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US20110186203A1 - Method and apparatus for determining proper curing of pipe liners using distributed temperature sensing - Google Patents

Method and apparatus for determining proper curing of pipe liners using distributed temperature sensing
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Publication number
US20110186203A1
US20110186203A1US13/085,963US201113085963AUS2011186203A1US 20110186203 A1US20110186203 A1US 20110186203A1US 201113085963 AUS201113085963 AUS 201113085963AUS 2011186203 A1US2011186203 A1US 2011186203A1
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United States
Prior art keywords
liner
optical fiber
pipe
temperature
tube
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
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US13/085,963
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Richard Lindner
Stephen Vincent Gearhart
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Individual
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Priority to US13/085,963priorityCriticalpatent/US20110186203A1/en
Publication of US20110186203A1publicationCriticalpatent/US20110186203A1/en
Priority to US13/417,815prioritypatent/US20120255664A1/en
Priority to PCT/US2012/032492prioritypatent/WO2012138976A1/en
Priority to CA2834723Aprioritypatent/CA2834723A1/en
Priority to AU2012240068Aprioritypatent/AU2012240068A1/en
Priority to US13/481,119prioritypatent/US8940113B2/en
Abandonedlegal-statusCriticalCurrent

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Abstract

The present invention relates to method and apparatus utilizing distributed temperature sensing (DTS) to monitor the temperature of a cured-in-place pipe liner to determine if proper curing temperatures and times are achieved. More particularly, an optical fiber is placed in the pipe between the original pipe and the liner running the entire length of the liner. The optical fiber is coupled to a DTS unit at neo end. During curing of the liner, the DTS unit sends light pulses down the fiber from one end and detects the characteristics and time delay of light backscattered to the unit. The characteristics of the backscattered light is indicative of the temperature of the optical fiber, while the time delay between the sending of the light pulse and the detection of any portion of the backscatter signal is indicative of the round trip time of the light within the fiber, and thus the distance down the fiber from the DTS unit from which that particular backscatter signal originated.

Description

Claims (20)

1. A method of curing a cured-in-place liner within a tube segment, the tube segment having a first longitudinal end, a second longitudinal end and a length between the first and second longitudinal ends, the method comprising:
placing an optical fiber within the tube segment extending longitudinally from at least the first end to the second end of the tube segment, the optical fiber having a first longitudinal end, a second longitudinal end and a length between the first and second longitudinal ends;
positioning a liner within the tube segment extending longitudinally from the first end to the second end of the tube segment, the liner comprising a curable material for lining the tube;
coupling the first longitudinal end of the optical fiber to a distributed temperature sensing unit;
heating the liner to cure the curable material; and
measuring the temperature of the optical fiber continuously along its length via distributed temperature sensing using the distributed temperature sensing unit.
17. A system for curing cured-in-place pipe liner in a pipe segment having a first longitudinal end, a second longitudinal end and a length between the first and second longitudinal ends comprising:
an optical fiber disposed within the pipe segment extending longitudinally from at least the first end to the second end of the tube segment, the optical fiber having a first longitudinal end, a second longitudinal end and a length between the first and second longitudinal ends;
a pipe liner within the tube segment extending longitudinally from the first end to the second end of the tube segment, the liner comprising a curable material for lining the tube;
a distributed temperature sensing unit coupled to the first end of the optical fiber adapted to measure the temperature of the optical fiber continuously along its length via distributed temperature sensing.
US13/085,9632011-04-082011-04-13Method and apparatus for determining proper curing of pipe liners using distributed temperature sensingAbandonedUS20110186203A1 (en)

Priority Applications (6)

Application NumberPriority DateFiling DateTitle
US13/085,963US20110186203A1 (en)2011-04-082011-04-13Method and apparatus for determining proper curing of pipe liners using distributed temperature sensing
US13/417,815US20120255664A1 (en)2011-04-082012-03-12Method and apparatus for determining proper curing of pipe liners using distributed temperature sensing
PCT/US2012/032492WO2012138976A1 (en)2011-04-082012-04-06Method and apparatus for determining proper curing of pipe liners using distributed temperature sensing
CA2834723ACA2834723A1 (en)2011-04-082012-04-06Method and apparatus for determining proper curing of pipe liners using distributed temperature sensing
AU2012240068AAU2012240068A1 (en)2011-04-082012-04-06Method and apparatus for determining proper curing of pipe liners using distributed temperature sensing
US13/481,119US8940113B2 (en)2011-04-082012-05-25Method and apparatus for determining proper curing of pipe liners using distributed temperature sensing

Applications Claiming Priority (2)

Application NumberPriority DateFiling DateTitle
US201161473459P2011-04-082011-04-08
US13/085,963US20110186203A1 (en)2011-04-082011-04-13Method and apparatus for determining proper curing of pipe liners using distributed temperature sensing

Related Parent Applications (1)

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US13/417,815ContinuationUS20120255664A1 (en)2011-04-082012-03-12Method and apparatus for determining proper curing of pipe liners using distributed temperature sensing

Related Child Applications (3)

Application NumberTitlePriority DateFiling Date
US13/417,815ContinuationUS20120255664A1 (en)2011-04-082012-03-12Method and apparatus for determining proper curing of pipe liners using distributed temperature sensing
US13/417,815Continuation-In-PartUS20120255664A1 (en)2011-04-082012-03-12Method and apparatus for determining proper curing of pipe liners using distributed temperature sensing
US13/481,119ContinuationUS8940113B2 (en)2011-04-082012-05-25Method and apparatus for determining proper curing of pipe liners using distributed temperature sensing

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US20110186203A1true US20110186203A1 (en)2011-08-04

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US13/085,963AbandonedUS20110186203A1 (en)2011-04-082011-04-13Method and apparatus for determining proper curing of pipe liners using distributed temperature sensing
US13/481,119Expired - Fee RelatedUS8940113B2 (en)2011-04-082012-05-25Method and apparatus for determining proper curing of pipe liners using distributed temperature sensing

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US13/481,119Expired - Fee RelatedUS8940113B2 (en)2011-04-082012-05-25Method and apparatus for determining proper curing of pipe liners using distributed temperature sensing

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Cited By (13)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20110030875A1 (en)*2009-08-042011-02-10Zia Systems, LlcSystem and method for real-time tracking of objects
US20120147920A1 (en)*2007-09-072012-06-14Ulrich GlombitzaMethod for monitoring the state of a tube for a coating in a system of pipes or ducts
US20120261050A1 (en)*2011-04-082012-10-18Envirosight LlcMethod and apparatus for determining proper curing of pipe liners using distributed temperature sensing
WO2014022097A1 (en)*2012-07-302014-02-06Lmk Technologies, LlcPipe liner having a wireless data transmitter with sensing capabilities
US20140204197A1 (en)*2012-07-132014-07-24Mark S. OlssonSelf-grounding transmitting portable camera controller for use with pipe inspection system
US8807873B2 (en)2012-07-302014-08-19Lmk Technologies, LlcManhole liner having a wireless data transmitter
CN108644529A (en)*2018-03-272018-10-12上海潜业市政工程有限公司A kind of cipp cured-in-place rehabilitations device and restorative procedure
US20190071965A1 (en)*2016-05-112019-03-07Halliburton Energy Services, Inc.Leak detection system for intermittent use pipelines
US10730230B2 (en)*2015-12-182020-08-04Sml Verwaltungs GmbhMethod for curing a liner tube
CN111677972A (en)*2020-05-312020-09-18中国电建集团华东勘测设计研究院有限公司Prefabricated steel lantern ring construction method applied to rapid repair of pressure pipeline
US11519758B2 (en)2020-03-132022-12-06Nec CorporationSystem for identifying removal of maintenance hatch and method of using
US20230408345A1 (en)*2021-02-262023-12-21Tongji Universitysewer pipe inflow and infiltration diagnosis method based on distributed fiber-optic temperature measurement system
CN117972615A (en)*2024-03-282024-05-03北京城建勘测设计研究院有限责任公司Automatic subway monitoring and early warning method and system

Families Citing this family (9)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20120255664A1 (en)*2011-04-082012-10-11Richard LindnerMethod and apparatus for determining proper curing of pipe liners using distributed temperature sensing
GB201421470D0 (en)*2014-12-032015-01-14Silixa LtdRange extension for optical fiber sensing systems
US10139030B2 (en)*2016-06-022018-11-27Rush Sales Company, Inc.Cured-in-place pipe unit and rehabilitation
US10260881B2 (en)*2017-05-302019-04-16Northrop Grumman Systems CorporationHollow core fiber pigtail system and method
US11173634B2 (en)2018-02-012021-11-16Ina Acquisition CorpElectromagnetic radiation curable pipe liner and method of making and installing the same
US10704728B2 (en)2018-03-202020-07-07Ina Acquisition Corp.Pipe liner and method of making same
US11566973B2 (en)*2018-03-232023-01-31Kcf Technologies, Inc.Pipe section having a temperature sensing pipe liner for measuring temperature, and a method for measuring pump efficiency
US11524446B2 (en)2020-05-062022-12-13Innovations Amplified, LlcSystems and methods for monitoring a cured-in-place piping process
US12291944B1 (en)2023-10-132025-05-06Saudi Arabian Oil CompanySystem and method for deploying fiber optic cables with a cured-in-place pipe liner

Citations (18)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US4350548A (en)*1980-02-181982-09-21Tokyo Gas Co., Ltd.Method and apparatus for providing the inner surface of a pipe line with a lining
US5172730A (en)*1989-07-031992-12-22Insituform Of North American, Inc.Two-wall leakage detection system for a pipe
JPH0842750A (en)*1994-08-031996-02-16Furukawa Electric Co Ltd:The Pipe for lining existing pipe and lining method for lining existing pipe using it
US5499313A (en)*1982-08-061996-03-12Kleinerman; Marcos Y.Distributed and spatially averaged fiber optic temperature sensors and method using same
US5749548A (en)*1996-08-221998-05-12Jgc CorporationThermal insulating support device for piping
US6004639A (en)*1997-10-101999-12-21Fiberspar Spoolable Products, Inc.Composite spoolable tube with sensor
US6527441B1 (en)*1998-06-182003-03-04Qinetiq LimitedTemperature sensing apparatus
US20060067636A1 (en)*2004-09-242006-03-303M Innovative Properties CompanyConnector and splice holder device
US20060151042A1 (en)*2005-01-122006-07-13Stringfellow William DPipe liner
US20080050073A1 (en)*2006-07-312008-02-28Tyco Electronics CorporationExpanded beam connector
US7374127B2 (en)*2005-01-122008-05-20Smart Pipe Company, Inc.Systems and methods for making pipe liners
US20080185144A1 (en)*2006-03-302008-08-07Schlumberger Technology CorporationProviding an expandable sealing element having a slot to receive a sensor array
US20090092173A1 (en)*2007-09-072009-04-09Ulrich GlombitzaMethod for monitoring the state of a tube for a coating in a system of pipes or ducts
US20090205733A1 (en)*2007-12-262009-08-20Stringfellow William DMethods and systems for in situ pipe lining
US20090308475A1 (en)*2005-01-122009-12-17Stringfellow William DMethods and systems for in situ manufacture and installation of non-metallic high pressure pipe and pipe liners
US20110030875A1 (en)*2009-08-042011-02-10Zia Systems, LlcSystem and method for real-time tracking of objects
US20120255664A1 (en)*2011-04-082012-10-11Richard LindnerMethod and apparatus for determining proper curing of pipe liners using distributed temperature sensing
US20120261050A1 (en)*2011-04-082012-10-18Envirosight LlcMethod and apparatus for determining proper curing of pipe liners using distributed temperature sensing

Family Cites Families (11)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
SE435866B (en)1983-04-061984-10-22Vj System Ab PROCEDURE AND DEVICE FOR LINING OF PIPES, WITH A FLEXIBLE, HARDENABLE PLASTIC CONTAINING HOSE
US7651277B2 (en)2000-07-172010-01-26Tyco Electronics CorporationConnector and receptacle containing a physical security feature
US7325976B2 (en)2000-07-172008-02-05Tyco Electronics CorporationConnector and receptacle containing a physical security feature
US6960025B2 (en)2000-07-172005-11-01Tyco Electronics CorporationConnector and receptacle containing a physical security feature
JP2004537065A (en)2001-07-242004-12-09タイコ・エレクトロニクス・コーポレイション Expanded beam connector system
US7331719B2 (en)2004-06-302008-02-19Tyco Electronics CorporationOptical fiber clamping assembly
US7461983B1 (en)2007-12-032008-12-09Tyco Electronics CorporationField-installable optical splice
US7988367B2 (en)2008-01-212011-08-02Tyco Electronics CorporationProtective cover for field-installable connector
US7567743B1 (en)2008-04-022009-07-28Tyco Electronics CorporationField terminating method and device
US7775725B2 (en)2008-10-292010-08-17Tyco Electronics CorporationSingle-channel expanded beam connector
DE102010011610A1 (en)2010-03-162011-09-22Bkp Berolina Polyester Gmbh & Co. Kg Optical sensor cable and use of the sensor cable during the installation of a Relining hose

Patent Citations (18)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US4350548A (en)*1980-02-181982-09-21Tokyo Gas Co., Ltd.Method and apparatus for providing the inner surface of a pipe line with a lining
US5499313A (en)*1982-08-061996-03-12Kleinerman; Marcos Y.Distributed and spatially averaged fiber optic temperature sensors and method using same
US5172730A (en)*1989-07-031992-12-22Insituform Of North American, Inc.Two-wall leakage detection system for a pipe
JPH0842750A (en)*1994-08-031996-02-16Furukawa Electric Co Ltd:The Pipe for lining existing pipe and lining method for lining existing pipe using it
US5749548A (en)*1996-08-221998-05-12Jgc CorporationThermal insulating support device for piping
US6004639A (en)*1997-10-101999-12-21Fiberspar Spoolable Products, Inc.Composite spoolable tube with sensor
US6527441B1 (en)*1998-06-182003-03-04Qinetiq LimitedTemperature sensing apparatus
US20060067636A1 (en)*2004-09-242006-03-303M Innovative Properties CompanyConnector and splice holder device
US20060151042A1 (en)*2005-01-122006-07-13Stringfellow William DPipe liner
US7374127B2 (en)*2005-01-122008-05-20Smart Pipe Company, Inc.Systems and methods for making pipe liners
US20090308475A1 (en)*2005-01-122009-12-17Stringfellow William DMethods and systems for in situ manufacture and installation of non-metallic high pressure pipe and pipe liners
US20080185144A1 (en)*2006-03-302008-08-07Schlumberger Technology CorporationProviding an expandable sealing element having a slot to receive a sensor array
US20080050073A1 (en)*2006-07-312008-02-28Tyco Electronics CorporationExpanded beam connector
US20090092173A1 (en)*2007-09-072009-04-09Ulrich GlombitzaMethod for monitoring the state of a tube for a coating in a system of pipes or ducts
US20090205733A1 (en)*2007-12-262009-08-20Stringfellow William DMethods and systems for in situ pipe lining
US20110030875A1 (en)*2009-08-042011-02-10Zia Systems, LlcSystem and method for real-time tracking of objects
US20120255664A1 (en)*2011-04-082012-10-11Richard LindnerMethod and apparatus for determining proper curing of pipe liners using distributed temperature sensing
US20120261050A1 (en)*2011-04-082012-10-18Envirosight LlcMethod and apparatus for determining proper curing of pipe liners using distributed temperature sensing

Cited By (23)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20120147920A1 (en)*2007-09-072012-06-14Ulrich GlombitzaMethod for monitoring the state of a tube for a coating in a system of pipes or ducts
US8727614B2 (en)*2007-09-072014-05-20Ulrich GlombitzaMethod for monitoring the state of a tube for a coating in a system of pipes or ducts
US20110030875A1 (en)*2009-08-042011-02-10Zia Systems, LlcSystem and method for real-time tracking of objects
US9328857B2 (en)2009-08-042016-05-03Zia Systems, LlcSystem and method for real-time tracking of objects
US20120261050A1 (en)*2011-04-082012-10-18Envirosight LlcMethod and apparatus for determining proper curing of pipe liners using distributed temperature sensing
US8940113B2 (en)*2011-04-082015-01-27Envirosight LlcMethod and apparatus for determining proper curing of pipe liners using distributed temperature sensing
US10992849B1 (en)*2012-07-132021-04-27SeeScan, Inc.Pipe inspection systems with self-grounding portable camera controllers
US20140204197A1 (en)*2012-07-132014-07-24Mark S. OlssonSelf-grounding transmitting portable camera controller for use with pipe inspection system
US9769366B2 (en)*2012-07-132017-09-19SeeScan, Inc.Self-grounding transmitting portable camera controller for use with pipe inspection system
US9261221B2 (en)2012-07-302016-02-16Lmk Technologies, LlcPipe liner having a wireless data transmitter with sensing capabilities
WO2014022097A1 (en)*2012-07-302014-02-06Lmk Technologies, LlcPipe liner having a wireless data transmitter with sensing capabilities
US8844577B2 (en)2012-07-302014-09-30Lmk Technologies, LlcPipe liner having a wireless data transmitter with sensing capabilities
US8807873B2 (en)2012-07-302014-08-19Lmk Technologies, LlcManhole liner having a wireless data transmitter
US9151431B2 (en)2012-07-302015-10-06Lmk Technologies, LlcManhole liner having a wireless data transmitter
US10730230B2 (en)*2015-12-182020-08-04Sml Verwaltungs GmbhMethod for curing a liner tube
US20190071965A1 (en)*2016-05-112019-03-07Halliburton Energy Services, Inc.Leak detection system for intermittent use pipelines
CN108644529A (en)*2018-03-272018-10-12上海潜业市政工程有限公司A kind of cipp cured-in-place rehabilitations device and restorative procedure
US11519758B2 (en)2020-03-132022-12-06Nec CorporationSystem for identifying removal of maintenance hatch and method of using
CN111677972B (en)*2020-05-312021-11-05中国电建集团华东勘测设计研究院有限公司Prefabricated steel ring construction method applied to rapid repair of pressure pipeline
CN111677972A (en)*2020-05-312020-09-18中国电建集团华东勘测设计研究院有限公司Prefabricated steel lantern ring construction method applied to rapid repair of pressure pipeline
US20230408345A1 (en)*2021-02-262023-12-21Tongji Universitysewer pipe inflow and infiltration diagnosis method based on distributed fiber-optic temperature measurement system
US11920986B2 (en)*2021-02-262024-03-05Tongji UniversitySewer pipe inflow and infiltration diagnosis method based on distributed fiber-optic temperature measurement system
CN117972615A (en)*2024-03-282024-05-03北京城建勘测设计研究院有限责任公司Automatic subway monitoring and early warning method and system

Also Published As

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US20120261050A1 (en)2012-10-18

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