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Fabricated permeable breakwater structure adopting grating for wave dissipation
The invention provides an assembly type permeable breakwater structure adopting grids for wave dissipation, which comprises a plurality of pile foundations, a plurality of cross beams, a plurality of first wave dissipation grids and a plurality of second wave dissipation grids, the cross beams are fixed at the tops of the pile foundations at intervals, the plurality of first wave dissipation grids are laid and fixed on a connecting frame, and the plurality of second wave dissipation grids are fixed on the connecting frame; the connecting frame is fixed on the cross beam, the first wave dissipation grids are spliced into a whole with an inclined wave dissipation slope surface, the second wave dissipation grids are spliced side by side into a whole with a vertical wave dissipation surface, and the first wave dissipation grids and the second wave dissipation grids are panels with porous structures on the surfaces. The fabricated wave-dissipating breakwater has the beneficial effects that the slope type wave-dissipating grids and the vertical wave-dissipating grids are comprehensively utilized for dissipating waves, secondary wave dissipation is formed through the phase difference between the slope type wave-dissipating grids and the vertical wave-dissipating grids, the structure permeability and the wave-dissipating effect are improved, the wave-dissipating fence plates are connected through the space frame structure, the fabricated wave-dissipating breakwater structure is formed, the structure stress state is improved, and the wave-dissipating effect is improved. The construction cost is reduced.
本发明提供一种采用格栅消浪的装配式透空防波堤结构,包括多个桩基、多条横梁、多块第一消浪格栅和多块第二消浪格栅,横梁间隔固定于桩基顶部,多块第一消浪格栅铺排固定于连接框架上,多块第二消浪格栅固定于连接框架上;连接框架固定于横梁上,第一消浪格栅拼接成具有倾斜消浪坡面的整体,多块第二消浪格栅并排拼接成具有竖直消浪面的整体,第一消浪格栅和第二消浪格栅均为表面开设多孔结构的面板。本发明的有益效果是综合利用斜坡式消浪格栅和直立消浪格栅进行消浪,并利用二者之间的相位差形成二次消浪,提高了结构透空率和消浪效果,消浪栅栏板通过空间框架结构连接,形成装配式消浪防波堤结构,改善结构受力状态,降低工程造价。
Fabricated permeable breakwater structure adopting grating for wave dissipation
The invention provides an assembly type permeable breakwater structure adopting grids for wave dissipation, which comprises a plurality of pile foundations, a plurality of cross beams, a plurality of first wave dissipation grids and a plurality of second wave dissipation grids, the cross beams are fixed at the tops of the pile foundations at intervals, the plurality of first wave dissipation grids are laid and fixed on a connecting frame, and the plurality of second wave dissipation grids are fixed on the connecting frame; the connecting frame is fixed on the cross beam, the first wave dissipation grids are spliced into a whole with an inclined wave dissipation slope surface, the second wave dissipation grids are spliced side by side into a whole with a vertical wave dissipation surface, and the first wave dissipation grids and the second wave dissipation grids are panels with porous structures on the surfaces. The fabricated wave-dissipating breakwater has the beneficial effects that the slope type wave-dissipating grids and the vertical wave-dissipating grids are comprehensively utilized for dissipating waves, secondary wave dissipation is formed through the phase difference between the slope type wave-dissipating grids and the vertical wave-dissipating grids, the structure permeability and the wave-dissipating effect are improved, the wave-dissipating fence plates are connected through the space frame structure, the fabricated wave-dissipating breakwater structure is formed, the structure stress state is improved, and the wave-dissipating effect is improved. The construction cost is reduced.
本发明提供一种采用格栅消浪的装配式透空防波堤结构,包括多个桩基、多条横梁、多块第一消浪格栅和多块第二消浪格栅,横梁间隔固定于桩基顶部,多块第一消浪格栅铺排固定于连接框架上,多块第二消浪格栅固定于连接框架上;连接框架固定于横梁上,第一消浪格栅拼接成具有倾斜消浪坡面的整体,多块第二消浪格栅并排拼接成具有竖直消浪面的整体,第一消浪格栅和第二消浪格栅均为表面开设多孔结构的面板。本发明的有益效果是综合利用斜坡式消浪格栅和直立消浪格栅进行消浪,并利用二者之间的相位差形成二次消浪,提高了结构透空率和消浪效果,消浪栅栏板通过空间框架结构连接,形成装配式消浪防波堤结构,改善结构受力状态,降低工程造价。
Fabricated permeable breakwater structure adopting grating for wave dissipation
一种采用格栅消浪的装配式透空防波堤结构
WANG YUHONG (Autor:in) / LI YING (Autor:in) / ZHAO JUAN (Autor:in) / LI JIAN (Autor:in) / WANG ZHIYU (Autor:in)
24.11.2023
Patent
Elektronische Ressource
Chinesisch
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