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Feasibility of damage identification based on the detection of this local variation of modal reactive power flow in a structure is studied.
The numerical results obtained show the feasibility of damage consideration in the PIA and the influence of damage effects on the sheet formability.
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The feasibility of the present damage identification method is tested through some numerically simulated damage identification analyses and then experimental verification is conducted for a cantilevered beam with damage caused by introducing three slots.
In order to verify the feasibility of the developed damage indicators, experimental data for a three-story benchmark structure is adopted.
Furthermore, the applications of two numerical examples demonstrate the feasibility of the nonlocal damage model in dealing with the pathological mesh size dependent responses involving concrete strain softening.
In this section, the RC column is used as an example to demonstrate the feasibility of the nonlocal damage model in calculating the post-blast residual axial capacity.
The results obtained from a number of different damage scenarios confirm the feasibility of the proposed vibration based damage detection method for three dimensional asymmetric buildings.
The feasibility of detecting small crack damage according to structural natural frequency and dynamic responses is evaluated.
This paper investigates the feasibility of an on-line damage detection capability for helicopter main rotor blades made of composite material.
The objective of the research is to investigate the feasibility of methods to repair end damage or strengthen against end damage in American Association of State Highway and Transportation (AASHTO) prestressed concrete bridge girders.
Changes of the modal frequencies after delamination initiation, compared to those of a non-delaminated specimen, gave a good indication of the degree of damage, demonstrating the feasibility of using measured changes in the vibration characteristics to detect damage.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com