CALCULATION METHOD FOR MEASURING FLATNESS OF CROSS-SECTION OF TUNNEL SEGMENT BASED ON SPATIAL POINT-TO-PLANE RELATION
A calculation method for measuring the flatness of the cross-section of a tunnel segment based on the spatial point-to-plane relation, comprising the steps of: mounting: mounting a plurality of laser displacement sensors on a propulsion cylinder assembly plane of a tunnel boring machine, an emitting...
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Format | Patent |
Language | Chinese English French |
Published |
22.12.2022
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Abstract | A calculation method for measuring the flatness of the cross-section of a tunnel segment based on the spatial point-to-plane relation, comprising the steps of: mounting: mounting a plurality of laser displacement sensors on a propulsion cylinder assembly plane of a tunnel boring machine, an emitting laser beam of each sensor being parallel to an axis of a cylinder, being perpendicular to the propulsion cylinder assembly plane, and pointing to the end surface of a segment ring to be tested; arranging: the intersection of the straight line where the laser of each laser displacement sensor is located and the propulsion cylinder assembly plane is referred to as a base point Pi; the intersection formed between the laser of each laser displacement sensor and the end surface of said segment ring is referred to as a measurement point P'i; the corresponding spatial coordinates of each base point are represented by Pi(xi,yi,zi); the corresponding spatial coordinates of each measurement point are represented by Pi'(xi', |
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AbstractList | A calculation method for measuring the flatness of the cross-section of a tunnel segment based on the spatial point-to-plane relation, comprising the steps of: mounting: mounting a plurality of laser displacement sensors on a propulsion cylinder assembly plane of a tunnel boring machine, an emitting laser beam of each sensor being parallel to an axis of a cylinder, being perpendicular to the propulsion cylinder assembly plane, and pointing to the end surface of a segment ring to be tested; arranging: the intersection of the straight line where the laser of each laser displacement sensor is located and the propulsion cylinder assembly plane is referred to as a base point Pi; the intersection formed between the laser of each laser displacement sensor and the end surface of said segment ring is referred to as a measurement point P'i; the corresponding spatial coordinates of each base point are represented by Pi(xi,yi,zi); the corresponding spatial coordinates of each measurement point are represented by Pi'(xi', |
Author | MIAO, Yuanquan HE, Yanxing ZHOU, Jiandong XU, Qing WU, Yi ZHANG, Hongsheng SONG, Weihao PANG, Jingdun |
Author_xml | – fullname: XU, Qing – fullname: WU, Yi – fullname: MIAO, Yuanquan – fullname: PANG, Jingdun – fullname: ZHOU, Jiandong – fullname: SONG, Weihao – fullname: HE, Yanxing – fullname: ZHANG, Hongsheng |
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DocumentTitleAlternate | PROCÉDÉ DE CALCUL POUR LA MESURE DE LA PLANÉITÉ D'UNE SECTION TRANSVERSALE D'UN SEGMENT DE TUNNEL EN FONCTION D'UNE RELATION SPATIALE POINT À PLAN 一种基于空间点面关系测量隧道管片横断面平整度计算方法 |
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Notes | Application Number: WO2022CN99164 |
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Snippet | A calculation method for measuring the flatness of the cross-section of a tunnel segment based on the spatial point-to-plane relation, comprising the steps of:... |
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SubjectTerms | MEASURING MEASURING ANGLES MEASURING AREAS MEASURING IRREGULARITIES OF SURFACES OR CONTOURS MEASURING LENGTH, THICKNESS OR SIMILAR LINEARDIMENSIONS PHYSICS TESTING |
Title | CALCULATION METHOD FOR MEASURING FLATNESS OF CROSS-SECTION OF TUNNEL SEGMENT BASED ON SPATIAL POINT-TO-PLANE RELATION |
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