IP Library Granted Patent US 11,852,258
Granted Patent B2
US 11,852,258 · App. 17/139,366 · Granted Dec 26, 2023

Systems and methods for purging an isolation valve with a liquid purge medium

Inventor: Filiberto Jimenez (Channelview, TX)
Assignee: TapcoEnpro, LLC
F16K3/207B01D3/14B01D3/4283B08B9/0321C10G7/12C10G11/182C10G55/06B08B2209/032F16K3/0281
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Quick Facts
Patent No.
US 11,852,258
App. No.
17/139,366
Granted
Dec 26, 2023
Kind
B2
Abstract

An isolation valve purge system for an isolation valve, with internal components configured to isolate the flow of process fluid through the bottom slurry circuit line. In some embodiments the isolation valve is purged using a liquid purge medium created in the fractionation tower, such as a hydrocarbons, oils of different viscosity or a combination of hydrocarbons. A method for reducing cavitation in a pressurized line by using a hydrocarbon from the fractionation tower to purge an isolation valve process fluid flowing therethrough with a liquid purge medium.

Claims (30)

1. An isolation valve for controlling a flow of a process fluid, the isolation valve comprising:

a bonnet;

a valve body coupled to the bonnet, wherein when the valve body is filled with a liquid purge medium, the liquid purge medium creates a positive pressure to inhibit the process fluid from entering the valve body;

a blind disposed at least partially within the valve body, the blind coupled to an actuator for actuating the blind between an open configuration and a closed configuration; and

a seat comprising a purge liquid chamber, wherein when the purge liquid chamber is filled with the liquid purge medium, the purge liquid chamber expands to create a biasing force that presses the seat against the blind, thereby creating a seal between the seat and the blind.

2. The isolation valve of claim 1 , wherein the seal between the seat and the blind remains intact while the blind is in the open configuration, while the blind is in the closed configuration, and while the blind is actuating between the open configuration and the closed configuration.

3. The isolation valve of claim 1 , wherein the biasing force that presses the seat against the blind is at least 820 PSI.

4. The isolation valve of claim 1 , wherein the positive pressure of the liquid purge medium is greater than a pressure of the process fluid.

5. The isolation valve of claim 1 , wherein the seat further comprises a bellows disposed within the purge liquid chamber, wherein the bellows expands when the purge liquid chamber is filled with the liquid purge medium, thereby increasing the biasing force that presses the seat against the blind.

6. The isolation valve of claim 5 , wherein when the bellows expands, the bellows further seals the purge liquid chamber.

7. The isolation valve of claim 1 , wherein the seat further comprises a spring that augments the biasing force that presses the seat against the blind.

8. The isolation valve of claim 1 , wherein the seat further comprises a port for delivering the liquid purge medium from the valve body to the purge liquid chamber.

9. The isolation valve of claim 1 , wherein the seat further comprises a floating seat plate and a seat body.

10. The isolation valve of claim 9 , wherein the seat further comprises a shelf, and packing disposed adjacent to the shelf, wherein the packing is compliant and thereby deforms in response to mechanical forces present as the blind actuates between the open configuration and the closed configuration, consequently allowing for the floating seat plate to articulate in order to maintain the seal between the seat and the blind as the blind actuates between the open configuration and the closed configuration.

11. The isolation valve of claim 10 , wherein the shelf is disposed at an angle relative to the blind.

12. The isolation valve of claim 11 , wherein the seat further comprises a first port for delivering the liquid purge medium from the valve body to the purge liquid chamber and a second port for delivering the liquid purge medium from the valve body to the purge liquid chamber, wherein the first port is disposed adjacent to the shelf.

13. The isolation valve of claim 1 , wherein the process fluid comprises a bottom slurry distilled in a fractionation tower, and the liquid purge medium comprises hydrocarbons distilled in the fractionation tower, the hydrocarbons comprising at least one of: (i) heavy coker oils, (ii) medium coker oils, and (iii) light coker oils.

14. A valve system comprising:

a valve body;

a bonnet;

a blind;

a seat comprising:

a seat body;

a floating seat plate configured to articulate independently of the seat body; and

a biasing member that creates a seal between the seat and the blind wherein the valve system further comprises a liquid purge medium kept under positive pressure in the valve body to continually force the liquid purge medium out of the valve body and into a valve opening to prevent a process fluid from entering the bonnet or the valve body.

15. The valve system of claim 14 , wherein the valve system further comprises a port that is in fluid communication with the valve body.

16. The valve system of claim 15 , wherein the biasing member comprises a purge liquid chamber that is in fluid communication with the port, wherein when the purge liquid chamber is filled with a liquid purge medium, the purge liquid chamber expands, creating pressure that biases the floating seat plate against the seat body and against the blind.

17. The valve system of claim 16 , wherein the seat further comprises a bellows coupled to floating the seat plate so as to seal the liquid purge medium in the purge liquid chamber.

18. The valve system of claim 16 , wherein the seat further comprises a bellows, wherein when the purge liquid chamber expands, the bellows expands, further biasing the floating seat plate against the seat body and against the blind.

19. The valve system of claim 14 , further comprising packing inserted into an interface between the floating seat plate and the seat body.

Assignments (6)
SECURITY INTEREST Recorded Dec 10, 2024
From: TAPCOENPRO, LLC; DELTAVALVE, LLC
To: EAST WEST BANK, AS ADMINISTRATIVE AGENT
Reel/Frame 069544/0159 →
PARTIAL RELEASE OF SECURITY INTEREST IN PATENTS RECORDED AT R/F 065300/0544 Recorded Aug 29, 2024
From: ARES CAPITAL CORPORATION
To: DELTAVALVE, LLC; TAPCOENPRO, LLC
Reel/Frame 068797/0209 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 27, 2024
From: JIMENEZ, FILIBERTO R.
To: TAPCOENPRO, LLC
Reel/Frame 068417/0093 →
SECURITY INTEREST Recorded Oct 20, 2023
From: CIRCOR AEROSPACE, INC.; CIRCOR INTERNATIONAL, INC.; CIRCOR PUMPS NORTH AMERICA, LLC; DELTAVALVE, LLC; SPENCE ENGINEERING COMPANY, INC.; TAPCOENPRO, LLC
To: ARES CAPITAL CORPORATION, AS COLLATERAL AGENT
Reel/Frame 065300/0544 →
RELEASE OF SECURITY INTEREST Recorded Oct 20, 2023
From: TRUIST BANK, AS COLLATERAL AGENT
To: CIRCOR AEROSPACE, INC.; CIRCOR PRECISION METERING, LL; DELTAVALVE, LLC; TAPCOENPRO, LLC; CIRCOR PUMPS NORTH AMERICA, LLC; CIRCOR INTERNATIONAL, INC.
Reel/Frame 065300/0645 →
SECURITY AGREEMENT Recorded Dec 21, 2021
From: CIRCOR INTERNATIONAL, INC.; CIRCOR AEROSPACE, INC.; CIRCOR PRECISION METERING, LLC; TAPCOENPRO, LLC; DELTAVALVE, LLC; CIRCOR PUMPS NORTH AMERICA, LLC
To: TRUIST BANK
Reel/Frame 058552/0318 →