IP Library Granted Patent US 8,424,550
Granted Patent B2
US 8,424,550 · App. 12/724,927 · Granted Apr 23, 2013

Fluid drainage system and methods

Inventor: Jon Lips (Parker, CO)
Assignee: Virid Services, LLC
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Quick Facts
Patent No.
US 8,424,550
App. No.
12/724,927
Granted
Apr 23, 2013
Kind
B2
Abstract

A method for operating a fluid drainage control system to drain a fluid from a fluid dispensation system is provided. The method includes determining a first ambient air temperature, determining if the first ambient air temperature is less than a predetermined drain set point temperature, isolating the fluid dispensation system from a fluid supply source by closing a supply valve located inside a temperature controlled area in response to the first ambient air temperature being less than the predetermined drain set point temperature, and draining the fluid from the fluid dispensation system by opening a drain valve subsequent to closing the supply valve. The method further includes determining a second ambient air temperature, determining if the second ambient air temperature is greater than a predetermined operation set point temperature, closing the drain valve in response to the second ambient air temperature being greater than the predetermined operation set point temperature, and opening the supply valve subsequent to closing the drain valve.

Claims (56)

1. A method for operating a fluid drainage control system to drain a fluid from a fluid dispensation system comprising:

determining a first ambient air temperature;

determining if the first ambient air temperature is less than a predetermined drain set point temperature;

isolating the fluid dispensation system from a fluid supply source by closing a supply valve located inside a temperature controlled area in response to the first ambient air temperature being less than the predetermined drain set point temperature;

draining the fluid from the fluid dispensation system by opening a plurality of drain valves subsequent to closing the supply valve, wherein at least one valve of the plurality of drain valves corresponds to each of a plurality of sections of the fluid dispensation system, wherein each of the plurality of sections is located at a different elevation;

determining a second ambient air temperature;

determining if the second ambient air temperature is greater than a predetermined operation set point temperature;

closing the drain valve in response to the second ambient air temperature being greater than the predetermined operation set point temperature; and

opening the supply valve subsequent to closing the plurality of drain valves.

2. The method of claim 1 wherein the fluid dispensation system comprises a fluid backflow prevention device;

wherein one of the plurality of drain valves is on the input side of the backflow prevention device; and

wherein a second of the plurality of drain valves is on the output side of the backflow prevention device.

3. The method of claim 1 wherein the fluid drainage control system controls a plurality of supply valves.

4. The method of claim 1 wherein the fluid drainage control system disables fluid distribution valves in the fluid dispensation system in response to the first ambient air temperature being less than the predetermined drain set point temperature.

5. The method of claim 1 wherein the fluid drainage control system electrically actuates the supply valve and electrically actuates the plurality of drain valves.

6. The method of claim 5 wherein the supply valve is in a normally open state when not energized.

7. The method of claim 5 wherein the plurality of drain valves are in a normally closed state when not energized.

8. The method of claim 5 wherein the supply valve or each of the plurality of drain valves is a latched solenoid valve.

9. The method of claim 1 wherein the predetermined drain set point temperature is different than the operation set point temperature.

10. The method of claim 1 wherein the fluid drainage control system is implemented within a fluid dispensation system controller.

11. A fluid drainage control system for draining fluid from a fluid dispensation system comprising:

a communication interface configured to receive and transmit control signals;

a processing system coupled to the communication interface and configured to:

receive a first control signal through the communication interface indicating a first ambient temperature;

determine if the first ambient air temperature is less than a predetermined drain set point temperature;

isolate the fluid dispensation system from a fluid supply source by sending a second control signal through the communication interface to close a supply valve located inside a temperature controlled area in response to the first ambient air temperature being less than the predetermined drain set point temperature;

drain the fluid from the fluid dispensation system by sending a third control signal through the communication interface to open a plurality of drain valves subsequent to sending the second control signal, wherein at least one valve of the plurality of drain valves corresponds to each of a plurality of sections of the fluid dispensation system, wherein each of the plurality of sections is located at a different elevation;

receive a fourth control signal through the communication interface indicating a second ambient temperature;

determine a second ambient air temperature;

determine if the second ambient air temperature is greater than a predetermined operation set point temperature;

close the plurality of drain valves in response to the second ambient air temperature being greater than the predetermined operation set point temperature by sending a fifth control signal through the communication interface; and

open the supply valve by sending a sixth control signal through the communication interface subsequent to sending the fifth control signal.

12. The fluid drainage control system of claim 11 wherein the fluid dispensation system comprises a fluid backflow prevention device;

wherein one of the plurality of drain valves is on the input side of the backflow prevention device; and

wherein a second of the plurality of drain valves is on the output side of the backflow prevention device.

13. The fluid drainage control system of claim 11 wherein the processing system controls a plurality of supply valves.

14. The fluid drainage control system of claim 11 wherein the processing system disables fluid distribution valves in the fluid dispensation system in response to the first ambient air temperature being less than the predetermined drain set point temperature.

15. The fluid drainage control system of claim 11 wherein the processing system electrically actuates the supply valve and electrically actuates the plurality of drain valves.

16. The fluid drainage control system of claim 11 wherein the predetermined drain set point temperature is different than the operation set point temperature.

17. The fluid drainage control system of claim 11 wherein the processing system is implemented within a fluid dispensation system controller.

18. A fluid drainage control system for draining fluid from a fluid dispensation system comprising:

a temperature sensor;

at least one supply valve;

a plurality of drain valves;

fluid dispensation pipe;

a communication interface configured to receive and transmit control signals;

a processing system coupled to the communication interface and configured to:

receive a first control signal through the communication interface from the temperature sensor indicating a first ambient temperature;

determine if the first ambient air temperature is less than a predetermined drain set point temperature;

isolate the fluid dispensation pipe from a fluid supply source by sending a second control signal through the communication interface to close the supply valve in response to the first ambient air temperature being less than the predetermined drain set point temperature;

drain the fluid from the fluid dispensation pipe by sending a third control signal through the communication interface to open the plurality of drain valves subsequent to sending the second control signal, wherein at least one valve of the plurality of drain valves corresponds to each of a plurality of sections of the fluid dispensation system, wherein each of the plurality of sections is located at a different elevation;

receive a fourth control signal from the temperature sensor through the communication interface indicating a second ambient temperature;

determine a second ambient air temperature;

determine if the second ambient air temperature is greater than a predetermined operation set point temperature;

close the plurality of drain valves in response to the second ambient air temperature being greater than the predetermined operation set point temperature by sending a fifth control signal through the communication interface;

open the supply valve by sending a sixth control signal through the communication interface subsequent to sending the fifth control signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 16, 2010
From: LIPS, JON
To: VIRID SERVICES, LLC
Reel/Frame 024087/0828 →
Continuity (1)
Related Publication 20110226800A1 · Sep 22, 2011