IP Library › Granted Patent US 11,567,515
Granted Patent B2
US 11,567,515 · App. 16/933,472 · Granted Jan 31, 2023

Rapid dome loading pilot valve bypass

Inventors: Calvin Deng (Stafford, TX); William Bockeloh (Stafford, TX)
Assignee: Emerson Automation Solutions Final Control US LP
G05D16/16F16K15/1826F16K17/164F16K31/1245Y10T137/7758
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Quick Facts
Patent No.
US 11,567,515
App. No.
16/933,472
Granted
Jan 31, 2023
Kind
B2
Abstract

A flow arrangement for a pressure relief valve assembly can include a bypass flow path extending from a pressure source to a dome of a relief valve. The bypass flow path can include a valve that is configured to open and close the bypass flow path based on pressure at the pressure source or the dome, or a pressure difference between the pressure source and the dome.

Claims (37)

1. A flow arrangement for use with a pilot-operated relief valve that is disposed between a pressure source and an outlet and that includes a pilot valve, the flow arrangement comprising:

a dome;

a pilot-valve flow path from the pressure source to the dome;

a bypass flow path extending from the pressure source to the dome; and

a bypass valve disposed along the bypass flow path between the pressure source and the dome; the bypass valve being configured:

so that the bypass valve automatically opens the bypass flow path to flow between the pressure source and the dome in parallel with the pilot-valve flow path and increases pressure at the dome in parallel with the pilot-valve flow path, based on a pressure difference between the pressure source and the dome exhibiting a first range of pressures; and

so that the bypass valve automatically closes the bypass flow path to flow between the pressure source and the dome, based on the pressure difference between the pressure source and the dome exhibiting a second range of pressures that is lower than the first range of pressures.

2. The flow arrangement of claim 1 , wherein the bypass valve is a one-way valve configured to permit flow from the pressure source to the dome and to prevent flow from the dome to the pressure source.

3. The flow arrangement of claim 1 , with the pilot valve having a set pressure, wherein the first range of pressures is between 0% and 50% of the set pressure.

4. The flow arrangement of claim 3 , wherein the first range of pressures is between 10% and 50% of the set pressure.

5. The flow arrangement of claim 4 , wherein the first range of pressures is between 10% and 30% of the set pressure.

6. The flow arrangement of claim 3 , wherein the first range of pressures is between 0% and 30% of the set pressure.

7. The flow arrangement of claim 1 , wherein the pilot-valve flow path includes a first conduit extending between the pressure source and the pilot valve; wherein the bypass flow path includes a second conduit extending between the pressure source and the bypass valve; and wherein the first conduit and the second conduit have substantially equal flow capacities.

8. The flow arrangement of claim 7 , wherein the bypass flow path includes a third conduit extending between the bypass valve and the dome; and wherein the second and third conduits have substantially equal flow capacities.

9. The flow arrangement of claim 1 , with the pilot-operated relief valve having a set pressure, wherein the second range of pressures corresponds to pressure at the pressure source between a non-zero transition pressure and the set pressure and the first range of pressures corresponds to pressure at the pressure source below the non-zero transition pressure.

10. The flow arrangement of claim 1 , wherein the bypass flow path is configured to provide flow from the pressure source to the dome, to simultaneously load the dome, in parallel and in combination with the pilot-valve flow path.

11. A relief valve assembly, comprising:

a relief valve having a dome, an inlet of the relief valve being in fluid communication with a pressure source of a flow system, wherein the dome is configured such that the dome is pressurized by the pressure source and controls flow between the pressure source and an outlet of the relief valve;

a pilot valve;

a pilot-valve flow path extending between the pressure source and the dome via the pilot valve, such that the pilot valve is in fluid communication with the pressure source and the dome along the pilot-valve flow path, the pilot valve being configured such that the pilot valve automatically opens or closes the pilot-valve flow path between the pressure source and the dome based on changes in pressure at the pressure source;

a bypass flow path extending between the pressure source and the dome, in parallel with the pilot-valve flow path; and

a bypass valve disposed along the bypass flow path between the pressure source and the dome, wherein the bypass valve is configured such that the bypass valve automatically opens the bypass flow path, based upon pressure at the pressure source, pressure at the dome, or a pressure difference between the pressure source and the dome, fluidly coupling the pressure source and the dome so that the dome is loaded by being simultaneously pressurized via parallel flow from the pressure source to the dome along the bypass flow path and pilot-valve flow path.

12. The relief valve assembly of claim 11 , wherein the bypass valve is configured to open the bypass flow path during initial loading of the dome.

13. The relief valve assembly of claim 12 , wherein the bypass valve is configured to open the bypass flow path based upon pressure at the pressure source, pressure at the dome, or the pressure difference between the pressure source and the dome increasing to a predetermined opening threshold.

14. The relief valve of claim 12 , wherein the bypass valve is configured to close the bypass flow path upon pressure at the pressure source, pressure at the dome, or the pressure difference between the pressure source and the dome increasing to a predetermined closing threshold.

15. The relief valve assembly of claim 12 , wherein the bypass valve is configured to one or more of: open the bypass flow path based on pressure at the pressure source, pressure at the dome, or the pressure difference between the pressure source and the dome increasing to a predetermined opening threshold; or close the bypass flow path based upon pressure at the pressure source, pressure at the dome, or the pressure difference between the pressure source and the dome increasing to a predetermined closing threshold; and

wherein one or more of the predetermined opening threshold or the predetermined closing threshold is a predetermined fraction of a set pressure of the relief valve.

16. The relief valve assembly of claim 11 , wherein the pilot-valve flow path includes a first conduit extending between the pressure source and the pilot valve; and

wherein the bypass flow path includes a second conduit extending between the pressure source and the bypass valve, the second conduit having a flow capacity that is greater than a flow capacity of the first conduit.

17. A method of loading a dome of a pilot-operated relief valve that is disposed between a pressure source and an outlet, the method comprising:

providing a bypass valve along a bypass flow path between the pressure source and the dome, in parallel with a pilot-valve flow path that extends between the pressure source and the dome via a pilot valve; and

configuring the bypass valve such that the bypass valve automatically opens the bypass flow path for flow between the pressure source and the dome only for a range of pressures at the pressure source, at the dome, or for a pressure difference between the pressure source and the dome,

wherein, when the bypass valve is open, the dome is simultaneously loaded via parallel flow from the pressure source along the bypass flow path and pilot-valve flow path.

18. The method of claim 17 , wherein the range of pressures includes one or more of: a lower bound at a first predetermined percentage of a set pressure of the pilot-operated relief valve; or an upper bound at a second predetermined percentage of the set pressure of the pilot-operated relief valve; and

wherein the second predetermined percentage is greater than the first predetermined percentage.

19. The method of claim 18 further comprising: configuring the bypass valve to automatically close the bypass flow path when pressure at the pressure source, pressure at the dome, or the pressure difference between the pressure source and the dome exceeds the upper bound, so that flow to load the dome is provided along only the pilot-valve flow path via the pilot valve.

20. The method of claim 19 , wherein the set pressure of the pilot-operated relief valve is a percentage of a system set pressure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 17, 2022
From: DENG, CALVIN; BOCKELOH, WILLIAM
To: EMERSON AUTOMATION SOLUTIONS FINAL CONTROL US LP
Reel/Frame 059032/0567 →
Continuity (2)
Provisional Application 62876287 · Jul 19, 2019
Related Publication 20210018943A1 · Jan 21, 2021
Cited By (1)
US 12,209,772