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Pregled bibliografske jedinice broj: 1015301

Wave impact loads prediction with compressible air effects using CFD


Gatin, Inno; Liu, Shengnan; Vladimir, Nikola; Jasak, Hrvoje
Wave impact loads prediction with compressible air effects using CFD // Proceedings of ASME 38th International Conference on Ocean, Offshore and Arctic Engineering OMAE 2019 / Incecik, A. ; Thiagarajan Sharman, K. (ur.).
Glasgow: American Society of Mechanical Engineers (ASME), 2019. OMAE2019-96026, 9 (predavanje, međunarodna recenzija, cjeloviti rad (in extenso), znanstveni)


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Naslov
Wave impact loads prediction with compressible air effects using CFD

Autori
Gatin, Inno ; Liu, Shengnan ; Vladimir, Nikola ; Jasak, Hrvoje

Vrsta, podvrsta i kategorija rada
Radovi u zbornicima skupova, cjeloviti rad (in extenso), znanstveni

Izvornik
Proceedings of ASME 38th International Conference on Ocean, Offshore and Arctic Engineering OMAE 2019 / Incecik, A. ; Thiagarajan Sharman, K. - Glasgow : American Society of Mechanical Engineers (ASME), 2019

Skup
38th International Conference on Ocean, Offshore and Arctic Engineering (OMAE 2019)

Mjesto i datum
Glasgow, Ujedinjeno Kraljevstvo, 09.06.2019. - 14.06.2019

Vrsta sudjelovanja
Predavanje

Vrsta recenzije
Međunarodna recenzija

Ključne riječi
Wave Impacts ; Compressible Air Effects ; Green Water ; CFD ; Naval Hydro Pack ; OpenFOAM

Sažetak
A computational method for predicting wave impact loads where compressible air effects might be present is presented in this paper. The method is a Finite Volume based Computational Fluid Dynamics method where air is modelled as a compressible ideal gas while water is treated as incompressible. Special numerical treatment of the interface based on the Ghost Fluid Method enables capturing the sharp transition in compressible properties of air and water across the free surface, making the method accurate for predicting trapped air pockets during wave impacts or slamming. The approach enables predicting impacts where trapped air pockets play an important role in the loading of the structure due to the capacity to absorb and redistribute wave impact energy. The present approach is validated on a falling water slamming case where trapped air compression is present. Next, a full scale wave breaking impact on a vertical wall is simulated and the results compared to experimental measurements, with trapped air compression effects. Finally, the method is applied on a breakwater green water loading calculation of an Ultra Large Container Ship in an extreme focused wave impact based on the Response Conditioned Wave theory. Motion of the container vessel is calculated directly during the simulation. The calculation is shown to be computed with limited computer resources in reasonable amount of time. Overall the approach proved to be accurate, robust and efficient, providing a tool for assessing wave impact loads with or without compressible air effects.

Izvorni jezik
Engleski

Znanstvena područja
Fizika, Brodogradnja, Strojarstvo, Temeljne tehničke znanosti



POVEZANOST RADA


Projekti:
HRZZ-UIP-2017-05-1253 - Zeleni modularni putnički brod za Mediteran (ZEMP / GRiMM) (Vladimir, Nikola, HRZZ - 2017-05) ( CroRIS)

Ustanove:
Fakultet strojarstva i brodogradnje, Zagreb

Profili:

Avatar Url Inno Gatin (autor)

Avatar Url Nikola Vladimir (autor)

Avatar Url Hrvoje Jasak (autor)


Citiraj ovu publikaciju:

Gatin, Inno; Liu, Shengnan; Vladimir, Nikola; Jasak, Hrvoje
Wave impact loads prediction with compressible air effects using CFD // Proceedings of ASME 38th International Conference on Ocean, Offshore and Arctic Engineering OMAE 2019 / Incecik, A. ; Thiagarajan Sharman, K. (ur.).
Glasgow: American Society of Mechanical Engineers (ASME), 2019. OMAE2019-96026, 9 (predavanje, međunarodna recenzija, cjeloviti rad (in extenso), znanstveni)
Gatin, I., Liu, S., Vladimir, N. & Jasak, H. (2019) Wave impact loads prediction with compressible air effects using CFD. U: Incecik, A. & Thiagarajan Sharman, K. (ur.)Proceedings of ASME 38th International Conference on Ocean, Offshore and Arctic Engineering OMAE 2019.
@article{article, author = {Gatin, Inno and Liu, Shengnan and Vladimir, Nikola and Jasak, Hrvoje}, year = {2019}, pages = {9}, chapter = {OMAE2019-96026}, keywords = {Wave Impacts, Compressible Air Effects, Green Water, CFD, Naval Hydro Pack, OpenFOAM}, title = {Wave impact loads prediction with compressible air effects using CFD}, keyword = {Wave Impacts, Compressible Air Effects, Green Water, CFD, Naval Hydro Pack, OpenFOAM}, publisher = {American Society of Mechanical Engineers (ASME)}, publisherplace = {Glasgow, Ujedinjeno Kraljevstvo}, chapternumber = {OMAE2019-96026} }
@article{article, author = {Gatin, Inno and Liu, Shengnan and Vladimir, Nikola and Jasak, Hrvoje}, year = {2019}, pages = {9}, chapter = {OMAE2019-96026}, keywords = {Wave Impacts, Compressible Air Effects, Green Water, CFD, Naval Hydro Pack, OpenFOAM}, title = {Wave impact loads prediction with compressible air effects using CFD}, keyword = {Wave Impacts, Compressible Air Effects, Green Water, CFD, Naval Hydro Pack, OpenFOAM}, publisher = {American Society of Mechanical Engineers (ASME)}, publisherplace = {Glasgow, Ujedinjeno Kraljevstvo}, chapternumber = {OMAE2019-96026} }




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