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    케이슨 전면에 피복된 테트라포드 소파공의 어깨폭을 고려한 수평파압 산정 = Estimating Horizontal Wave Pressure on a Caisson Considering the Shoulder Width of Tetrapods Placed in Front

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    https://www.riss.kr/link?id=A109984188

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    This paper introduces a method for estimating wave pressure on horizontal composite breakwaters that accounts for the effect of shoulder width. The influence of shoulder width on wave pressure was quantitatively assessed using experimental data obtained by varying the shoulder width of Tetrapod armor layers installed in front of the caisson in three different configurations. Physical experiments were performed with Tetrapods completely covering the caisson crest height, while only the shoulder width was altered. Analysis of the experimental results demonstrated a decreasing trend in horizontal wave pressure as shoulder width increased, with more pronounced pressure reduction observed in the upper portion of the caisson above the still water level. Since current design standards do not provide a method for estimating wave pressure on horizontal composite breakwaters covered with Tetrapods while considering shoulder width, this study proposes a wave pressure adjustment factor that incorporates shoulder width, by using the method presented by Oh and Lee (2020).
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    This paper introduces a method for estimating wave pressure on horizontal composite breakwaters that accounts for the effect of shoulder width. The influence of shoulder width on wave pressure was quantitatively assessed using experimental data obtain...

    This paper introduces a method for estimating wave pressure on horizontal composite breakwaters that accounts for the effect of shoulder width. The influence of shoulder width on wave pressure was quantitatively assessed using experimental data obtained by varying the shoulder width of Tetrapod armor layers installed in front of the caisson in three different configurations. Physical experiments were performed with Tetrapods completely covering the caisson crest height, while only the shoulder width was altered. Analysis of the experimental results demonstrated a decreasing trend in horizontal wave pressure as shoulder width increased, with more pronounced pressure reduction observed in the upper portion of the caisson above the still water level. Since current design standards do not provide a method for estimating wave pressure on horizontal composite breakwaters covered with Tetrapods while considering shoulder width, this study proposes a wave pressure adjustment factor that incorporates shoulder width, by using the method presented by Oh and Lee (2020).

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