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  1. Journal of Mechanical Science and Technology
  2. Journal of Mechanical Science and Technology : Volume 17
  3. Journal of Mechanical Science and Technology : Volume 17, Issue 5, May 2003
  4. Design and implementation of 30„ geometry PIG
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Journal of Mechanical Science and Technology : Volume 31
Journal of Mechanical Science and Technology : Volume 30
Journal of Mechanical Science and Technology : Volume 29
Journal of Mechanical Science and Technology : Volume 28
Journal of Mechanical Science and Technology : Volume 27
Journal of Mechanical Science and Technology : Volume 26
Journal of Mechanical Science and Technology : Volume 25
Journal of Mechanical Science and Technology : Volume 24
Journal of Mechanical Science and Technology : Volume 23
Journal of Mechanical Science and Technology : Volume 22
Journal of Mechanical Science and Technology : Volume 21
Journal of Mechanical Science and Technology : Volume 20
Journal of Mechanical Science and Technology : Volume 19
Journal of Mechanical Science and Technology : Volume 18
Journal of Mechanical Science and Technology : Volume 17
Journal of Mechanical Science and Technology : Volume 17, Issue 12, December 2003
Journal of Mechanical Science and Technology : Volume 17, Issue 11, November 2003
Journal of Mechanical Science and Technology : Volume 17, Issue 10, October 2003
Journal of Mechanical Science and Technology : Volume 17, Issue 9, September 2003
Journal of Mechanical Science and Technology : Volume 17, Issue 8, August 2003
Journal of Mechanical Science and Technology : Volume 17, Issue 7, July 2003
Journal of Mechanical Science and Technology : Volume 17, Issue 6, June 2003
Journal of Mechanical Science and Technology : Volume 17, Issue 5, May 2003
Design and implementation of 30„ geometry PIG
An accelerated inverse perturbation method for structural damage identification
Low cycle fatigue of PPS polymer injection welds (I)-fatigue crack behavior-
System identification and stability evaluation of an unmanned aerial vehicle from automated flight tests
Thermal model of high-speed spindle units
Vibration analysis of HDD actuator with equivalent finite element model of VCM coil
Chatter analysis of a parallel mechanism-based universal machining center
Conservative quadratic RSM combined with incomplete small composite design and conservative least squares fitting
Magnetically suspended contact-free linear actuator for precision stage
Propagation characteristics of compression waves reflected from the open end of a duct
An overview of liquid spray modeling formed by high-shear nozzle/swirler assembly
The effect of ambient air condition on heat transfer of hot steel plate cooled by an impinging water jet
An investigation of design parameter and atomization mechanism for air shrouded injectors
A study on pressure drop characteristics of refrigerants in horizontal flow boiling
Atomization characteristics of intermittent multi-hole diesel spray using time-resolved PDPA data
Wind tunnel test of an unmanned aerial vehicle (UAV)
Journal of Mechanical Science and Technology : Volume 17, Issue 4, April 2003
Journal of Mechanical Science and Technology : Volume 17, Issue 3, March 2003
Journal of Mechanical Science and Technology : Volume 17, Issue 2, February 2003
Journal of Mechanical Science and Technology : Volume 17, Issue 1, January 2003
Journal of Mechanical Science and Technology : Volume 16
Journal of Mechanical Science and Technology : Volume 15
Journal of Mechanical Science and Technology : Volume 14
Journal of Mechanical Science and Technology : Volume 13
Journal of Mechanical Science and Technology : Volume 12
Journal of Mechanical Science and Technology : Volume 11

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Design and implementation of 30„ geometry PIG

Content Provider SpringerLink
Author Kim, Dong Kyu Cho, Sung Ho Park, Seoung Soo Yoo, Hui Ryong Rho, Yong Woo
Copyright Year 2003
Abstract This paper introduces the developed geometry PIG (Pipeline Inspection Gauge), one of several ILI (In-Line Inspection) tools, which provide a full picture of the pipeline from only single pass, and has compact size of the electronic device with not only low power consumption but also rapid response of sensors such as calipers, IMU and odometer. This tool is equipped with the several sensor systems. Caliper sensors measure the pipeline internal diameter, ovality and dent size and shape with high accuracy. The IMU (Inertial Measurement Unit) measures the precise trajectory of the PIG during its traverse of the pipeline. The IMU also provide three-dimensional coordination in space from measurement of inertial acceleration and angular rate. Three odometers mounted on the PIG body provide the distance moved along the line and instantaneous velocity during the PIG run. The datum measured by the sensor systems are stored in on-board solid state memory and magnetic tape devices. There is an electromagnetic transmitter at the back end of the tool, the transmitter enables the inspection operators to keep tracking the tool while it travels through the pipeline. An experiment was fulfilled in pull-rig facility and was adopted from Incheon LT (LNG Terminal) to Namdong GS (Governor Station) line, 13 km length.
Starting Page 629
Ending Page 636
Page Count 8
File Format PDF
ISSN 1738494X
Journal Journal of Mechanical Science and Technology
Volume Number 17
Issue Number 5
Language English
Publisher Korean Society of Mechanical Engineers
Publisher Date 2003-01-01
Publisher Place Seoul
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword ILI (In-Line Inspection) Geometry PIG (Pipeline Inspection Gauge) IMU (Inertial Measurement Unit) Odometer Caliper Electromagnetic Transmitter Mechanical Engineering Vibration, Dynamical Systems, Control Industrial and Production Engineering
Content Type Text
Resource Type Article
Subject Mechanics of Materials Mechanical Engineering
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