IP Library Granted Patent US 8,057,192
Granted Patent B2
US 8,057,192 · App. 12/362,619 · Granted Nov 15, 2011

Cyclic condensate pump having a three-way valve

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Quick Facts
Patent No.
US 8,057,192
App. No.
12/362,619
Granted
Nov 15, 2011
Kind
B2
Abstract

A condensate pump includes a condensate reservoir, a liquid level float sensor operable to sense a liquid level within the condensate reservoir, and a pressure/vent valve including a pressure source, a pressure vent, and a primary piston slidably supported in a primary cylinder and sliding in the primary cylinder responsive to the liquid level sensor. A secondary piston is slidably supported in a secondary cylinder and moves responsive to a movement of the primary piston between a first secondary-piston position wherein the pressure source is in communication with a gas space of the condensate reservoir and the pressure vent is isolated from the gas space, and a second secondary-piston position wherein the pressure source is isolated from the gas space and the pressure vent is in communication with the gas space. An aperture in the primary piston and passages may also be provided to prevent build-up of gas pressures and maintain pressures in preselected regions within the pump at atmospheric pressures.

Claims (68)

1. A condensate pump, comprising:

a condensate reservoir having

a fluid inlet,

an inlet check valve operable to prevent a flow of fluid out of the condensate reservoir through the fluid inlet and to allow a flow of fluid into the condensate reservoir through the fluid inlet,

a fluid outlet, and

an outlet check valve operable to prevent a flow of fluid into the condensate reservoir through the fluid outlet and to allow a flow of fluid out of the condensate reservoir through the fluid outlet;

a liquid level sensor operable to sense a liquid level within the condensate reservoir; and

a pressure/vent valve further comprising

a primary piston slidably supported in a primary cylinder, wherein the primary piston slides in the primary cylinder responsive to the liquid level sensor, between a first primary piston position and a second primary piston position,

the primary piston further including a vertical aperture extending from a first end of the piston to an opposite end of the piston, the opposite end in fluid communication with the condensate reservoir;

a pressure source,

a pressure vent,

a three-way valve further comprising a secondary piston slidably supported in a secondary cylinder, wherein the secondary piston slides in the secondary cylinder between a first secondary piston position in which the pressure source is in communication with a gas space of the condensate reservoir and the pressure vent is isolated from the gas space, and a second secondary piston position in which the pressure source is isolated from the gas space and the pressure vent is in communication with the gas space, and

wherein the movement of the secondary piston in the secondary cylinder is responsive to movement of the primary piston in the primary cylinder.

2. The condensate pump of claim 1 wherein the primary piston further includes a plurality of rings forming a first outer diameter and a plurality of recesses having a second outer diameter, the second outer diameter being less than the first outer diameter.

3. The condensate pump of claim 2 wherein the primary piston further includes four rings, with three recesses extending between each pair of adjacent rings.

4. The condensate pump of claim 2 wherein the recesses form cavities when the primary piston is assembled into the primary cylinder.

5. The condensate pump of claim 4 further including a plurality of passages in communication with the pressure vent.

6. The condensate pump of claim 5 that includes three cavities and further includes two passages, a first passage that is in communication with a second end of the secondary cylinder and with the pressure vent through a first cavity when the primary piston is in a first position, while isolating a first end of the secondary cylinder from the pressure vent, thereby venting the second end of the secondary cylinder through the first cavity to the pressure vent, and a second passage that is in communication with the first end of the secondary cylinder and with the pressure vent through a second cavity when the primary piston is in a second position, while isolating the second end of the secondary cylinder from the pressure vent, thereby venting the first end of the secondary cylinder through the second cavity to the pressure vent.

7. The condensate pump of claim 1 , wherein the pressure/vent valve is located exterior of the condensate reservoir while the primary piston that includes the vertical aperture extends into the condensate reservoir.

8. The condensate pump of claim 1 , wherein the pressure/vent valve is located within the condensate reservoir.

9. The condensate pump of claim 1 , further including

a reservoir pressurization line extending from the pressure source to a first intermediate location of the secondary cylinder,

a reservoir vent line extending from the vent to a second intermediate location of the secondary cylinder, and

a pressurization/vent line extending from a third intermediate location of the secondary cylinder to the gas space of the condensate reservoir.

10. The condensate pump of claim 1 , wherein the pressure/vent valve further includes

the primary piston slidably supported in the primary cylinder, wherein the primary piston slides in the primary cylinder responsive to the liquid level sensor, between a first primary-piston position and a second primary-piston position, and wherein the secondary piston slides in the secondary cylinder responsive to a movement of the primary piston between the first and second positions.

11. The condensate pump of claim 10 , further including

a main pressure drive line extending from the pressure source to an intermediate location of the primary cylinder,

a first branch pressure drive line extending from a first intermediate location of the primary cylinder to a first end of the secondary cylinder, and

a second branch pressure drive line extending from a second intermediate location of the primary cylinder to a second end of the secondary cylinder.

12. A condensate pump, comprising:

a condensate reservoir comprising

a fluid inlet,

an inlet check valve operable to prevent a flow of fluid out of the condensate reservoir through the fluid inlet and to allow a flow of fluid into the condensate reservoir through the fluid inlet,

a fluid outlet, and

an outlet check valve operable to prevent a flow of fluid into the condensate reservoir through the fluid outlet and to allow a flow of fluid out of the condensate reservoir through the fluid outlet;

a liquid level sensor operable to sense a liquid level within the condensate reservoir, wherein the liquid level sensor comprises

a float within the condensate reservoir, and

an actuating arm connected to the float and movable with the float;

a pressure/vent valve located exterior to the condensate reservoir and comprising

a primary piston slidably supported in a primary cylinder, wherein the primary piston slides in the primary cylinder responsive to the liquid level sensor, between a first primary piston position and a second primary piston position,

the primary piston further including a vertical aperture extending from a first end of the piston to an opposite end of the piston, the opposite end in fluid communication with the condensate reservoir;

a pressure source,

a pressure vent,

a three-way valve further comprising a secondary piston slidably supported in a secondary cylinder, wherein the secondary piston slides in the secondary cylinder between a first secondary piston position in which the pressure source is in communication with a gas space of the condensate reservoir and the pressure vent is isolated from the gas space, and a second secondary piston position in which the pressure source is isolated from the gas space and the pressure vent is in communication with the gas space, and

wherein the movement of the secondary piston in the secondary cylinder is responsive to movement of the primary piston in the primary cylinder;

a drive pressurization structure including

a main pressure drive line extending from the pressure source to an intermediate location of the primary cylinder,

a first branch pressure drive line extending from a first intermediate location of the primary cylinder to a first end of the secondary cylinder, and

a second branch pressure drive line extending from a second intermediate location of the primary cylinder to a second end of the secondary cylinder; and

a reservoir pressurization/vent structure including

a reservoir pressurization line extending from the pressure source to a first intermediate location of the secondary cylinder,

a reservoir vent line extending from the vent to a second intermediate location of the secondary cylinder, and

a pressurization/vent line extending from a third intermediate location of the secondary cylinder to the gas space of the condensate reservoir.

13. The condensate pump of claim 12 wherein the primary piston further includes a plurality of rings forming a first outer diameter and a plurality of recesses having a second outer diameter, the second outer diameter being less than the first outer diameter.

14. The condensate pump of claim 13 wherein the primary piston further includes four rings, with three recesses extending between each pair of adjacent rings.

15. The condensate pump of claim 13 wherein the recesses form cavities when the primary piston is assembled into the primary cylinder.

16. The condensate pump of claim 15 further including a plurality of passages in communication with the pressure vent.

17. The condensate pump of claim 16 that includes three cavities and further includes two passages, a first passage that is in communication with a second end of the secondary cylinder and with the pressure vent through a first cavity when the primary piston is in a first position, while isolating a first end of the secondary cylinder from the pressure vent, thereby venting the second end of the secondary cylinder through the first cavity to the pressure vent, and a second passage that is in communication with the first end of the secondary cylinder and with the pressure vent through a second cavity when the primary piston is in a second position, while isolating the second end of the secondary cylinder from the pressure vent, thereby venting the first end of the secondary cylinder through the second cavity to the pressure vent.

18. The condensate pump of claim 12 , wherein the pressure/vent valve is located exterior of the condensate reservoir while the primary piston that includes the vertical aperture extends into the condensate reservoir.

19. The condensate pump of claim 12 , wherein the pressure/vent valve is located within the condensate reservoir.

20. The condensate pump of claim 12 , wherein the pressure/vent valve further includes

the primary piston slidably supported in the primary cylinder, wherein the primary piston slides in the primary cylinder responsive to the liquid level sensor, between a first primary-piston position and a second primary-piston position, and wherein the secondary piston slides in the secondary cylinder responsive to a movement of the primary piston between the first and second positions.

21. The condensate pump of claim 20 , further including

a main pressure drive line extending from the pressure source to an intermediate location of the primary cylinder,

a first branch pressure drive line extending from a first intermediate location of the primary cylinder to a first end of the secondary cylinder, and

a second branch pressure drive line extending from a second intermediate location of the primary cylinder to a second end of the secondary cylinder.

Assignments (8)
GRANT OF SECURITY INTEREST IN PATENT RIGHTS Recorded Nov 4, 2024
From: CIRCOR INTERNATIONAL, INC.; CIRCOR PUMPS NORTH AMERICA, LLC; SPENCE ENGINEERING COMPANY, INC.; CIRCOR AEROSPACE, INC.
To: JEFFERIES FINANCE LLC, AS COLLATERAL AGENT
Reel/Frame 069292/0137 →
RELEASE OF SECURITY INTEREST IN PATENTS, RECORDED AT REEL/FRAME 065300/0544 Recorded Oct 22, 2024
From: ARES CAPITAL CORPORATION, AS COLLATERAL AGENT
To: CIRCOR AEROSPACE, INC.; CIRCOR INTERNATIONAL, INC.; CIRCOR PUMPS NORTH AMERICA, LLC; SPENCE ENGINEERING COMPANY, INC.
Reel/Frame 069227/0202 →
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 →
PARTIAL RELEASE (REEL 045163 / FRAME 0731) Recorded Sep 3, 2019
From: DEUTSCHE BANK AG NEW YORK BRANCH
To: SPENCE ENGINEERING COMPANY, INC.
Reel/Frame 050255/0262 →
RELEASE OF SECURITY INTEREST Recorded Dec 11, 2017
From: SUNTRUST BANK
To: CIRCOR INTERNATIONAL, INC.; CIRCOR AEROSPACE, INC.; CIRCOR INSTRUMENTATION TECHNOLOGIES, INC.; DELTAVALVE, LLC; TAPCOENPRO, LLC; SPENCE ENGINEERING COMPANY, INC.
Reel/Frame 044826/0784 →
SECURITY AGREEMENT Recorded Dec 11, 2017
From: CIRCOR AEROSPACE, INC.; CIRCOR INSTRUMENTATION TECHNOLOGIES, INC.; DELTAVALVE, LLC; SPENCE ENGINEERING COMPANY, INC.; TAPCOENPRO, LLC; COLFAX FLUID HANDLING RELIABILITY SERVICES COMPANY; CLARUS FLUID INTELLIGENCE LLC; CIRCOR INTERNATIONAL, INC.
To: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
Reel/Frame 045163/0731 →
SECURITY INTEREST Recorded May 11, 2017
From: CIRCOR INTERNATIONAL, INC.; CIRCOR AEROSPACE, INC.; CIRCOR INSTRUMENTATION TECHNOLOGIES, INC.; DELTAVALVE, LLC; TAPCOENPRO, LLC; SPENCE ENGINEERING COMPANY, INC.
To: SUNTRUST BANK
Reel/Frame 042447/0135 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 30, 2009
From: PAGE, GEORGE W., JR.; COLE, DAN WALTER
To: SPENCE ENGINEERING COMPANY, INC.
Reel/Frame 022180/0054 →