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MORPHODYNAMIC STUDY DURING A EQUINOCIAL TIDE OF SIZIGIA ON A BEACH OF MACROMARE OF THE AMAZON COAST (AJURUTEUA-PA BEACH, BRAZIL)
被引:0
|作者:
Barbosa, Vitalina Magalhaes
[1
]
da Silva Gregorio, Anderson Manoel
[1
]
Busman, Debora Vieira
[1
]
Albuquerque Marinho da Costa, Rauquirio Andre
[2
]
Martins Sousa e Filho, Pedro Walfir
[3
]
Carneiro Pereira, Luci Cajueiro
[1
]
机构:
[1] Campus Univ Braganca, Inst Estudos Costeiros, Lab Oceanog Costeira & Estuarina, Alameda Leandro Ribeiro S-N, BR-68600000 Braganca, Para, Brazil
[2] Univ Fed Para, Lab Plancton & Cult Microalgas, BR-68600000 Braganca, Para, Brazil
[3] Univ Fed Para, Ctr Geociencias, Lab Anal Imagens Trop Umido LAIT, BR-66075110 Belem, Para, Brazil
来源:
关键词:
Morphodynamic;
equinoctial tide;
macrotidal;
Amazon coast;
D O I:
暂无
中图分类号:
P [天文学、地球科学];
学科分类号:
07 ;
摘要:
The Bragantinian coastal zone has been subjected to strong hydrodynamic processes, which continuously remodel its beach morphology. These energy fluctuations are more intense during the equinoctial spring tides, registered during the months of March/April and September/October. To understand the morphodynamic changes during an equinoctial spring tide event (from 17 to 22 of March of 2003), morfodynamic studies were carried out daily to characterize parameters such as current intensity and speed, wave break height (H-b), wave break period (T), wave break angle (alpha(b)), profile's declivity (m), surf scaling parameter (epsilon), breaking coefficient (beta) - and beach scarp variations. The currents were measured in the surf zone through a Sensordata SD30 current meter. The wave break height, period and angle were measured by a graduate rule, chronometer and manual compassing, respectively. The topographic surveys were carried out in two perpendicular shoreline profiles by role and topographic level. The analysis of these parameters showed that the studied area is, in its majority, dissipative with a spilling type breaker, mainly in the SE sector. The observed erosive processes in the studied beach are a consequence of natural causes (sometimes unknown) intensified by the human influence e.g. disordered occupation on dune areas and mangrove zones by edifices. The equinoctial macrotide energy was the principal factor that contributed to the appearance of morphodynamic modifications at the Ajuruteua beach. These variations were responsible for short-term sedimentary volume changes in the different beach sub-environments.
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页码:31 / 43
页数:13
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