IP Library › Granted Patent US 10,371,666
Granted Patent B2
US 10,371,666 · App. 15/456,075 · Granted Aug 6, 2019

Structure evaluation system, structure evaluation apparatus, and structure evaluation method

Inventors: Kazuo Watabe (Kanagawa, JP); Hidefumi Takamine (Tokyo, JP); Tomoki Shiotani (Kyoto, JP)
Assignees: KABUSHIKI KAISHA TOSHIBA; Kyoto University
G01N29/14G01M5/0008G01M5/0033G01M5/0066G01N29/043G01N29/07G01N29/2437G01N29/4436G01N29/4445G01N29/4463G01N2291/0232G01N2291/0258G01N2291/0289
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Quick Facts
Patent No.
US 10,371,666
App. No.
15/456,075
Granted
Aug 6, 2019
Kind
B2
Abstract

According to an embodiment, a structure evaluation system includes a plurality of sensors, a position locator, a velocity calculator, and an evaluator. The sensors detect an elastic wave generated from a structure. The position locator derives a wave source distribution of the elastic waves generated from the structure, on the basis of the elastic waves. The velocity calculator derives a propagation velocity of the elastic wave generated from the structure, on the basis of the elastic waves. The evaluator evaluates the soundness of the structure on the basis of the wave source distribution and the propagation velocity of the elastic waves.

Claims (36)

1. A structure evaluation system comprising:

a plurality of sensors configured to detect an elastic wave generated from a structure;

a position locator configured to derive a wave source distribution of the elastic waves generated from the structure, on the basis of the elastic waves;

a velocity calculator configured to derive a propagation velocity of the elastic wave generated from the structure, on the basis of the elastic waves; and

an evaluator configured to segment the soundness of the structure into a plurality of determination regions based on a reference value of the wave source distribution of the elastic wave and a reference value of the propagation velocity of the elastic wave,

wherein the evaluator sets a region which has a predetermined range including at least one of the reference value of the wave source distribution of the elastic wave and the reference value of the propagation velocity of the elastic wave between the determination regions, and

wherein the evaluator evaluates the soundness of the structure depending on which of the determination regions each region of the structure to be evaluated corresponds to.

2. The structure evaluation system according to claim 1 , wherein, on the basis of a reference value related to a density of the wave sources of the elastic waves, the evaluator segments the wave source distribution into two regions, including a region in which the wave sources are sparsely arranged and a region in which the wave sources are densely arranged, and evaluates a region in which the wave sources are sparsely arranged and the propagation velocity of the elastic wave is lower than a reference value related to the propagation velocity of the elastic wave as a region in which deterioration of the structure is the most advanced.

3. The structure evaluation system according to claim 1 , wherein:

the velocity calculator derives a propagation velocity distribution indicating a distribution of the propagation velocity of the elastic waves by performing tomography analysis based on the elastic waves; and

the evaluator segments, on the basis of a reference value related to the propagation velocity of the elastic waves, the propagation velocity distribution into two regions, including a region in which the propagation velocity is high and a region in which the propagation velocity is low, and evaluates the region in which the wave sources are sparsely arranged and the propagation velocity is low as a region in which deterioration of the structure is the most advanced by using the wave source distribution and the propagation velocity distribution.

4. The structure evaluation system according to claim 1 , wherein the evaluator is configured to retrieve a region which satisfies conditions for evaluating a state of deterioration of the structure to be limit deterioration which represents that the deterioration is most advanced; to derive an evaluation result distribution showing regions satisfying the conditions; and to output the evaluation result distribution as derived.

5. The structure evaluation system according to claim 1 , wherein the evaluator evaluates each region of the structure as being in one of four phases, Sound, Intermediate deterioration I, Intermediate deterioration II, and Limit deterioration, derives an evaluation result distribution indicating to which phase among Sound, Intermediate deterioration I, Intermediate deterioration II, and Limit deterioration each of the regions of the structures corresponds, and outputs the derived evaluation result distribution.

6. The structure evaluation system according to claim 2 , wherein the evaluator evaluates a region in which the wave sources are sparsely arranged and the propagation velocity of the elastic wave is higher than a reference value related to the propagation velocity of the elastic wave as a region in the Sound phase in which deterioration of the structure is least advanced.

7. The structure evaluation system according to claim 1 , wherein the position locator derives the wave source distribution in which a distribution of the wave sources having an amplitude equal to or larger than a predetermined value is shown, on the basis of amplitude information of the elastic waves detected by the sensors.

8. The structure evaluation system according to claim 7 , wherein the amplitude information of the elastic wave is information on an amplitude of a first arrival wave of the elastic wave in each event detected by the sensors.

9. The structure evaluation system according to claim 1 , wherein the elastic wave is generated from damage to a surface or an inside of the structure as a result of stress applied to the structure.

10. A structure evaluation apparatus comprising:

a position locator configured to derive a wave source distribution of elastic waves generated from a structure, on the basis of the elastic waves;

a velocity calculator configured to derive a propagation velocity of the elastic wave generated from the structure on the basis of the elastic waves; and

an evaluator configured to segment the soundness of the structure into a plurality of determination regions based on a reference value of the wave source distribution of the elastic wave and a reference value of the propagation velocity of the elastic wave,

wherein the evaluator sets a region which has a predetermined range including at least one of the reference value of the wave source distribution of the elastic wave and the reference value of the propagation velocity of the elastic wave between the determination regions, and

wherein the evaluator evaluates the soundness of the structure depending on which of the determination regions each region of the structure to be evaluated corresponds to.

11. A structure evaluation method comprising:

a position locating step of deriving a wave source distribution of elastic waves generated from a structure, on the basis of the elastic waves;

a velocity calculating step of deriving a propagation velocity of the elastic wave generated from the structure on the basis of the elastic waves; and

an evaluating step of segmenting the soundness of the structure into a plurality of determination regions based on a reference value of the wave source distribution of the elastic wave and a reference value of the propagation velocity of the elastic wave,

wherein the evaluating step sets a region which has a predetermined range including at least one of the reference value of the wave source distribution of the elastic wave and the reference value of the propagation velocity of the elastic wave between the determination regions, and

wherein the evaluating step evaluates the soundness of the structure depending on which of the determination regions each region of the structure to be evaluated corresponds to.

12. A structure evaluation system comprising:

a plurality of sensors configured to detect an elastic wave generated from a structure;

a position locator configured to derive a wave source distribution of the elastic waves generated from the structure, on the basis of the elastic waves;

a velocity calculator configured to derive a propagation velocity of the elastic wave generated from the structure, on the basis of the elastic waves; and

an evaluator configured to segment the soundness of the structure into a plurality of determination regions which including at least sound determination region and Limit deterioration determination region indicating that deterioration of the structure is the most advanced based on a reference value of the source distribution of the elastic wave and a reference value of the propagation velocity of the elastic wave,

wherein the evaluator sets a region which has a predetermined range including the reference value of the propagation velocity of the elastic wave between the sound determination region and the Limit deterioration determination region, and

wherein the evaluator evaluates the soundness of the structure depending on which of the determination regions each region of the structure to be evaluated corresponds to.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 6, 2017
From: WATABE, KAZUO; TAKAMINE, HIDEFUMI; SHIOTANI, TOMOKI
To: KABUSHIKI KAISHA TOSHIBA; KYOTO UNIVERSITY
Reel/Frame 044314/0536 →
Priority Claims (1)
JP 2016-098951 · May 17, 2016 · national
Continuity (2)
Continuation PCTJP2017008850 · Mar 6, 2017
Related Publication 20170336365A1 · Nov 23, 2017