Quantifying the condition of large cultural relics, such as marine archaeological shipwreck, is important to verify stability and reliability. Deformation monitoring system plays a key role in the preservation and long-term conservation of cultural relics. Two-dimensional digital image correlation (2D-DIC) method has proven its efficiency in being able to provide accurate quantitative information of structural deformations. In this study, a deformation monitoring system with four cameras based on 2D-DIC is developed to perform noncontact, optically based measurement to monitor the deformation of shipwreck in museum environment with low and varying illumination. Because the consistency of the accuracy of 2D-DIC measurements for different loc...
Two-dimensional Digital Image Correlation (DIC) is widely accepted and commonly used in the field of...
Deformation and strain measurements play a vital role in civil engineering. The current practice is ...
Digital Image Correlation (DIC) provides a full-field non-contact optical method for accurate deform...
One of the most common sources of damage in Cultural Heritage Objects (CHO) such as parchment, oil p...
Digital image correlation (DIC) is a well-established technique for the measurement and monitoring o...
Among the full-field optical measurement methods, the Digital Image Correlation (DIC) is one of the ...
Optics as the enabling technology is applied in many applications of engineering, medicine, multimed...
© 2017 Taylor & Francis Group, London. This paper introduces a methodology for improving the accurac...
Digital Image Correlation (DIC) is used to extract non-contact full-field three-dimensional displace...
A non-invasive and non-contact optical method for tracking overall and local deformations of canvas ...
Digital image correlation (DIC) is used to monitor strain in a representative textile material and a...
As a new and low-cost optical measurement technique to study the displacement and strain distribu...
Digital image correlation (DIC) is used to monitor strain in a representative textile material and a...
The paper describes the ongoing research on an interdisciplinary approach regarding the technologica...
Digital image correlation (DIC) is an optical technique allowing high-definition maps of displacemen...
Two-dimensional Digital Image Correlation (DIC) is widely accepted and commonly used in the field of...
Deformation and strain measurements play a vital role in civil engineering. The current practice is ...
Digital Image Correlation (DIC) provides a full-field non-contact optical method for accurate deform...
One of the most common sources of damage in Cultural Heritage Objects (CHO) such as parchment, oil p...
Digital image correlation (DIC) is a well-established technique for the measurement and monitoring o...
Among the full-field optical measurement methods, the Digital Image Correlation (DIC) is one of the ...
Optics as the enabling technology is applied in many applications of engineering, medicine, multimed...
© 2017 Taylor & Francis Group, London. This paper introduces a methodology for improving the accurac...
Digital Image Correlation (DIC) is used to extract non-contact full-field three-dimensional displace...
A non-invasive and non-contact optical method for tracking overall and local deformations of canvas ...
Digital image correlation (DIC) is used to monitor strain in a representative textile material and a...
As a new and low-cost optical measurement technique to study the displacement and strain distribu...
Digital image correlation (DIC) is used to monitor strain in a representative textile material and a...
The paper describes the ongoing research on an interdisciplinary approach regarding the technologica...
Digital image correlation (DIC) is an optical technique allowing high-definition maps of displacemen...
Two-dimensional Digital Image Correlation (DIC) is widely accepted and commonly used in the field of...
Deformation and strain measurements play a vital role in civil engineering. The current practice is ...
Digital Image Correlation (DIC) provides a full-field non-contact optical method for accurate deform...