IP Library Granted Patent US 10,190,381
Granted Patent B2
US 10,190,381 · App. 14/733,921 · Granted Jan 29, 2019

Variable ratio rotary energy control device for a blowout preventer safety device

Inventors: Clifford Lee Hilpert (Conroe, TX); Jeffrey Lee Hilpert (Conroe, TX)
Assignee: HilFlo, LLC
E21B33/06E21B34/16
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Quick Facts
Patent No.
US 10,190,381
App. No.
14/733,921
Granted
Jan 29, 2019
Kind
B2
Abstract

A method and apparatus for activating a safety device of a blowout preventer utilizes a variable ratio rotary energy controller. The controller automatically adjusts the pressure of the fluid for activating the safety device thereby conserving the amount of energy required for each activating cycle. The controller includes a variable displacement hydraulic motor coupled to a variable displacement hydraulic pump. A system for recharging the activating fluid circuit allows for the actuating system to be reused as needed.

Claims (25)

1. A variable ratio rotary energy control system for supplying fluid under pressure to a safety device of a blowout preventer comprising:

a source of fluid under pressure;

a variable ratio rotary energy control device comprising a variable displacement hydraulic motor portion having an output power shaft, a fluid input port and a fluid output port; a variable displacement hydraulic pump portion having an input power shaft; and a mechanical coupling between the motor output power shaft and the input power shaft of the pump;

a conduit connected between the source of fluid under pressure and the fluid input port of the motor portion of the variable ratio rotary control device;

a valve position within the conduit; wherein the variable displacement hydraulic motor portion includes a fluid outlet which is connected to a fluid inlet port of the variable displacement pump portion; and

the pump portion including said fluid inlet port and a fluid outlet, the fluid outlet of the pump being connected to a fluid inlet of the blowout preventer safety device.

2. A variable ratio rotary energy control system as claimed in claim 1 wherein the source of fluid under pressure includes one or more tanks filled with hydraulic fluid and connected to a source of gas under pressure.

3. A variable ratio rotary energy control system as claimed in claim 1 where in the source of fluid under pressure includes a vessel containing hydraulic fluid, an outlet port at a bottom of the vessel and a floating piston.

4. A variable ratio rotary energy control system as claimed in claim 1 further including a fluid container, the fluid outlet port of the motor portion being connected to the container.

5. A variable ratio rotary energy control system as claimed in claim 4 further including a fluid conduit extending between the fluid container and the safety device of the blowout preventer.

6. A variable ratio energy control device comprising:

a variable displacement hydraulic fluid motor including a fluid inlet, a fluid outlet and a drive shaft;

a variable displacement hydraulic fluid pump having a fluid inlet, a fluid outlet and an input drive shaft;

the motor drive shaft and the pump input drive shaft being coupled to each other and the fluid outlet of the variable displacement hydraulic fluid motor being connected to the fluid inlet of the variable displacement hydraulic fluid pump by a conduit, wherein the conduit between the fluid outlet of the variable displacement outlet motor and the input of the variable displacement hydraulic pump includes a “T” portion for connection to an accumulator for hydraulic fluid.

7. A method of controlling the operation of a safety device of a blowout preventer, the safety device being operated by hydraulic fluid under pressure comprising:

providing a source of fluid under pressure;

providing a variable ratio rotary energy controller connected between the source of fluid under pressure and the safety device; and

initiating the flow of fluid under pressure to the safety device of the blowout preventer through the variable ratio rotary energy controller,

wherein the variable ratio rotary control device includes a variable displacement hydraulic motor having an input port and an outlet port, an output shaft connected to an input shaft of a variable displacement hydraulic pump, the pump including an inlet port and an outlet port, and

directing fluid from the variable displacement hydraulic motor outlet port to the fluid inlet port of the variable displacement hydraulic pump.

8. A method of controlling the operation of a safety device of a blowout preventer, the safety device being operated by hydraulic fluid under pressure comprising:

providing a source of fluid under pressure;

providing a variable ratio rotary energy controller connected between the source of fluid under pressure and the safety device;

initiating the flow of fluid under pressure to the safety device of the blowout preventer through the variable ratio rotary energy controller, and

providing a fluid container for receiving hydraulic fluid from the variable ratio energy controller and the safety device of the blowout preventer and directing the hydraulic fluid in the fluid container back to the source of fluid under pressure thereby recharging the system for subsequent use.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 23, 2019
From: HILFLO, LLC
To: ENGIP, LLC
Reel/Frame 051359/0072 →
SECURITY INTEREST Recorded Nov 14, 2016
From: HILFLO, LLC
To: HALLIBURTON ENERGY SERVICES, INC.
Reel/Frame 040309/0746 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 5, 2015
From: HILPERT, CLIFFORD LEE; HILPERT, JEFFREY LEE
To: HILFLO, LLC
Reel/Frame 036728/0107 →
Continuity (2)
Provisional Application 62033317 · Aug 5, 2014
Related Publication 20160040500A1 · Feb 11, 2016