IP Library Granted Patent US 9,835,267
Granted Patent B2
US 9,835,267 · App. 13/605,821 · Granted Dec 5, 2017

Valve packing fugitive emission detection system

Inventors: Fabio Giove (Gioia del Colle, IT); Jalil Abrahimzadeh (Mission Viejo, CA)
Assignee: Control Components, Inc.
F16K41/04F16J15/004F16J15/183F16J15/3296F16K37/0083F16K37/0091G01M3/224G01M3/2876Y10T137/7761
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Quick Facts
Patent No.
US 9,835,267
App. No.
13/605,821
Granted
Dec 5, 2017
Kind
B2
Abstract

In accordance with the resent invention, there is provided a fugitive emission detection system for use in conjunction with a valve having a packing deign which includes a primary packing and a secondary packing. The valve further includes a leak port which is disposed within the valve bonnet between the primary and secondary packings. The detection system is operative to maintain the leak port in a normally open state. As a result, any fluid leakage past the primary packing is normally sent to the detection system, as opposed to being applied to and thus pressurizing the secondary packing. In the event of that a prescribed level of fluid leakage beyond the primary packing is detected, the leak port will be closed. The closure of the leak port facilitates the pressurization of the secondary packing.

Claims (77)

1. A fugitive emission detection system, comprising:

a valve comprising a housing which defines a passageway having a valve stem extending at least partially therethrough, the passageway having a first section that is of a first diameter and a second section that is of a smaller second diameter, the housing having a leak port formed therein which fluidly communicates with the passageway, and extends from the passageway to an outer surface of the housing;

a conduit fluidly coupled to the leak port and being separate from the housing;

an on-off valve fluidly connected to the leak port via the conduit, the on-off valve being in a normally open position and selectively movable to a closed position, the leak port and on-off valve being configured to allow fluid to be exhausted from the passageway and exit the housing through the leak port when the on-off valve is in the open position;

a primary packing located upstream of the leak port in the first section of the passageway such that fluid entering the leak port flows past the primary packing;

a secondary packing located downstream of the leak port in the first section of the passageway such that the secondary packing is actuated in response to movement of the on-off valve to the closed position, the primary packing and the secondary packing being configured and arranged to enable application of a compressive load thereto applied from a common source;

a leak detection unit fluidly connected to the on-off valve;

a programmable logic unit electrically connected to the on-off valve and the leak detection unit and being operative to carry out a leak test according to preset parameters; and

a positioner electrically connected to the logic unit and mechanically coupled to the valve stem;

the logic unit being operative to receive information from the positioner and recurrently initiate the leak test based on the information received from the positioner;

the logic unit further being operative to selectively actuate the on-off valve from the open position to the closed position in response to a signal generated by the leak detection unit indicative of a leak within the valve attributable to flow of a fluid from the passageway into the leak detection unit via the leak port.

2. The detection system of claim 1 wherein the positioner is adapted to monitor at least one of:

a number of cycles of the valve stem;

a total stroke of the valve stem; and

a time of operation of the valve.

3. The detection system of claim 1 further comprising:

a lantern ring interposed between the primary and secondary packings and configured to enable fluid to pass therethrough as such fluid flows from the passageway in the housing to the leak port;

the leak port fluidly communicating with the passageway at a location between the primary and secondary packings.

4. The detection system of claim 1 further comprising:

a packing follower at least partially positioned between the primary and secondary packings;

the leak port fluidly communicating with the passageway at a location between the primary and secondary packings.

5. The detection system of claim 4 wherein the primary packing comprises:

an upper packing member;

a lower packing member; and

a fluid barrier interposed between the upper and lower packing members.

6. The detection system of claim 5 wherein the housing of the valve further includes an injection port which is formed therein and fluidly communicates with the passageway at a location between the upper and lower packing members for facilitating the introduction of the fluid barrier therebetween.

7. A fugitive emission detection system, comprising:

a valve comprising a housing having a leak port formed therein;

a conduit separate from the housing, fluidly coupled to the leak port and extending from the housing;

an on-off valve fluidly connected to the leak port via the conduit, the on-off being in a normally open position and selectively movable to a closed position, the leak port and on-off valve being configured to allow fluid to be exhausted from and exit the housing through the leak port when the on-off valve is in the open position;

a primary packing located upstream of the leak port such that fluid entering the leak port flows past the primary packing;

a secondary packing located downstream of the leak port such that the secondary packing is actuated in response to movement of the on-off valve to the closed position, the primary packing and the secondary packing being configured and arranged to enable application of a compressive load thereto applied from a common source;

a leak detection unit fluidly connected to the on-off valve;

a programmable logic unit electrically connected to the on-off valve and the leak detection unit and being operative to carry out a leak test according to preset parameters; and

a positioner electrically connected to the logic unit and mechanically coupled to the valve;

the logic unit being operative to receive information from the positioner and recurrently initiate the leak test based on the information received from the positioner;

the logic unit further being operative to selectively actuate the on-off valve from the open position to the closed position in response to a signal generated by the leak detection unit indicative of a leak within the valve attributable to flow of a fluid into the leak detection unit via the leak port.

8. The detection system of claim 7 wherein the positioner is adapted to monitor at least one of:

a number of cycles of a valve stem of the valve;

a total stroke of the valve stem; and

a time of operation of the valve.

9. The detection system of claim 7 further comprising:

a lantern ring interposed between the primary and secondary packings;

the leak port fluidly communicating with the passageway at a location between the primary and secondary packings.

10. The detection system of claim 7 further comprising:

a packing follower at least partially positioned between the primary and secondary packings;

the leak port fluidly communicating with the passageway at a location between the primary and secondary packings.

11. The detection system of claim 10 wherein the primary packing comprises:

an upper packing member;

a lower packing member; and

a fluid barrier interposed between the upper and lower packing members.

12. The detection system of claim 11 wherein the housing of the valve further includes an injection port which is formed therein and configured to facilitate the introduction of the fluid barrier between the upper and lower packing members.

13. A fugitive emission detection system, comprising:

a valve comprising a housing which defines a non-uniform diameter passageway having a valve stem extending at least partially therethrough, a packing system which is at least partially disposed within the passageway between the valve stem and the housing, and a leak port which is formed in the housing and fluidly communicates with the passageway;

a conduit fluidly separate from the housing, coupled to the leak port and extending from the housing;

a control valve fluidly connected to the leak port via the conduit and transitional between a first position and a second position, the control valve and leak port being configured to allow fluid to be exhausted from and exit the housing through the leak port when the control valve is in the first position, the control valve being normally in the first position;

a primary packing located upstream of the leak port such that fluid entering the leak port flows past the primary packing;

a secondary packing located downstream of the leak port such that the secondary packing is actuated in response to movement of the control valve to the closed position, the primary packing and the secondary packing being configured and arranged to enable application of a compressive load thereto applied from a common source;

a leak detection unit fluidly connected to the control valve;

a programmable logic unit electrically connected to the control valve and the leak detection unit and being operative to carry out a leak test according to preset parameters; and

a positioner electrically connected to the logic unit and mechanically coupled to the valve stem; and

the logic unit being operative to receive information from the positioner and recurrently initiate the leak test based on the information received from the positioner;

the logic unit further being operative to selectively actuate the control valve from a first position to a second position in response to a signal generated by the leak detection unit indicative of a leak within the valve attributable to flow of a fluid from the passageway into the leak detection unit via the leak port, the movement of the control valve from the first position to the second position being adapted to facilitate the pressurization of at least a portion of the packing system.

14. The detection system of claim 13 wherein the positioner is adapted to monitor at least one of:

a number of cycles of the valve stem;

a total stroke of the valve stem; and

a time of operation of the valve.

15. The detection system of claim 13 further comprising:

a lantern ring interposed between the primary and secondary packings;

the leak port fluidly communicating with the passageway at a location between the primary and secondary packings.

16. The detection system of claim 13 further comprising:

a packing follower at least partially positioned between the primary and secondary packings;

the leak port fluidly communicating with the passageway at a location between the primary and secondary packings.

17. The detection system of claim 16 wherein the primary packing comprises:

an upper packing member;

a lower packing member; and

a fluid barrier interposed between the upper and lower packing members.

Assignments (2)
CHANGE OF NAME Recorded Oct 29, 2025
From: CONTROL COMPONENTS, INC.
To: IMI CRITICAL ENGINEERING LLC
Reel/Frame 073433/0596 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2013
From: GIOVE, FABIO; ABRAHIMZADEH, JALAL
To: CONTROL COMPONENTS, INC.
Reel/Frame 030091/0962 →
Continuity (2)
Provisional Application 61532937 · Sep 9, 2011
Related Publication 20130061954A1 · Mar 14, 2013