American Journal of Operations Research

American Journal of Operations Research

ISSN Print: 2160-8830
ISSN Online: 2160-8849
www.scirp.org/journal/ajor
E-mail: ajor@scirp.org
"Applications of Ultrasonic Techniques in Oil and Gas Pipeline Industries: A Review"
written by Wissam M. Alobaidi, Entidhar A. Alkuam, Hussain M. Al-Rizzo, Eric Sandgren,
published by American Journal of Operations Research, Vol.5 No.4, 2015
has been cited by the following article(s):
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[1] 3D ultrasonic full matrix capture imaging for cylindrical scans with wavenumber-domain reconstruction
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[2] Piezoelectric-laser ultrasonic inspection and monitoring of thin-walled structure fabricated by directed energy deposition process based on guided waves
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[3] Overview of Health-Monitoring Technology for Long-Distance Transportation Pipeline and Progress in DAS Technology Application
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[4] Nondestructive Evaluation of Nylon/carbon-Fiber Additively Manufactured Components Using Rotational Eddy Current Testing
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[6] Prototype Design of a Multi-Mode Switching Module with Locking Mechanism for Water-Proof Pipeline Inspection Robots
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[7] Analytical and numerical modeling of nonlinear lamb wave interaction with a breathing crack with low-frequency modulation
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[8] A Liquid-solid Triboelectric Sensor for Minor and Invisible Leakage Monitoring in Ship Pipelines (May 2023)
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[9] Structure and Properties of the Pipes of the City Gas Distribution Network after Long-Term Operation
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[11] A Decade Review of the Art of Inspection and Monitoring Technologies for Long-Distance Oil and Gas Pipelines in Permafrost Areas. Energies 2023, 16, 1751
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[12] A Quantitative Detection Approach for Microcrack in High Steel Pipeline By Motion Induced Eddy Current Technique
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[13] Application of Machine Learning in Different Stages of Oil Reservoir Development
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[16] Design of orthogonal directional shear horizontal electromagnetic acoustic transducer
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[17] Kompakte Induktionsspulen als berührungslose elektromagnetische Ultraschallwandler
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[18] Wall thinning and damage detection techniques in pipelines
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[19] Data Handling Techniques in the Petroleum Sector
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[20] Battery-powered FPGA-based embedded system for ultrasonic pipe inspection and gauging systems
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[21] Ultrasonic Velocity and Attenuation of Low-Carbon Steel at High Temperatures
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[22] Axial stress measurement method for hollow cylindrical steel structures based on non-dispersive characteristics of T (0, 1) guided waves
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[23] Detection, distinction, and quantification of pipeline surface and subsurface defects by DC magnetization scanning induction thermography
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[24] A decade review of the art of inspection and monitoring technologies for long-distance oil and gas pipelines in permafrost areas
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[25] A new chevron electromagnetic acoustic transducer design for generating shear horizontal guided wave
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[26] Fluid Level Measurement System in Oil Storage. Python, Lab-Based Scale.
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[27] A review of non-destructive methods for the detection tiny defects within organic insulating materials
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[28] FPGA Based Ultrasonic Non-Destructive Testing
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[29] Nondestructive testing and 3D imaging of PE pipes using terahertz frequency-modulated continuous wave
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[30] Quantitative Defect Size Evaluation in Fluid-Carrying Nonmetallic Pipes
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[31] Semi-supervised learning framework for oil and gas pipeline failure detection
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[32] Detection of hydrate plugs inside submarine pipelines using neutrons
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[33] Energy dissipation study of ultrasound bath to identify suitable zone for better performance of the bath
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[35] Ultrasonic Testing Techniques for Nondestructive Evaluation of Fiber-Reinforced Composite Structures
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[36] Nondestructive Testing and 3D Imaging of PE Pipes Using Terahertz Frequency
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[37] Non-Destructive Measurement and Evaluation of Surface Cracks Using Ultrasonic Rayleigh Waves–A Review
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[38] Multivariate probability of detection (POD) analysis considering the defect location for long-range, non-destructive pipe inspection using electromagnetic guided wave …
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[39] Development of a 64-channel FPGA-based Scalable High-speed Real-time Data Acquisition and Storage System for Ultrasonic In-line Inspection Tools
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[41] Detection and Localization of Multiple Damages through Entropy in Information Theory
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[42] Fast, Robust, and Low-Cost Microwave Imaging of Multiple Non-Metallic Pipes
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[43] Towards the adaptability of coastal resilience: Vulnerability analysis of underground gas pipeline system after hurricanes using LiDAR data
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[44] Low-power eddy current detection with 1-1 type magnetoelectric sensor for pipeline cracks monitoring
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[45] Smart Two-Tank Water Quality and Level Detection System via IoT
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[46] Defect detection and classification in welding using deep learning and digital radiography
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[47] Unidirectional emission and detection of Lamb waves based on a powerful and compact coils-only EMAT
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[48] Techniques for in situ monitoring the performance of organic coatings and their applicability to the pre-finished steel industry: A review
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[49] Phased electromagnetic acoustic transducer arrays for enhanced ultrasonic inspection
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[50] МАТЕМАТИЧНІ МОДЕЛІ, МЕТОДИ ТА АЛГОРИТМИ ДЛЯ АВТОМАТИЗАЦІЇ УПРАВЛІННЯ ГАЗОТРОНСПОРТНИМИ СИСТЕМАМИ
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[51] Study on Improvement of Microwave Non-destructive Testing Technology for Inspection of Piping Systems with Bends
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[52] Evaluation of Machine Learning-Based Regression Techniques for Prediction of Oil and Gas Pipelines Defect
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[53] Nondestructive Testing of Nonmetallic Pipes Using Wideband Microwave Measurements
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[54] Using deep learning to detect defects in manufacturing: a comprehensive survey and current challenges
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[55] A deep learning-based ultrasonic pattern recognition method for inspecting girth weld cracking of gas pipeline
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[56] Microwave Holographic Imaging of Non-Metallic Concentric Pipes
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[57] A Systematic Review of Big Data Analytics for Oil and Gas Industry 4.0
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[58] Physic perspective fusion of electromagnetic acoustic transducer and pulsed eddy current testing in non-destructive testing system
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[59] A feasibility study on elbow erosion monitoring using active sensing approach and fractional Fourier transform
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[60] Wax Solvent Displacement in Atoll Development Project Using Ultrasonic Devices: Case Study in the East Nile Delta in Egypt
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[61] A Pilot Study on Pipeline Wall Inspection Technology Tomography
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[62] Health Index Development for a Planetary Gearbox
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[63] Frequency-domain algorithms for ultrasonic imaging based on interpolation-free stolt migration
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[64] УСТРОЙСТВО ОПТИЧЕСКОГО КОНТРОЛЯ ВНУТРЕННЕЙ ПОВЕРХНОСТИ ОКОНЧАНИЯ ТРУБ
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[65] Ultrasonic camera: a matrix-based real-time ultrasonic imaging system for immersion applications
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[66] Help-EvaluationofNondestructiveEvaluationMethodsforApplicabilitytoPrecastConcreteDeckPanels
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[67] Detection of cracks with arbitrary orientations in a metal pipe using linearly-polarized circular TE11 mode microwaves
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[68] Acoustic guided wave techniques for detecting corrosion damage of electrical grounding rods
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[69] The Design, Construction and Testing of an Intelligent Device for Coating Flaws and Crack Detection in Pipelines
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[70] Deep Learning Techniques for Magnetic Flux Leakage Inspection with Uncertainty Quantification
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[71] Researching on Measurement Strategies of Fuel Tank Corrosion Using Phased Array Technology
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[72] ABC-UTC Guideline for
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[73] NDT Inspection of Critical ABC Details to Assure Life Cycle Performance and Avoid Future Unforeseen Excessive Repairs
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[74] Design and Validation of an Articulated Sensor Carrier to Improve the Automatic Pipeline Inspection
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[75] Optical inspection device for the inner surface of pipe ends
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[76] PIPE CONDITION ANALYSIS USING ULTRASONIC TESTING TO PREDICT THE REMAINING SERVICE LIVE (RSL) OF THE PETROLEUM DISTRIBUTION PIPELINE
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[77] Estado del arte de técnicas no destructivas para inspección de soldadura en tuberías
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[78] OPTICAL DEVICE FOR THE INSPECTION OF PIPE INNER SURFACE
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[79] Evaluation of Nondestructive Evaluation Methods for Applicability to Precast Concrete Deck Panels
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[80] Concept on Internet of Things (IoT) sensors based Non-Destructive Evaluation Technique (NDE).
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[81] Digital Eye Strain and Fatigue Recognition Using Electrooculogram Signals and Ultrasonic Distance Measurements
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[82] Concept on Internet of things (Iot) sensors based non-Destructive Evaluation Technique (NDE)
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[83] Experimental Evaluation of Novel Hybrid Microwave/Ultrasonic Technique to Locate and Characterize Pipe Wall Thinning
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[84] Development of an Optimized Neural Network for the Detection of Pipe Defects Using a Microwave Signal
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[85] FPGA-Based Data Storage System on NAND Flash Memory in RAID 6 Architecture for In-Line Pipeline Inspection Gauges
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[86] Improvement of Ultrasonic Pulse Generator for Automatic Pipeline Inspection
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[87] Estimation of time-of-flight based on threshold and peak analysis method for microwaves signals reflected from the crack
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[88] Discontinuity inspection in pipelines: A comparison review
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[89] Inspection of the Petroleum Pipelines Welded Joint by Using the Phased Array Ultrasonic Nondestructive Testing.
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[90] Service innovation for a sustainable fuel supply using cyber physical social system technology
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[91] Measurement of Pipe Strain Using an Ultrasonic System
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[92] Application of Microwave and Ultrasonic Techniques for Defect Detection in Pipes
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[93] Towards high accuracy measurements for gas flow rate using ultrasonic devices in oil fields
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[94] Ultrasonic thickness structural health monitoring of steel pipe for internal corrosion
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[95] Development of non-destructive damage detection approach using vibrational power flow
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[96] Non-immersive Ultrasound Scanning and Inspection of Internal Defects Using a Water Droplet Coupling Device
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[97] Classification of the Extent of Wall Thinning in Pipes Based on Simulations in the Time and Frequency Domain
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[98] High-Efficiency Remote Measurement of Pipe Defect Using RF/UT Technologies: A Theoretical Analysis Part One—Straight Beam UT
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[99] Waveform Pattern Recognition Applied to Rapid Detection of Wall-Thinning in Pipes: A Simulation-Based Case Study
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[100] Research on design and construction of directional drilling of Shen-Wei coal pipeline
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[101] Detection of Defects in Spiral/Helical Pipes Using RF Technology
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[102] Retracted: Research on Design and Construction of Directional Drilling of Shen-Wei Coal Pipeline
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[103] Enhancing Production Efficiency of Oil and Natural Gas Pipes Using Microwave Technology
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[104] NDT Applied to the Detection of Defects in Oil and Gas Pipes: A Simulation-Based Study
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