Povzetek
Identifying the local properties of a structure, either to perform structural health monitoringor to fine tune a numerical model, requires the updating of a large number of parameters.With a high spatial density, but a low dynamic range response information, high-speed-camerameasurements have the potential to identify a large number of localized parameters. In contrast,accelerometer measurements provide low-spatial-density modal shapes, but a high dynamicrange, and introduce the problem of mass loading. In this research, modal shapes from ahigh-speed camera are used, providing full-field response information about the observedstructure and an over-determined optimization problem. Since the high-speed camera has alower dynamic range than the accelerometer and the signal-to-noise ratio is low where thedisplacement amplitude is small, location-specific weighting methods were introduced. Thenumerical and real experiments showed that the accelerometer`s positioning is important forsuccessful updating, while with a high-speed-camera measurement this is not relevant. Thisresearch showed that due to the spatial over-determination, the model updating based on high-speed-camera data, was significantly better than the low-spatial-resolution, accelerometer-basedapproach.
Ključne besede
full-field response;digital image correlation;finite-element-model updating;localized parameters;
Podatki
Jezik: |
Angleški jezik |
Leto izida: |
2022 |
Tipologija: |
1.01 - Izvirni znanstveni članek |
Organizacija: |
UL FS - Fakulteta za strojništvo |
UDK: |
004.932:519.61 |
COBISS: |
72574211
|
ISSN: |
0888-3270 |
Št. ogledov: |
319 |
Št. prenosov: |
20 |
Ocena: |
0 (0 glasov) |
Metapodatki: |
|
Ostali podatki
Sekundarni jezik: |
Slovenski jezik |
Sekundarne ključne besede: |
modalne oblike polnega polja;korelacija digitalnih slik;modelno posodabljanje;lokalizirani parametri; |
Vrsta dela (COBISS): |
Članek v reviji |
Konec prepovedi (OpenAIRE): |
2024-02-01 |
Strani: |
str. 1-14 |
Zvezek: |
ǂVol. ǂ164 |
Čas izdaje: |
1. Feb. 2022 |
DOI: |
10.1016/j.ymssp.2021.108287 |
ID: |
13223759 |