Model experiment of hydrodynamic performance of square artificial reefs with hexagonal openings
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Abstract
In order to study the relationships between the resistance coefficients and lateral force coefficients of the square-shaped artificial reef with hexagonal openings and between the angle of attack and the opening ratio, we designed four model opening ratios (γty = 0.06, 0.14, 0.25, 0.39) The resistance and lateral force of the rectangular open artificial reef at four kinds of attack angles (θ = 0°, 15°, 30°, 45°) were measured, and the resistance coefficient and lateral force coefficient were calculated. Hexagonal open square reef model resistance Fx (30°) > Fx (45°) > Fx (15°) > Fx (0°), and lateral force Fy (30°) > Fy (15°) > Fy (45°) > Fy (0°) were obtained; the reef model resistance Fx (30°) was 1.28-1.72 times that of Fx (0°), and the lateral force Fy (30°) was Fy (0°) 2.8 to 11.1 times. The angle of attack can have a greater impact on the resistance and lateral forces of the reef model. With 4 kinds of opening ratios and 4 kinds of attack angles, the resistance coefficient CD ranged from 0.98 to 1.53. Resistance coefficient CD (30°) > CD (15°) > CD (45°) > CD (0°). The reef model resistance coefficient CD (30°) can be up to 1.26 times compared to CD (0°). At 4 kinds of opening ratios and 4 kinds of angles of attack, the lateral force coefficient CL ranged from 0.001 to 0.21. The lateral force coefficient CL (30°) > CL (15°) > CL (45°) > CL (0°). The maximum lateral force coefficient CL (30°) of the reef model can reach 3.5 times compared with CL (0°). When θ = 30°, the effect of lateral force on artificial reefs cannot be ignored.
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