IP Library Granted Patent US 10,465,475
Granted Patent B2
US 10,465,475 · App. 15/685,271 · Granted Nov 5, 2019

Hydraulic pulse valve with improved wear life and performance

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Quick Facts
Patent No.
US 10,465,475
App. No.
15/685,271
Granted
Nov 5, 2019
Kind
B2
Abstract

Hydraulic pulses are produced each time that a pulse valve interrupts the flow of a pressurized fluid through a conduit. The pulse valve includes an elongate housing having an inlet configured to couple to the conduit to receive the pressurized fluid, and an outlet configured to couple to one or more tools. In the housing, a valve assembly includes a poppet reciprocating between open and closed positions, and a poppet seat, in which the poppet closes to partially block the flow of pressurized fluid through the valve. A bypass passage is configured to connect with a valve actuation vent port such that when the poppet closes the valve actuation pressure is less than the difference between the pressure up stream of the pulse valve and a pilot within the poppet moves between disparate positions to modify fluid paths within the valve. When the valve is open, a relatively lower pressure is produced by a Venturi effect as the fluid flows through a throat in the poppet seat, to provide a differential pressure used to move the pilot and poppet.

Claims (25)

1. A downhole pulse valve for producing pressure pulses within a conduit, comprising:

(a) an elongate housing with a central longitudinal axis and comprising:

(i) an inlet disposed on one end of the housing, said inlet being configured to couple to a source of pressurized fluid;

(ii) an outlet disposed on an opposite end of the housing, said outlet being configured to convey the pressurized fluid out of the housing;

(iii) an internal passage with a first inner diameter for conveying a pressurized fluid between the inlet and the outlet;

(iv) a poppet seat disposed adjacent to the outlet of the housing; and

(b) a valve assembly disposed within the elongate housing, the valve assembly comprising:

(i) a poppet that is reciprocally movable between a closed position in which it partially blocks pressurized fluid from flowing through the poppet seat, and an open position in which it does not block the flow of pressurized fluid through the poppet seat;

(ii) a pilot that is disposed within the poppet and reciprocates between disparate first and second positions to alter fluid communication paths within the valve assembly;

(iii) a plurality of fluid passages that are configured in fluid communication based upon positions of the pilot and of the poppet within the valve assembly, the pilot and the poppet moving in response to differential pressures developed in the valve assembly, and

(c) the poppet seat further comprising:

(i) a substantially cylindrical body comprising an outer surface and an inner throat with a second inner diameter smaller than the first inner diameter of the internal passage within the elongate housing;

(ii) a fixed internal volume radially disposed between the outer surface and the inner throat;

(iii) one or more bypass passages configured to allow a portion of the pressurized fluid to flow into the fixed internal volume when the poppet is in the closed position;

(iv) one or more vent ports configured to allow pressurized fluid to flow radially outward from the fixed internal volume and to pass through one or more of the plurality of fluid passages within the valve assembly to a variable volume within the housing at a location axially disposed between the poppet seat and the inlet of the housing.

2. The downhole pulse valve of claim 1 , wherein the poppet seat further comprises secondary vent ports configured to allow a portion of the pressurized fluid to flow from the fixed internal volume into the inner throat.

3. The downhole pulse valve of claim 1 , wherein the poppet seat further comprises:

(a) an annular seat against which the poppet abuts when in the closed position;

(b) a substantially cylindrical seat shell in axial abutment with the annular seat; and

(c) the inner throat in radial abutment with the annular seat and the seat shell.

4. The downhole pulse valve of claim 3 , wherein the bypass passages are radially disposed between the inner throat and the annular seat.

5. The downhole pulse valve of claim 3 , wherein the fixed internal volume is radially disposed between the inner throat and the seat shell.

6. The downhole pulse valve of claim 1 , wherein the outlet of the housing is configured to convey the pressurized fluid to a component that is coupled to the housing.

7. The downhole pulse valve of claim 1 , wherein the outlet of the housing is configured to convey the pressurized fluid directly into a wellbore within which the housing is located.

8. The downhole pulse valve of claim 7 , wherein the outlet of the housing comprises one or more nozzles.

Assignments (3)
SECURITY INTEREST Recorded Jan 29, 2026
From: OIL STATES ENERGY SERVICES, L.L.C.; OIL STATES INDUSTRIES, INC.; GEODYNAMICS, INC.; TEMPRESS TECHNOLOGIES, INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 074532/0194 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 16, 2021
From: OIL STATES INTERNATIONAL, INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 055314/0482 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 24, 2017
From: THEIMER, ANTHONY R.; KOLLE, JACK J.
To: TEMPRESS TECHNOLOGIES, INC.
Reel/Frame 043387/0049 →