IP Library Granted Patent US 11,592,424
Granted Patent B2
US 11,592,424 · App. 16/882,871 · Granted Feb 28, 2023

System for detecting flooding in flexible tubular pipes under high pressure conditions

Inventors: Vilmar da Silva do Vale (Taubaté, BR); Rohit Bali (Nawanshahr, IN); Samik Das (Cypress, TX); Sheethal Sasidharan (Kerala State, IN); Vikrant Verma (Haryana, IN)
Assignee: Oceaneering International, Inc.
G01N29/227B63C11/48B63G8/001E21B47/001E21B47/007E21B47/107E21B47/13G01M3/24G01N29/02G01N29/24G01N29/262B63G2008/004B63G2008/005E21B17/01G01N29/2437G01N2291/022G01N2291/0231G01N2291/0422G01N2291/101G01N2291/102G01N2291/106
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Quick Facts
Patent No.
US 11,592,424
App. No.
16/882,871
Granted
Feb 28, 2023
Kind
B2
Abstract

A system for inspecting flexible pipelines comprises a data analyzer, a data collector and an ultrasonic transducer. Further, the ultrasonic transducer is adapted to propagate shear wave into the annulus of the flexible pipeline. The data collector further comprises a data store and a communicator. Further, the system is capable of differentiating flooding and non-flooding condition of the annulus of the flexible pipeline which is subjected to high pressure. Using the system, an indicator of a flooded or non-flooded condition within the flexible pipeline may be calculated using transmitted and detected reflective waves or the lack of detected reflective waves.

Claims (31)

1. A system for detecting flooding in a flexible tubular pipe under high pressure conditions, the flexible tubular pipe comprising a layer comprising an armor wire, the system comprising:

a. a pressure generator;

b. a probe holder in communication with the pressure generator;

c. an ultrasonic transducer disposed at least partially within the probe holder and adapted to operate in a predetermined mode and transmit a shear wave into the flexible pipeline, the pressure generator configured to place the ultrasonic transducer into contact with a flexible pipeline;

d. a data collector operatively in communication with the ultrasonic transducer; and

e. a data analyzer operatively in communication with the data collector and configured to analyze captured reflected signals received from the data collector the data analyzer further comprising a processor and an analysis module operatively resident in the processor.

2. The system for detecting flooding in a flexible tubular pipe under high pressure conditions of claim 1 , wherein the ultrasonic transducer comprises a single piezoelectric element non-focused probe, a single piezoelectric element focused probe, a single pulse echo mode ultrasonic transducer, a multiple piezoelectric elements phased-array probe, or a normal shear wave probe configured to transmit and receive ultrasound signals.

3. The system for detecting flooding in a flexible tubular pipe under high pressure conditions of claim 1 , wherein the predetermined mode comprises a phased array mode, a normal shear wave probe mode, or a pulse echo mode.

4. The system for detecting flooding in a flexible tubular pipe under high pressure conditions of claim 1 , wherein the ultrasonic transducer is configured to operate in a pitch/catch mode, the ultrasonic transducer further comprising:

a. a first transmitting ultrasonic transducer configured to transmit an ultrasonic signal; and

b. a second receiving ultrasonic transducer configured to receive the transmitted ultrasonic signal.

5. The system for detecting flooding in a flexible tubular pipe under high pressure conditions of claim 1 , wherein the data collector further comprises:

a. a pulser-receiver operative to generate an electrical current pulse;

b. a data store configured to store data representative of the reflected signals captured by the ultrasonic transducer; and

c. a data communicator operatively in communication with data store.

6. The system for detecting flooding in a flexible tubular pipe under high pressure conditions of claim 5 , wherein the pulser-receiver comprises:

a. a pulser; and

b. a complimentary receiver.

7. The system for detecting flooding in a flexible tubular pipe under high pressure conditions of claim 6 , wherein the pulser comprises a voltage generator able to generate a voltage in the range of around 100 V to around 400 V and is capable of firing pulses in the range of around 10 Hz to around 1000 Hz.

8. The system for detecting flooding in a flexible tubular pipe under high pressure conditions of claim 6 , wherein the receiver comprises a gain of around 100 dB.

9. The system for detecting flooding in a flexible tubular pipe under high pressure conditions of claim 5 , wherein the data store comprises a volatile or non-volatile memory capable of storing the data representative of the reflected signals captured by the ultrasonic transducer.

10. The system for detecting flooding in a flexible tubular pipe under high pressure conditions of claim 9 , wherein the communicator is configured to access the data stored in the data store.

11. The system for detecting flooding in a flexible tubular pipe under high pressure conditions of claim 5 , wherein the data communicator comprises an analog to digital data converter.

12. The system for detecting flooding in a flexible tubular pipe under high pressure conditions of claim 5 , further comprising a data pathway operatively disposed intermediate the data communicator and the data analyzer.

13. The system for detecting flooding in a flexible tubular pipe under high pressure conditions of claim 1 , wherein the probe holder is configured to withstand a force exerted by the pressure generator on the probe holder.

14. The system for detecting flooding in a flexible tubular pipe under high pressure conditions of claim 1 , wherein the pressure generator further comprises:

a. a cylinder; and

b. a piston slidingly engaged within the cylinder.

15. The system for detecting flooding in a flexible tubular pipe under high pressure conditions of claim 1 , wherein the probe holder comprises a material that is resistant to corrosion subsea.

16. The system for detecting flooding in a flexible tubular pipe under high pressure conditions of claim 1 , wherein the probe holder comprises acetal, an austenitic nickel-chromium-based superalloy, stainless steel, or mild steel.

17. The system for detecting flooding in a flexible tubular pipe under high pressure conditions of claim 1 , wherein the data analyzer further comprises a user interface comprising a data display module adapted to convert the reflected signals and communicate the converted reflected signals to a display.

Assignments (1)
SECURITY INTEREST Recorded Apr 14, 2022
From: OCEANEERING INTERNATIONAL, INC.; GRAYLOC PRODUCTS, L.L.C.; MARINE PRODUCTION SYSTEMS, LTD.; OCEANEERING CANADA LIMITED
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 059783/0204 →
Continuity (2)
Provisional Application 62892993 · Aug 28, 2019
Related Publication 20210063353A1 · Mar 4, 2021