An Experimental Study on the Stability of Rubble Mound Structures by Wave Directionality

사석방파제의 안정성에 미치는 방향성효과에 관한 실험적 연구

  • Published : 2001.06.01

Abstract

Phenomena induced by waves, such as overtopping, sediment transport, vibration/fluctuation and destruction of structures are highly influenced by the directionality of wave propagation. These phenomena are often dominated by non-linearity, and so hydraulic model experiments are widely adopted for stability analysis rather than numerical modeling, Thus, stability ofrubblc mound breakwaters(RMB) due to wavc directionality was experimentally investigated in this study. The incident wave angle $30^{\circ}$ was found more risky on the damage rate of RMB under directional regular waves, and the incident wave angle $40^{\circ}$ was found relatively risky under directional irregular waves. These results clarified the wave directionality effect on the stability ofRMB, These facts were found correspondent to the occurrence of the peak between $20^{\circ}$-$40^{\circ}$ with the directional frequency distribution of lIlO maximum water particle velocity.

파랑에 관계하는 현상에는 월파, 표사이동, 구조물의 진동.동요, 파괴 등 방향성의 영향을 현저하게 받아들이는 것이 많다. 이들은 비선형성이 강하기 때문에 수치계산에 의한 해석이 곤란하므로, 수리모형실험으로 외력인자를 평가, 해석정도를 높일 필요성이 증대하고 있다. 본 연구는 파랑의 다양한 입사각에 따라 사석방파제의 안정성을 논의하였으며, 파괴율은 방향성규칙파에서 $30^{\circ}$, 방향성불규칙파인 경우는 40$^{\circ}$부근에서 입사각 $0^{\circ}$일 때 보다 상대적으로 크게 변동하였다. 즉, 사석방파제의 안정성에 미치는 방향성효과에 따른 것이라고 평가할 수 있다. 이들은 1/10 최대 합성유속의 방향별 빈도분포의 피크가 $20^{\circ}$~$40^{\circ}$에서 발생하는 사실과 부합된다.

Keywords

References

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