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STRAIN TENSOR CALCULATION SYSTEM, STRAIN GAUGE BONDING DIRECTION DETERMINATION METHOD, STRAIN TENSOR CALCULATION METHOD, AND STRAIN TENSOR CALCULATION PROGRAM
PROBLEM TO BE SOLVED: To provide a strain tensor calculation system capable of more precisely and more minutely calculating a deformation of an in-situ ground.SOLUTION: Provided is a strain tensor calculation system, including a plurality of strain gauges; and a strain tensor calculation device. The strain gauges are bonded at positions along a preset predetermined direction of a second object, the second object is buried in a first object that is a measuring target of the strain tensor calculation system, and the strain tensor calculation device includes an acquisition unit acquiring measurement values measured by the strain sensors; and a component calculation unit calculating respective components of a three-dimensional strain tensor representing a deformation of the second object on the basis of the measurement value acquired by the acquisition unit.
【課題】原位置地盤の変形を、より精密に、かつより詳細に算出することができるひずみテンソル算出システムを提供すること。【解決手段】複数個のひずみ計と、ひずみテンソル算出装置を具備するひずみテンソル算出システムであって、複数個のひずみ計は、第2物体の予め決められた所定の方向に沿った位置に貼付され、第2物体は、ひずみテンソル算出システムの計測対象となる第1物体に埋設され、ひずみテンソル算出装置は、複数個のひずみ計により計測された計測値を取得する取得部と、取得部により取得された計測値に基づいて、第2物体の変形を表す三次元ひずみテンソルの各成分を算出する成分算出部と、を備える、ひずみテンソル算出システムである。【選択図】図4
STRAIN TENSOR CALCULATION SYSTEM, STRAIN GAUGE BONDING DIRECTION DETERMINATION METHOD, STRAIN TENSOR CALCULATION METHOD, AND STRAIN TENSOR CALCULATION PROGRAM
PROBLEM TO BE SOLVED: To provide a strain tensor calculation system capable of more precisely and more minutely calculating a deformation of an in-situ ground.SOLUTION: Provided is a strain tensor calculation system, including a plurality of strain gauges; and a strain tensor calculation device. The strain gauges are bonded at positions along a preset predetermined direction of a second object, the second object is buried in a first object that is a measuring target of the strain tensor calculation system, and the strain tensor calculation device includes an acquisition unit acquiring measurement values measured by the strain sensors; and a component calculation unit calculating respective components of a three-dimensional strain tensor representing a deformation of the second object on the basis of the measurement value acquired by the acquisition unit.
【課題】原位置地盤の変形を、より精密に、かつより詳細に算出することができるひずみテンソル算出システムを提供すること。【解決手段】複数個のひずみ計と、ひずみテンソル算出装置を具備するひずみテンソル算出システムであって、複数個のひずみ計は、第2物体の予め決められた所定の方向に沿った位置に貼付され、第2物体は、ひずみテンソル算出システムの計測対象となる第1物体に埋設され、ひずみテンソル算出装置は、複数個のひずみ計により計測された計測値を取得する取得部と、取得部により取得された計測値に基づいて、第2物体の変形を表す三次元ひずみテンソルの各成分を算出する成分算出部と、を備える、ひずみテンソル算出システムである。【選択図】図4
STRAIN TENSOR CALCULATION SYSTEM, STRAIN GAUGE BONDING DIRECTION DETERMINATION METHOD, STRAIN TENSOR CALCULATION METHOD, AND STRAIN TENSOR CALCULATION PROGRAM
ひずみテンソル算出システム、ひずみ計貼付方向決定方法、ひずみテンソル算出方法、及びひずみテンソル算出プログラム
KIKUMOTO OSAMU (Autor:in) / OGIWARA KEITA (Autor:in) / TANI KAZUO (Autor:in) / OKADA SATOMI (Autor:in) / TAKAKURA NOZOMI (Autor:in)
11.06.2015
Patent
Elektronische Ressource
Japanisch
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