Embodiments of a method of operating a safety valve and a safety valve system are provided. The valve system includes a valve, an actuator, a mechanical override, and an indicator. The actuator includes a fail-safe mechanism and the indicator is configured to indicate whether the fail-safe mechanism
Embodiments of a method of operating a safety valve and a safety valve system are provided. The valve system includes a valve, an actuator, a mechanical override, and an indicator. The actuator includes a fail-safe mechanism and the indicator is configured to indicate whether the fail-safe mechanism is operable during use of at least one of the actuator and the mechanical override. In one embodiment, a method of operating the safety valve includes actuating the valve into an open position and sending a signal to indicate that the fail-safe mechanism is operable to move the valve to the closed position, while the valve is in the open position.
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1. A method of operating a valve; comprising: providing a system having a valve, an actuator, a mechanical override, and an indicator, wherein the actuator and the mechanical override are operable to actuate the valve to an open position and a closed position;actuating the valve into the open positi
1. A method of operating a valve; comprising: providing a system having a valve, an actuator, a mechanical override, and an indicator, wherein the actuator and the mechanical override are operable to actuate the valve to an open position and a closed position;actuating the valve into the open position using the actuator; andsending a signal from the indicator to indicate that the actuator is operable to move the valve to the closed position while the valve is in the open position, wherein the indicator includes a housing coupled to the mechanical override, an indication device coupled to the housing, and a piston seal movable within the housing to open and close fluid communication between the indication device and the actuator. 2. The method of claim 1, further comprising supplying pressurized fluid to the actuator to actuate the valve into the open position, and communicating the pressurized fluid to the indicator. 3. The method of claim 2, sending the signal using an indication device of the indicator upon sensing a predetermined pressure of the pressurized fluid supplied to the actuator. 4. The method of claim 3, further comprising moving the valve into the closed position by relieving the pressurized fluid from the actuator. 5. The method of claim 1, further comprising moving the piston seal to a position where the piston seal forms a seal with an inner surface of the housing to close fluid communication between the indication device and the actuator. 6. The method of claim 5, further comprising sending the signal from the indicator to indicate that the actuator is operable to move the valve to the closed position while the valve is in the open position and when the piston seal forms the seal with the inner surface of the housing. 7. The method of claim 6, further comprising forcing a contact member against a bias force of a biasing member to move the piston seal into engagement with the inner surface of the housing. 8. The method of claim 7, further comprising moving a drive sleeve of the mechanical override into contact with the contact member to force the contact member against the bias force of the biasing member. 9. The method of claim 1, further comprising moving the piston seal to a position where the piston seal does not form a seal with an inner surface of the housing to open fluid communication between the indication device and the actuator. 10. The method of claim 9, further comprising sending a signal from the indicator to indicate that the actuator is not operable to move the valve to the closed position while the valve is in the open position and when the piston seal does not form the seal with the inner surface of the housing. 11. The method of claim 10, further comprising applying a bias force from a biasing member to move the piston out of engagement with the inner surface of the housing. 12. The method of claim 11, further comprising moving a drive sleeve of the mechanical override out of contact with a contact member of the indicator such that the bias force of the biasing member moves the piston seal to the position where the piston seal does not form a seal with the inner surface of the housing. 13. A method of operating a valve; comprising: providing a system having a valve, an actuator, a mechanical override, and an indicator, wherein the actuator and the mechanical override are operable to actuate the valve to an open position and a closed position;actuating the valve into the open position using the actuator;sending a signal from the indicator to indicate that the actuator is operable to move the valve to the closed position while the valve is in the open position; andsending a signal from the indicator to indicate that the mechanical override will prevent the valve from moving to the closed position while the valve is in the open position. 14. A method of operating a valve; comprising: providing a system having a valve, an actuator, a mechanical override, and an indicator, wherein the actuator and the mechanical override are operable to actuate the valve to an open position and a closed position;actuating the valve into the open position using the actuator;sending a signal from the indicator to indicate that the actuator is operable to move the valve to the closed position while the valve is in the open position; andopening fluid communication between a chamber of the mechanical override and a chamber of the actuator while the valve is in the open position to actuate the indicator to send the signal. 15. The method of claim 14, further comprising closing fluid communication between the chamber of the mechanical override and the chamber of the actuator to actuate the indicator to send a signal that the mechanical override will prevent the actuator from moving into the closed position.
Allen, Jeffrey, Hydraulic valve system for controlling flow of gas into or out of a variable volume chamber of an internal combustion engine or compressor.
Schultz Roger L. (Richardson TX) Kyle Donald G. (Plano TX) Skinner Neal G. (Lewisville TX), Pressure change signals for remote control of downhole tools.
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