A numerical study of circulation in a coastal reef-lagoon system

被引:141
作者
Lowe, Ryan J. [1 ]
Falter, James L. [2 ]
Monismith, Stephen G. [3 ]
Atkinson, Marlin J. [2 ]
机构
[1] Univ Western Australia, Sch Earth & Environm, Crawley, WA 6009, Australia
[2] Univ Hawaii, Hawaii Inst Marine Biol, Kaneohe, HI 96744 USA
[3] Stanford Univ, Environm Fluid Mech Lab, Stanford, CA 94305 USA
基金
美国国家科学基金会; 澳大利亚研究理事会;
关键词
WAVE-DRIVEN CIRCULATION; FRINGING CORAL-REEF; SEDIMENT-TRANSPORT; SUSPENDED SEDIMENT; RESIDENCE TIME; WATER EXCHANGE; BOUNDARY-LAYER; MAJURO ATOLL; TAGUE REEF; ST-CROIX;
D O I
10.1029/2008JC005081
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
A coupled wave-circulation numerical model was used to simulate the distribution of wave energy, as well as the circulation induced by wave breaking, wind, and tidal forcing, within a coral reef system in Kaneohe Bay, Oahu, Hawaii. Modeled wave, current, and wave setup fields were compared with field measurements collected on the forereef, reef flat, and reef channels and in the lagoon over a 4-week period. The predicted wave height transformation across the reef-lagoon system was in good agreement with field observations, using single-parameter (spatially uniform) values to describe both wave-breaking and frictional dissipation. The spatial distribution of the resulting wave setup field drove a persistent wave-driven flow across the reef flat that returned to the ocean through two deeper channels in the reef. Both the magnitude and direction of these currents were well described using a spatially uniform hydraulic roughness length scale. Notably, the model lends support to field observations that setup within the coastally bounded lagoon was a substantial fraction of the maximum setup on the reef (similar to 60-80%), which generated relatively weak cross-reef wave-driven flows (similar to 10-20 cm s(-1)) compared with reefs having mostly unbounded lagoons (e. g., many atolls and barrier reefs). Numerical experiments conducted using Lagrangian particle tracking revealed that residence times within Kaneohe Bay are extremely heterogeneous, typically ranging from <1 day on the reef to >1 month within its sheltered southern lagoon.
引用
收藏
页数:18
相关论文
共 61 条
[1]   Structure, propagation, and mixing of energetic baroclinic tides in Mamala Bay, Oahu, Hawaii [J].
Alford, Matthew H. ;
Gregg, Michael C. ;
Merrifield, Mark A. .
JOURNAL OF PHYSICAL OCEANOGRAPHY, 2006, 36 (06) :997-1018
[2]  
Andrews J.R., 1990, P11
[3]   Wave-driven circulation across the coral reef at Bamburi Lagoon, Kenya [J].
Angwenyi, CM ;
Rydberg, L .
ESTUARINE COASTAL AND SHELF SCIENCE, 2005, 63 (03) :447-454
[4]   EFFECTS OF WATER VELOCITY ON PHOSPHATE-UPTAKE IN CORAL REEF-FLAT COMMUNITIES [J].
ATKINSON, MJ ;
BILGER, RW .
LIMNOLOGY AND OCEANOGRAPHY, 1992, 37 (02) :273-279
[5]   CALIBRATION AND VERIFICATION OF A DISSIPATION MODEL FOR RANDOM BREAKING WAVES [J].
BATTJES, JA ;
STIVE, MJF .
JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 1985, 90 (NC5) :9159-9167
[6]  
Battjes JA., 1978, Coastal Engineering Proceeding, V32, P569, DOI [10.1061/9780872621909.034, DOI 10.1061/9780872621909.034, DOI 10.9753/ICCE.V16.32]
[7]  
BEARDSLEY RC, 1985, CODE 2 MOORED ARRAY
[8]   A third-generation wave model for coastal regions - 1. Model description and validation [J].
Booij, N ;
Ris, RC ;
Holthuijsen, LH .
JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 1999, 104 (C4) :7649-7666
[9]   SUSPENDED SEDIMENT IN THE SURF ZONE [J].
DEIGAARD, R ;
FREDSOE, J ;
HEDEGAARD, IB .
JOURNAL OF WATERWAY PORT COASTAL AND OCEAN ENGINEERING-ASCE, 1986, 112 (01) :115-128
[10]   COMPUTATION OF THE DRIVING FORCES OF WAVE-INDUCED CURRENTS [J].
DINGEMANS, MW ;
RADDER, AC ;
DEVRIEND, HJ .
COASTAL ENGINEERING, 1987, 11 (5-6) :539-563