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2018 | OriginalPaper | Buchkapitel

2. Pipe Inspection Robots for Gas and Oil Pipelines

verfasst von : Harutoshi Ogai, Bishakh Bhattacharya

Erschienen in: Pipe Inspection Robots for Structural Health and Condition Monitoring

Verlag: Springer India

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Abstract

Energy-related utilities such as fuel, gas, or oil supply lines and power generation sources such as nuclear and thermal power plants require an extensive network of pipelines for various transportation purposes. Figure 2.1a shows a typical network of pipelines generally used for oil and gas transportation.

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Fußnoten
1
SHM is a complete process of design, development, and implementation of techniques for the detection, localization, and estimation of damages which is used in monitoring the integrity of structures and machines.
 
Literatur
1.
Zurück zum Zitat (2012) Gas and liquid transmission pipelines. Thompson (2012) Gas and liquid transmission pipelines. Thompson
6.
Zurück zum Zitat Okada T, Kanade T (1987) A three-wheeled self-adjusting vehicle in a pipe, FERRET-1. Int J Robot Res 6(4):60–75CrossRef Okada T, Kanade T (1987) A three-wheeled self-adjusting vehicle in a pipe, FERRET-1. Int J Robot Res 6(4):60–75CrossRef
7.
Zurück zum Zitat Okada T, Sanemori T (1987) MOGRER—a vehicle study and realization for in-pipe inspection tasks. IEEE J Robot Autom RA-3(6):573–582 Okada T, Sanemori T (1987) MOGRER—a vehicle study and realization for in-pipe inspection tasks. IEEE J Robot Autom RA-3(6):573–582
8.
Zurück zum Zitat Fujiwara S, Kanehara R, Okada T, Sanemori T (1993) An articulated multi-vehicle robot for inspection and testing of pipeline interior. In: Proceedings of the 1993 IEEW/RSJ international conference on intelligent robots and systems, pp 509–516 Fujiwara S, Kanehara R, Okada T, Sanemori T (1993) An articulated multi-vehicle robot for inspection and testing of pipeline interior. In: Proceedings of the 1993 IEEW/RSJ international conference on intelligent robots and systems, pp 509–516
9.
Zurück zum Zitat Zheng Hu, Appleton Ernest (2005) Dynamic characteristics of a novel self-drive pipeline pig. IEEE Trans Rob 21(5):781–789CrossRef Zheng Hu, Appleton Ernest (2005) Dynamic characteristics of a novel self-drive pipeline pig. IEEE Trans Rob 21(5):781–789CrossRef
10.
Zurück zum Zitat Zhang Yunwei, Yan Guozheng (2007) In-pipe inspection robot with active pipe-diameter adaptability and automatic tractive force adjusting. Mech Mach Theory 42(12):1618–1631CrossRefMATH Zhang Yunwei, Yan Guozheng (2007) In-pipe inspection robot with active pipe-diameter adaptability and automatic tractive force adjusting. Mech Mach Theory 42(12):1618–1631CrossRefMATH
11.
Zurück zum Zitat Kim YJ, Yoon KH, Park YW (2009) Development of the inpipe robot for various sizes. In: IEEE/ASME international conference on advanced intelligent mechatronics, pp 1745–1749 Kim YJ, Yoon KH, Park YW (2009) Development of the inpipe robot for various sizes. In: IEEE/ASME international conference on advanced intelligent mechatronics, pp 1745–1749
12.
Zurück zum Zitat Roh S, Kim DW, Lee JS, Moon H, Choi HR (2009) In-pipe robot based on selective drive mechanism. Int J Control Autom Syst 7(1):105–112 Roh S, Kim DW, Lee JS, Moon H, Choi HR (2009) In-pipe robot based on selective drive mechanism. Int J Control Autom Syst 7(1):105–112
13.
Zurück zum Zitat Yu-xia Z, Guang-ping H, De-wen G (2009) Micro in-pipe robot mechanical structure design of shape memory alloy driving. In: Proceedings of the 2009 IEEE international conference on robotics and biomimetics, 19–23 Dec 2009, Guilin, China Yu-xia Z, Guang-ping H, De-wen G (2009) Micro in-pipe robot mechanical structure design of shape memory alloy driving. In: Proceedings of the 2009 IEEE international conference on robotics and biomimetics, 19–23 Dec 2009, Guilin, China
14.
Zurück zum Zitat Choi HR, Roh S (2007) In-pipe robot with active steering capability for moving inside of pipelines. In: Habib MK (ed) Bioinspiration and robotics: walking and climbing robots. ISBN 978–3-902613-15-8, p 544, I-Tech, Vienna, Austria, EU, Sept 2007 Choi HR, Roh S (2007) In-pipe robot with active steering capability for moving inside of pipelines. In: Habib MK (ed) Bioinspiration and robotics: walking and climbing robots. ISBN 978–3-902613-15-8, p 544, I-Tech, Vienna, Austria, EU, Sept 2007
15.
Zurück zum Zitat Matos J, Tosunoglu S (2011) Peristaltic crawler for piper-line unplugging. ASME Early Career Tech J. In: ASME early career technical conference, ASME ECTC 4–5 Nov 2011, Atlanta, Georgia USA Matos J, Tosunoglu S (2011) Peristaltic crawler for piper-line unplugging. ASME Early Career Tech J. In: ASME early career technical conference, ASME ECTC 4–5 Nov 2011, Atlanta, Georgia USA
16.
Zurück zum Zitat Choi HR, Ryew SM (2002) Robotic system with active steering capability for internal inspection of urban gas pipelines. J Mechatron 12(5):713–736CrossRef Choi HR, Ryew SM (2002) Robotic system with active steering capability for internal inspection of urban gas pipelines. J Mechatron 12(5):713–736CrossRef
17.
Zurück zum Zitat Liu Zheng, Kleiner Yehuda (2013) State of the art review of inspection technologies for condition assessment of water pipes. Measurement 46:1–15CrossRef Liu Zheng, Kleiner Yehuda (2013) State of the art review of inspection technologies for condition assessment of water pipes. Measurement 46:1–15CrossRef
18.
Zurück zum Zitat Agarwal V, Ogai H, Nishijima K, Bhattacharya B (2011) Inspection of pipe inner surface using advanced pipe crawler robot with PVDF sensor based rotating probe. Sens Transducers 4(127):45–56 Agarwal V, Ogai H, Nishijima K, Bhattacharya B (2011) Inspection of pipe inner surface using advanced pipe crawler robot with PVDF sensor based rotating probe. Sens Transducers 4(127):45–56
Metadaten
Titel
Pipe Inspection Robots for Gas and Oil Pipelines
verfasst von
Harutoshi Ogai
Bishakh Bhattacharya
Copyright-Jahr
2018
Verlag
Springer India
DOI
https://doi.org/10.1007/978-81-322-3751-8_2

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