Özet
Both marine and terrestrial ice sheets have been dramatically retreating in response to climate warming during recent years. One of the principal ablation mechanisms in an ice shelf is the calving process which is a consequence of crack propagation of pre-existing fractures. Iceberg calving occurs along ice sheets perimeter depending on various crevasses' parameters such as the location, form, and distribution. In this study, a simple rectangular ice structure subjected to impact load is analysed and dynamic crack propagation in the structure is modelled using bond-based Peridynamics (PD) which is a non-local form of classical continuum theory. To investigate the effect of surface crevasses on glacier fracture mechanism and dynamic crack propagation, the proposed material modelling of ice fracture is discussed. Both the amount and depth of crevasses as effective parameters in the fracture of an ice structure have been seen from numerical results obtained by our PD model. Thus, it can be said that Peridynamic theory is a simple and robust method to model and analyse the relation between surface crevasses and crack propagation in a glacier.
| Orijinal dil | İngilizce |
|---|---|
| Dergi | Proceedings of the International Conference on Port and Ocean Engineering under Arctic Conditions, POAC |
| Hacim | 2023-June |
| Yayın durumu | Yayınlandı - 2023 |
| Etkinlik | 27th International Conference on Port and Ocean Engineering under Arctic Conditions, POAC 2023 - Glasgow, United Kingdom Süre: 12 Haz 2023 → 16 Haz 2023 |
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Publisher Copyright:© 2023 Lulea University of Technology. All rights reserved.
Finansman
Adem Candaş is supported by the Scientific and Technological Research Council of Turkey (TÜBİTAK) 2219 International Postdoctoral Research Fellowship Program, Project No: 1059B192100891.
| Finansörler | Finansör numarası |
|---|---|
| Türkiye Bilimsel ve Teknolojik Araştırma Kurumu | 1059B192100891 |
BM SKH
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SKH 13 İklim Eylemi
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