Proceedings of the International Conference on Coastal Engineering | |
PHYSICAL MODEL EXPERIMENTS OF ORDU-GIRESUN AIRPORT, TURKEY | |
Berguzar Ozbahceci1  Alp Kucukosmanoglu2  Nurgul GULTEKIN3  Mehmet SAG3  Sukru Emrah ARIKAN3  Yasin KILIC3  Fariz KOCA3  | |
[1] Izmir Institute of Technology;Mehmet Akif Ersoy University;Ministry of Transportation, Maritime Affairs and Communication | |
关键词: airport; breakwater; physical modeling; stability; overtopping; | |
DOI : 10.9753/icce.v35.structures.16 | |
学科分类:建筑学 | |
来源: Coastal Engineering Research Council | |
【 摘 要 】
Ordu-Giresun Airport, which has been constructed recently, being an example of the aviation sector of Turkish transportation network, is a project having marine structural aspects due to the construction at the sea by filling and in this workout physical model experiments of the project are evaluated. 3000-meters-long runway and the other superstructures of the airport, the first example of construction of such a structure by filling in the sea in Turkey, is to be protected by a breakwater of 7435 meters long. ‘First Cross Section’ has been prepared by using experimental formulas and artificial neural network and ‘Second Cross Section’, being the alternative of the first one has been planned. Yet, both cross sections have similar characteristics, they have berm heights in such a manner that ‘First Cross Section’ enables the structure to be constructed from the sea, whereas ‘Second Cross Section’ makes it possible from the land. Both cross sections are aimed to be evaluated in terms of stability, wave overtopping and economy through the hydraulic model studies performed at the Hydraulics Laboratory of Turkish Ministry of Transportation, Maritime Affairs and Communication. Starting from design stage (computation of design wave characteristics, physical model experiment under different wave conditions on different structure alternatives) to construction stage the engineering studies is presented with comparisons and discussions.
【 授权许可】
CC BY
【 预 览 】
Files | Size | Format | View |
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RO201902010460717ZK.pdf | 2919KB | download |