System and method for a diaphragm valve controlled through measurement of water pressure and solenoid opening time
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
E03D-005/10
G01F-001/36
G05D-007/06
F16K-031/40
출원번호
US-0208832
(2014-03-13)
등록번호
US-9464422
(2016-10-11)
발명자
/ 주소
Bush, Shawn D.
출원인 / 주소
SDB IP Holdings, LLC
대리인 / 주소
The Webb Law Firm
인용정보
피인용 횟수 :
0인용 특허 :
27
초록▼
A flush valve system is provided having an inlet and an outlet, and a main valve element adapted for transition between a closed position and an open position is disclosed. The flush valve further includes a control chamber in communication with the inlet, and a vent outlet in communication with the
A flush valve system is provided having an inlet and an outlet, and a main valve element adapted for transition between a closed position and an open position is disclosed. The flush valve further includes a control chamber in communication with the inlet, and a vent outlet in communication with the outlet. The system includes a solenoid for establishing communication between the control chamber and the vent outlet to establish a pressure differential across a portion of the main valve element. The system also includes a power supply for energizing the solenoid, a deployable actuator in communication with the power supply, and a microprocessor in electrical communication with the main valve element. The microprocessor is adapted to determine a valve opening time, calculate fluid pressure based on the valve opening time, and deliver a predetermined quantity of fluid through the valve based on fluid pressure.
대표청구항▼
1. A flush valve system, comprising: a flush valve comprising:a valve body comprising a fluid inlet and a fluid outlet, and a main valve element adapted for transition between a closed position, in which the fluid inlet and the fluid outlet are in fluid isolation, and an open position, in which the
1. A flush valve system, comprising: a flush valve comprising:a valve body comprising a fluid inlet and a fluid outlet, and a main valve element adapted for transition between a closed position, in which the fluid inlet and the fluid outlet are in fluid isolation, and an open position, in which the fluid inlet and the fluid outlet are in fluid communication;a vent system comprising a control chamber in fluid communication with the fluid inlet of the valve body, and a vent outlet in fluid communication with the fluid outlet of the valve body; andan electronically operated solenoid adapted to establish fluid communication between the control chamber and the vent outlet to establish a pressure differential across a portion of the main valve element;a power supply for energizing the solenoid;an actuator in communication with the power supply; anda microprocessor in electrical communication with the flush valve adapted to: determine a valve opening time TOpen, the valve opening time being the period of time from when power is supplied to the solenoid to when a piston opens the vent outlet,calculate a fluid pressure in the vent system based on TOpen,cause operation of the flush valve to deliver a predetermined quantity of fluid through the flush valve based on the fluid pressure within the vent system, andadjust a pulse width for energizing the solenoid based on the calculated fluid pressure. 2. The flush valve system of claim 1, wherein operation of the flush valve comprises transitioning the main valve element from the closed position to the open position. 3. The flush valve system of claim 2, wherein transition of the main valve element from the closed position to the open position is initiated by a pressure differential across at least a portion of the main valve element. 4. The flush valve system of claim 3, wherein the solenoid comprises the piston configured to open the vent outlet when the solenoid is energized to establish fluid communication between the control chamber and the vent outlet. 5. The flush valve system of claim 1, wherein the microprocessor is further adapted to calculate a valve flush time TFlush associated with delivering the predetermined quantity of fluid through the flush valve based on the calculated fluid pressure. 6. The flush valve system of claim 5, wherein the microprocessor is further adapted to initiate closing of the vent outlet after the valve flush time TFlush elapses. 7. The flush valve system of claim 1, wherein the predetermined quantity of fluid is 1.6 gallons. 8. The flush valve system of claim 1, further comprising a manual override lever operatively connected to the solenoid. 9. A method of operating a flush valve in a waste water system comprising: providing a flush valve including:a fluid inlet and a fluid outlet, and a main valve element adapted for transition between a closed position, in which the fluid inlet and the fluid outlet are in fluid isolation, and an open position, in which the fluid inlet and the fluid outlet are in fluid communication;a control chamber in fluid communication with the fluid inlet;a vent outlet in fluid communication with the fluid outlet; andan electronically operated solenoid having a piston configured to open the vent outlet when the solenoid is energized to establish fluid communication between the control chamber and the vent outlet;energizing the solenoid by supplying power to the solenoid;determining a valve opening time TOpen, the valve opening time being the period of time from when power is supplied to the solenoid to when the piston opens the vent outlet;calculating a fluid pressure based on TOpen;calculating a valve flush time TFlush associated with delivering a predetermined quantity of fluid through the flush valve based on the calculated fluid pressure; closing the vent outlet after the valve flush time TFlush elapses; andadjusting a pulse width for supplying power to the solenoid based on the fluid pressure. 10. The method of claim 9, wherein the predetermined quantity of fluid is 1.6 gallons. 11. The method of claim 9, wherein the step of determining a valve opening time TOpencomprises measuring the time from when power is supplied to the solenoid to when a disruption in at least one of current and voltage occurs. 12. The method of claim 11, wherein the predetermined quantity of fluid is 1.6 gallons. 13. The method of claim 9, wherein transition of the main valve element from the closed position to the open position is initiated by a pressure differential across at least a portion of the main valve element. 14. The method of claim 9, wherein the solenoid is adapted to establish fluid communication between the control chamber and the vent outlet to establish a pressure differential across a portion of the main valve element. 15. The method of claim 9, further comprising a manual override lever operatively connected to the solenoid.
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