IP Library › Granted Patent US 10,935,177
Granted Patent B2
US 10,935,177 · App. 16/228,860 · Granted Mar 2, 2021

Powered emergency released coupling control and monitoring system

Inventors: Johan Lilliesköld (Färentuna, SE); Gerhard Kopplin (Lyrestad, SE); Fredrik Adamsson (Mariestad, SE); Markus Bäckström (Mariestad, SE)
Assignee: MANN TEKNIK AB
F16L55/1007B63B27/24F16L29/04F17C5/007F17C2250/072
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Quick Facts
Patent No.
US 10,935,177
App. No.
16/228,860
Granted
Mar 2, 2021
Kind
B2
Abstract

The present invention relates to a pneumatically, high pressure gas powered emergency release coupling control and monitoring system (S) comprising a powered emergency released coupling ( 1 ) arranged in a fluid-supply line ( 32 ) for conveying hazardous fluids, said powered emergency released coupling ( 1 ) comprising a couple of coupling members ( 10, 11 ) provided with mating faces ( 10 A, 11 A) for sealing engagement of the coupling members ( 10, 11 ) and formation of a pressurizable chamber ( 12 ) between said coupling members ( 10, 11 ), said system (S) comprising an actuation line ( 7 ) connected at its one end to the pressurizable chamber ( 12 ) and at its other end to a source (C) of high pressure gaseous media (G H ), preferably high pressure nitrogen gas, an first actuating device ( 4 A, 4 B) arranged in the actuation line ( 7 ), wherein said system (S) provides a gaseous media at a pilot pressure level to said pressurizable chamber ( 12 ) and to said actuation line ( 7 ) in a position downstream the first actuation device ( 4 A, 4 B) or via said pressurizable chamber ( 12 ) for detection of any leakage of gas in the control and monitoring system (S), said pilot pressure gaseous media preferably being low pressure nitrogen gas. The invention further relates to a pneumatically, high pressure gas powered emergency release coupling ( 1 ) and a control and monitoring method for such a system (S).

Claims (22)

1. A pneumatically, high pressure gas powered emergency release coupling control and monitoring system (S) comprising a powered emergency released coupling (PERC) arranged in a fluid-supply line for conveying hazardous fluids, said powered emergency released coupling comprising a couple of coupling members provided with mating faces for sealing engagement of the coupling members and formation of a pressurizable chamber between said coupling members,

said system (S) comprising an actuation line connected at its one end to the pressurizable chamber and at its other end to a source (C) of high pressure gaseous media (G H ), preferably high pressure nitrogen gas,

a first actuating device arranged in the actuation line, wherein said system (S) provides a gaseous media at a pilot pressure level to said pressurizable chamber and to said actuation line in a position downstream the first actuation device or via said pressurizable chamber for detection of any leakage of gas in the control and monitoring system (S), said pilot pressure gaseous media preferably being low pressure nitrogen gas.

2. A system (S) according to claim 1 comprising a monitoring line comprising a first pressure regulator (R 1 ), for reducing the high pressure gaseous media (G H ) from the high pressure source (C) to the pilot pressure level, and a pressure indicator (PI 5 ), for monitoring the level of the pilot pressure,

optionally the system (S) comprises a second pressure regulator (R 2 ) arranged upstream the first pressure regulator (R 1 ), for reducing the high pressure gaseous media (G H ) from the high pressure source (C) to a maneuvering pressure level between the high pressure level and the pilot pressure level.

3. A system (S) according to claim 2 , wherein said monitoring line is in fluid communication with a first source (C) of high pressure gaseous media (G H ) and the pressurizable chamber, and in that said actuation line is in fluid communication with a second source (C) of high pressure gaseous media (G H ) and the pressurizable chamber, said monitoring line and said actuation line are in fluid communication with each other via said pressurizable chamber.

4. A system (S) according to claim 2 , wherein said monitoring line is arranged in parallel with the first actuation device.

5. A system (S) according to claim 1 , wherein activation of said first actuating device is initiated by an initiating signal from a PERC activation device located in a remote position relative the actuating device.

6. A system (S) according to claim 5 comprising several PERC activation devices located in remote positions relative each other.

7. A system (S) according to claim 1 , wherein a second actuating device provided with a manual handle is arranged in parallel with the first actuating device.

8. A system (S) according to claim 1 , wherein the first actuating device is pneumatically regulated.

9. A control and monitoring method for a pneumatically, high pressure gas powered emergency release coupling (PERC) control and monitoring system (S) according to claim 1 , comprising the steps of:

a) providing the actuation line with a pilot pressure gaseous media, preferably low pressure nitrogen gas,

b) providing the pressurizable chamber with pilot pressure gaseous media,

c) detecting and controlling said pilot pressure, and

d) alerting if said pilot pressure is below a predetermined level, and optionally

e) providing the pressurizable chamber with high pressure gaseous media (G H ) by activating said actuation device in said actuation line for release of the powered emergency release coupling (PERC).

10. A control and monitoring method according to claim 9 , comprising the steps of:

f) pressure reducing the high pressure gaseous media (G H ) from the source (C) of high pressure gaseous media in a first pressure regulator (R 1 ) to a pilot pressure gaseous media, and optionally

g) pressure reducing the high pressure gaseous media (G H ) from the source (C) of high pressure gaseous media in a second pressure regulator (R 2 ) arranged upstream the first pressure regulator (R 1 ) to a maneuvering pressure level between the high pressure level and the pilot pressure level.

11. A control and monitoring method according to claim 10 , further comprising the steps of:

h) providing the pilot pressure gaseous media from the monitoring line to the actuation line via said pressurizable chamber or in parallel with the first actuation device.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 5, 2020
From: BÄCKSTRÖM, MARKUS; ADAMSSON, FREDRIK; KOPPLIN, GERHARD
To: MANN TEKNIK AB
Reel/Frame 053969/0744 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 4, 2020
From: LILLIESKÖLD, JOHAN
To: MANN TEKNIK AB
Reel/Frame 053693/0317 →
Priority Claims (1)
SE 1650978 · Jul 5, 2016 · national
Continuity (2)
Continuation PCTSE2017050731 · Jun 30, 2017
Related Publication 20190383435A1 · Dec 19, 2019
Cited By (1)
US 12,644,559