US20080024000A1 - Method And Device For Continuously Informing The Operator Of A Tunneling Machine On Physical Features Of A Ground To Be Tunnelled - Google Patents

Method And Device For Continuously Informing The Operator Of A Tunneling Machine On Physical Features Of A Ground To Be Tunnelled Download PDF

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Publication number
US20080024000A1
US20080024000A1 US11/662,106 US66210605A US2008024000A1 US 20080024000 A1 US20080024000 A1 US 20080024000A1 US 66210605 A US66210605 A US 66210605A US 2008024000 A1 US2008024000 A1 US 2008024000A1
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United States
Prior art keywords
cutter
sensors
mounting
fitted
signals
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Abandoned
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US11/662,106
Inventor
Pierre Moulin
Pierre Longchamp
Michel De Broissia
Jean-Noel Derycke
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Bouygues Travaux Publics SAS
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Bouygues Travaux Publics SAS
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Assigned to BOUYGUES TRAVAUX PUBLICS reassignment BOUYGUES TRAVAUX PUBLICS ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: LONGCHAMP, PIERRE, DERYCKE, JEAN-NOEL, DE BROISSIA, MICHEL, MOULIN, PIERRE
Publication of US20080024000A1 publication Critical patent/US20080024000A1/en
Abandoned legal-status Critical Current

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    • EFIXED CONSTRUCTIONS
    • E21EARTH DRILLING; MINING
    • E21DSHAFTS; TUNNELS; GALLERIES; LARGE UNDERGROUND CHAMBERS
    • E21D9/00Tunnels or galleries, with or without linings; Methods or apparatus for making thereof; Layout of tunnels or galleries
    • E21D9/003Arrangement of measuring or indicating devices for use during driving of tunnels, e.g. for guiding machines
    • EFIXED CONSTRUCTIONS
    • E21EARTH DRILLING; MINING
    • E21DSHAFTS; TUNNELS; GALLERIES; LARGE UNDERGROUND CHAMBERS
    • E21D9/00Tunnels or galleries, with or without linings; Methods or apparatus for making thereof; Layout of tunnels or galleries
    • E21D9/10Making by using boring or cutting machines
    • E21D9/11Making by using boring or cutting machines with a rotary drilling-head cutting simultaneously the whole cross-section, i.e. full-face machines
    • E21D9/112Making by using boring or cutting machines with a rotary drilling-head cutting simultaneously the whole cross-section, i.e. full-face machines by means of one single rotary head or of concentric rotary heads

Abstract

The invention relates to a method for informing the operator of a tunnelling machine on physical features of a ground to be tunnelled consisting in placing one or several sensors (1-4) directly on each cutter wheel of a drill head, wherein said sensors are selected such that they are capable of transmitting representative signals of the cutter wheel penetrating force into the ground, a rotating state, the position and the temperature of the cutter wheel and in transmitting said information to the operator of the tunnelling machine. Said invention is particularly suitable for detecting hard rocks during digging an excavation by means of a tunnelling machine.

Description

  • The invention concerns a method and a device to continuously inform the driver of a tunnelling machine equipped with a rotary cutting head fitted with a multiplicity of drilling mountings for rotary drilling cutters on the nature of the ground in front of the cutters.
  • The invention applies in particular to the detection of hard stones in loose ground as it is excavated by means of the tunnelling machine.
  • We are familiar in the case of vertical boreholes with measurement of the drilling parameters, as described for example in publication FR 2 642 791, by means of sensors installed between the drilling head and the column of drilling rods.
  • Publication WO 03/087537 describes a device that includes a wear detector, a revolution counter and a load detector placed on the cutting-wheel mounting.
  • We are aware of other publications (EP 1 098 066, U.S. Pat. No. 5,330,292, EP 1 253 287, JP 11 270283, and JP 09 228 778) which place data acquisition sensors on the shaft of the cutter or on the shaft of the cutting head or on the cutting head.
  • These devices are liable to supply parasitic results due to the fact that they take account of the deformations of the shaft or of the mounting of the cutter, or of the cutting head or of the shaft of the cutting head.
  • This present invention aims to eliminate the influence of these parasitic factors.
  • According to the invention, one or more sensors chosen from among sensors designed to supply signals that are representative of the penetration force of the cutter into the ground, of the rotation status of the cutter, of the position of the cutter in the ground and of the temperature of the cutter, are placed directly on each cutter concerned.
  • The cutter is preferably equipped with all of the aforementioned sensors.
  • The mountings of the cutters concerned are fitted with transceivers for the signals supplied by the acquisition sensors.
  • These signals are transmitted remotely, and are used to inform the driver of the tunnelling machine.
  • It is preferable that each equipped cutter should be supplied with the necessary power to operate the sensors of the cutter by a battery incorporated into the cutter or by wireless transmission from the mounting of the cutter. It is also preferable that the mounting of each cutter should be equipped with a receiver designed to receive, by wireless transmission, the signals from the acquisition sensors on the cutter, and to transmit these to a communication network mounted on the drilling head, and that the said network be connected to a processing and display unit in the driver's cab of the tunnelling machine.
  • It is furthermore preferable that each cutter concerned should be equipped with stress gauges that are glued to the axle of the cutter and the signals from these gauges be used to obtain information on the loads imposed on the cutter.
  • It is also preferable that each cutter concerned be equipped with an inclinometer designed to send signals that are representative of the position of the cutter.
  • Again, it is preferable that each cutter concerned be equipped with a magneto-inductive rotation sensor.
  • The invention also has as its subject a drilling cutter and its mounting for mounting the rotary cutter on the rotary cutting head of a tunnelling machine, characterised in that the cutter includes one or more data acquisition sensors chosen from among sensors designed to supply signals that are representative of the penetration force of the cutter into the ground, the rotation status, the rotation speed and the temperature of the cutter, where the cutter and its mounting are fitted with means that work together to send signals that are representative of the position of the cutter.
  • The cutter is preferably equipped with all the aforementioned sensors.
  • The electrical power feed necessary to operate the sensors can be independent and incorporated into the cutter or its mounting, or can come from an electrical source located remotely.
  • The sensors of the cutter are preferably fixed on a base, such as a disk for example, which is attached laterally on the cutter or in the hub of the cutter, and this base, and the mounting, include means that work together to receive and transmit the signals of these sensors.
  • The figures of the attached drawing are diagrams respectively illustrating a front view of an installation of cutters on the drilling head of the tunnelling machine (FIG. 1), a section view in a plane perpendicular to that of FIG. 1, of the head with electrical transmission from the sensors to a processing and display unit (FIG. 2), and an axial section view of a cutter (FIG. 3).
  • In FIG. 1, each cutter has been illustrated schematically by a circle (M) and its individual mounting by a rectangle (R) . The cutter is mounted loose on an axis formed by the mounting, and the mountings are distributed on arms (B) attached to the head (T) of the tunnelling machine.
  • These arrangements are well known to the professional engineer. According to the invention, each cutter is equipped with a multiplicity of sensors, and in particular:
      • a position sensor
      • a pressure sensor
      • a rotation status sensor
      • a speed sensor
      • a temperature sensor
  • The professional engineer chooses these sensors from the known sensors designed to perform these functions.
  • For the position sensor, the preferred choice is an inclinometer.
  • For the pressure sensor, the preferred choice is a set of stress gauges.
  • The position, speed and temperature sensors are advantageously mounted on a base which is attached firmly to the cutter, such as a disk attached to one side of the cutter for example. This base can be equipped with acquisition and processing modules, an interface for communication with the mounting of the cutter, and an electrical power unit.
  • The mountings R of the equipped cutters are connected by a transmission system, wireless or otherwise, to a processing and display unit C located in the driver's cab of the tunnelling machine. FIG. 2 schematically illustrates a transmission line F which carries the individual signal transmissions from the sensors on the cutters and/or from the mountings of the cutters carried by a given arm B, by means of rotating joints.
  • The FIG. 3 is a schematic axial section view of a cutter M equipped with inclinometers 1, a rotation sensor 2, temperature probes 3 and stress gauges 4.
  • The cutter M and its mounting R include their respective communication means 5, 6 which work, together to allow the remote transmission of the signals from the sensors.
  • The invention is not limited to this implementation example.

Claims (11)

1-10. (canceled)
11. Process for providing continuous information on ground conditions at the excavation face for the operator of a tunnel boring machine equipped with a rotary cutting head incorporating a multiplicity of individual mountings for rotary boring cutters, in which data acquisition sensors capable of generating signals concerning cutter operation are implemented, these signals being remotely transmitted and used to inform the tunnel boring machine operator, characterized in that one or more sensors selected from sensors suitable for generating signals representing cutter penetration force into the ground, cutter position, cutter rotational state and cutter temperature are directly placed on each cutter.
12. Process according to claim 11, in which each cutter concerned is supplied with electrical power required for operating the cutter sensors from a battery integrated into the cutter or by wireless transmission from the cutter mounting.
13. Process according to claim 11, in which the mounting of each cutter concerned is fitted with a receiver capable of receiving by wireless transmission signals from the cutter sensors and transmitting them to a communication network carried by the cutting head and the said network includes a processing and display unit in the tunnel boring machine operating cab.
14. Process according to claim 11, in which each cutter concerned is fitted with stress gauges glued to the cutter shaft and in which the signals from these gauges are used to obtain information on the loads sustained by the cutter.
15. Process according to claim 11, in which each cutter concerned is fitted with an inclinometer.
16. Process according to claim 11 in which each cutter concerned is fitted with a magneto-inductive rotation sensor.
17. Boring cutter M and its mounting R for installing the rotary cutter on the rotary cutting head of a tunnel boring machine T, characterized in that the cutter includes one or more sensors (1-4) selected from sensors capable of generating signals representing cutter penetration force into the ground, cutter rotational state, cutter position and temperature, and in that the cutter and its mounting comprise means (5, 6) cooperating to transmit remotely the signals from the cutter sensors.
18. Boring cutter and its mounting according to claim 17, the cutter of which is fitted with a set of the aforesaid sensors.
19. Boring cutter and its mounting according to claim 17, the cutter sensors (1-4) of which are mounted on a base incorporated in the cutter and which is fitted with acquisition and processing modules, a communication interface with the cutter mounting and an electrical supply unit.
20. Tunnel boring machine fitted with a rotary cutting head, which carries the mountings R for the rotary boring cutters M, characterized in that the cutters and their mountings are as defined in any one of claims 17 to 19 and in that the tunnel boring machine includes means of transmitting signals from the sensors to a central processing and display unit placed in the tunnel boring machine operating cab.
US11/662,106 2004-09-07 2005-09-07 Method And Device For Continuously Informing The Operator Of A Tunneling Machine On Physical Features Of A Ground To Be Tunnelled Abandoned US20080024000A1 (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
FR0409473A FR2874959B1 (en) 2004-09-07 2004-09-07 METHOD AND DEVICES FOR CONTINUOUSLY INFORMING THE CONDUCTOR OF A TUNNELIER OF THE NATURE OF THE LAND AT THE SIZE BOTTOM
FR0409473 2004-09-07
PCT/FR2005/002223 WO2006027497A1 (en) 2004-09-07 2005-09-07 Method and device for continuously informing the operator of a tunnelling machine on physical features of a ground to be tunnelled

Publications (1)

Publication Number Publication Date
US20080024000A1 true US20080024000A1 (en) 2008-01-31

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US11/662,106 Abandoned US20080024000A1 (en) 2004-09-07 2005-09-07 Method And Device For Continuously Informing The Operator Of A Tunneling Machine On Physical Features Of A Ground To Be Tunnelled

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Country Link
US (1) US20080024000A1 (en)
EP (1) EP1632645B1 (en)
CN (1) CN100572752C (en)
AT (1) ATE354720T1 (en)
CA (1) CA2579530C (en)
DE (1) DE602005000588T2 (en)
ES (1) ES2279491T3 (en)
FR (1) FR2874959B1 (en)
HK (1) HK1107386A1 (en)
PT (1) PT1632645E (en)
WO (1) WO2006027497A1 (en)
ZA (1) ZA200702770B (en)

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090297273A1 (en) * 2008-05-30 2009-12-03 Lindbergh Leif R Apparatus and method for monitoring tunnel boring efficiency
US20110031017A1 (en) * 2009-08-04 2011-02-10 Kawasaki Jukogyo Kabushiki Kaisha Abrasion detecting apparatus detecting abrasion of component of cutter head and tunnel boring machine including abrasion detecting apparatus
KR101394332B1 (en) * 2011-12-28 2014-05-14 한국과학기술원 TBM tunnel ahead prediction system
JP2015021340A (en) * 2013-07-22 2015-02-02 株式会社奥村組 Shield machine
JP2017066652A (en) * 2015-09-29 2017-04-06 株式会社大林組 Excavation monitoring device and excavation state determination method
JP2017210820A (en) * 2016-05-26 2017-11-30 五洋建設株式会社 Rotary bit state identification device and excavator
US10151201B2 (en) * 2014-04-08 2018-12-11 Herrenknecht Aktiengesellschaft High-precision sensors for detecting a mechanical load of a mining tool of a tunnel boring machine
WO2019145201A1 (en) * 2018-01-23 2019-08-01 Herrenknecht Aktiengesellschaft Cutting tool for a tunnel boring machine and a tunnel boring machine
US20190264563A1 (en) * 2018-02-26 2019-08-29 Xcmg-Kaigong Heavy Industry Nanjing Co., Ltd. Tunnel boring machine
US10641093B2 (en) 2015-01-13 2020-05-05 Hitachi Zosen Corporation Tunnel boring machine
US11448068B2 (en) 2018-11-05 2022-09-20 Bouygues Travaux Publics Optimization of boring by a tunnel boring machine as a function of ground/machine interactions
US11486249B2 (en) * 2019-07-02 2022-11-01 Institute Of Rock And Soil Mechanics, Cas Combined rock-breaking TBM tunneling method in complex strata for realizing three-way force detection

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* Cited by examiner, † Cited by third party
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DE102011114830B3 (en) 2011-10-05 2013-03-07 Herrenknecht Ag Apparatus for monitoring the rotational condition of a cutting roller assembly of a shield tunneling machine and cutting roller assembly for a shield tunneling machine
FR3000799B1 (en) * 2013-01-09 2015-01-30 Nfm Tech ELECTROMECHANICAL ASSEMBLY EQUIPPED WITH AT LEAST ONE ROTARY ORGAN AND A SYSTEM FOR MEASURING THE WEAR OF THE ROTATING BODY
CN106996294B (en) * 2017-05-10 2018-11-13 山东科技大学 A kind of coal mining machine roller pick, roller and coalcutter
CN107345884B (en) * 2017-06-03 2019-07-12 东北电力大学 A kind of tunnel piercing rounding machine cutter on-Line Monitor Device and its method
FR3093126B1 (en) 2019-02-27 2021-02-19 Bouygues Travaux Publics Unclogging of an evacuation opening of a tunnel boring machine using ultrasonic waves

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US4079795A (en) * 1975-01-28 1978-03-21 Maschinen-Und Bohrgerate-Fabrik Alfred Wirth & Co., K.G. Method and a device for drilling with several tools in simultaneous operation
US4181360A (en) * 1972-10-10 1980-01-01 Coal Industry (Patents) Limited Cutting force sensor
US4968098A (en) * 1989-09-11 1990-11-06 Atlantic Richfield Company Coal seam discontinuity sensor and method for coal mining apparatus
US5330292A (en) * 1990-03-09 1994-07-19 Kabushiki Kaisha Komatsu Seisakusho System and method for transmitting and calculating data in shield machine

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JP3477668B2 (en) * 1996-02-22 2003-12-10 株式会社熊谷組 Roller bit rotation detector
JP3511163B2 (en) * 1998-03-19 2004-03-29 大成建設株式会社 Tunnel excavator and tunnel excavation method using the same
DE29919505U1 (en) * 1999-11-05 2001-03-22 Wirth Co Kg Masch Bohr Tunnel boring machine
FR2823792B1 (en) * 2001-04-24 2003-07-25 Nfm Tech TUNNEL EXCAVATION MACHINE
JP3919172B2 (en) * 2002-04-17 2007-05-23 株式会社スターロイ Disc roller cutter and disc roller cutter monitoring system
CN1325758C (en) * 2004-02-03 2007-07-11 中铁隧道集团有限公司 Device capable of regulating open ratio in shield driving machine

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US4181360A (en) * 1972-10-10 1980-01-01 Coal Industry (Patents) Limited Cutting force sensor
US4079795A (en) * 1975-01-28 1978-03-21 Maschinen-Und Bohrgerate-Fabrik Alfred Wirth & Co., K.G. Method and a device for drilling with several tools in simultaneous operation
US4968098A (en) * 1989-09-11 1990-11-06 Atlantic Richfield Company Coal seam discontinuity sensor and method for coal mining apparatus
US5330292A (en) * 1990-03-09 1994-07-19 Kabushiki Kaisha Komatsu Seisakusho System and method for transmitting and calculating data in shield machine

Cited By (22)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090297273A1 (en) * 2008-05-30 2009-12-03 Lindbergh Leif R Apparatus and method for monitoring tunnel boring efficiency
EP2304177B1 (en) * 2008-05-30 2018-01-03 The Robbins Company Apparatus and method for monitoring tunnel boring efficiency
US8172334B2 (en) * 2008-05-30 2012-05-08 The Robbins Company Apparatus and method for monitoring tunnel boring efficiency
AU2009260436B2 (en) * 2008-05-30 2013-01-24 The Robbins Company Apparatus and method for monitoring tunnel boring efficiency
KR101243657B1 (en) * 2008-05-30 2013-03-14 더 로빈스 캄파니 Apparatus and method for monitoring tunnel boring efficiency
US8789890B2 (en) * 2009-08-04 2014-07-29 Kawasaki Jukogyo Kabushiki Kaisha Abrasion detecting apparatus detecting abrasion of component of cutter head and tunnel boring machine including abrasion detecting apparatus
EP2295705A3 (en) * 2009-08-04 2016-06-15 Kawasaki Jukogyo Kabushiki Kaisha Abrasion detecting apparatus detecting abrasion of component of cutter head and tunnel boring machine including abrasion detecting apparatus
US20110031017A1 (en) * 2009-08-04 2011-02-10 Kawasaki Jukogyo Kabushiki Kaisha Abrasion detecting apparatus detecting abrasion of component of cutter head and tunnel boring machine including abrasion detecting apparatus
KR101394332B1 (en) * 2011-12-28 2014-05-14 한국과학기술원 TBM tunnel ahead prediction system
JP2015021340A (en) * 2013-07-22 2015-02-02 株式会社奥村組 Shield machine
US10151201B2 (en) * 2014-04-08 2018-12-11 Herrenknecht Aktiengesellschaft High-precision sensors for detecting a mechanical load of a mining tool of a tunnel boring machine
US10641093B2 (en) 2015-01-13 2020-05-05 Hitachi Zosen Corporation Tunnel boring machine
JP2017066652A (en) * 2015-09-29 2017-04-06 株式会社大林組 Excavation monitoring device and excavation state determination method
JP2017210820A (en) * 2016-05-26 2017-11-30 五洋建設株式会社 Rotary bit state identification device and excavator
WO2019145201A1 (en) * 2018-01-23 2019-08-01 Herrenknecht Aktiengesellschaft Cutting tool for a tunnel boring machine and a tunnel boring machine
JP2021510779A (en) * 2018-01-23 2021-04-30 ヘーレンクネヒト アクツィエンゲゼルシャフトHerrenknecht Aktiengesellschaft Cutting tools and tunnel boring machines for tunnel boring machines
JP7123147B2 (en) 2018-01-23 2022-08-22 ヘーレンクネヒト アクツィエンゲゼルシャフト Cutting tools for tunnel boring machines and tunnel boring machines
US11448067B2 (en) 2018-01-23 2022-09-20 Herrenknecht Aktiengesellschaft Cutting tool for a tunnel boring machine and a tunnel boring machine
US20190264563A1 (en) * 2018-02-26 2019-08-29 Xcmg-Kaigong Heavy Industry Nanjing Co., Ltd. Tunnel boring machine
US10539016B2 (en) * 2018-02-26 2020-01-21 Xcmg-Kaigong Heavy Industry Nanjing Co., Ltd Tunnel boring machine
US11448068B2 (en) 2018-11-05 2022-09-20 Bouygues Travaux Publics Optimization of boring by a tunnel boring machine as a function of ground/machine interactions
US11486249B2 (en) * 2019-07-02 2022-11-01 Institute Of Rock And Soil Mechanics, Cas Combined rock-breaking TBM tunneling method in complex strata for realizing three-way force detection

Also Published As

Publication number Publication date
EP1632645B1 (en) 2007-02-21
DE602005000588D1 (en) 2007-04-05
HK1107386A1 (en) 2008-04-03
CN100572752C (en) 2009-12-23
CA2579530C (en) 2013-01-29
PT1632645E (en) 2007-05-31
FR2874959A1 (en) 2006-03-10
ATE354720T1 (en) 2007-03-15
FR2874959B1 (en) 2007-04-13
EP1632645A1 (en) 2006-03-08
CA2579530A1 (en) 2006-03-16
ZA200702770B (en) 2008-06-25
CN101044295A (en) 2007-09-26
DE602005000588T2 (en) 2007-06-21
ES2279491T3 (en) 2007-08-16
WO2006027497A1 (en) 2006-03-16

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