorganisms or the chemical by said at least one detector to at least one remote monitoring system.
- 19. The invention of claim 18 further comprising a treatment area, said treatment area including a housing having an entry point for receiving water into said treatment area and an exit point for to allow treated water to continue moving towards its point of use and at least one ultraviolet laser light source coupled to the housing, said treatment area for providing ultraviolet light into water containing biological microorganisms, wherein treatment is provided within said treatment area in response to treatment commands received from said at least one remote monitoring system through said communication system.
- 20. The invention of claim 19, wherein said housing is watertight and comprised of stainless steel internal surfaces that are highly polished, includes at least one of reflectors, deflectors and/or diffusers for scattering light-provided by said at least one ultraviolet laser light source, and includes walls that form channels which define a serpentine configuration wherein water can flow.
- 21. The invention of claim 19, further comprising a variable wavelength controller, wherein said at least one ultraviolet laser light source can be adjusted by said variable wavelength controller in response to detection by said detector, thereby enabling for precise targeting of detected microorganisms.
- 22. The invention of claim 19, further comprising:
a variable wavelength controller can be provided to adjust the wavelength of light produced by the ultraviolet laser light source in response to detection by said at least one detector.
- 23. The invention of claim 19, further comprising a flow sensor wherein said flow sensor can cause said at least one ultraviolet laser light source to be turned on whenever water flow through said treatment area is sensed.
- 24. The invention of claim 19, further comprising at least one filter deployed near at least one of said input or output points.
- 25. The invention of claim 19, further comprising at least one ultraviolet laser light source assigned to each chamber, wherein each of said ultraviolet laser light source can be tuned to a unique wavelength.
APPLICATION PRIORITY
[0001] This application claims priority to a provisional patent application Serial No. 66/364,509 filed Mar. 14, 2002 entitled “LASER WATER DETECTION, TREATMENT AND NOTIFICATION SYSTEMS AND METHODS.”
Provisional Applications (1)
|
Number |
Date |
Country |
|
60364509 |
Mar 2002 |
US |