共查询到19条相似文献,搜索用时 328 毫秒
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斜坡堤空心方块的内力分析 总被引:1,自引:0,他引:1
空心方块斜坡堤是一种适用于软土地基条件的防波堤或河口导堤的新结构型式。基于不规则波浪模型试验中量测的作用于空心方块上的波压力,文章中论述了采用有限元法对一种空心立方体型式的消浪块体进行结构应力分析,以对设计的构件配筋情况作进一步检验。 相似文献
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以斜坡式潜堤为研究对象,通过物理模型试验的方法,选取相对淹没水深、护面结构形式的糙渗系数、坡度等因素的变化对潜堤消浪特性的影响进行了研究。首先,分析了在规则波作用下相对淹没水深、护面结构形式的糙渗系数、坡度等因素对潜堤透射系数的变化规律,得到了各因素对潜堤透射系数影响程度,同时给出了波浪在潜堤附近传播时沿程波高变化情况。其次,采用与规则波相同的研究方法,分析了在不规则波作用下相对淹没水深、护面结构形式的糙渗系数、坡度等因素对潜堤透射系数的变化规律,得到了各因素对潜堤透射系数的影响程度,并给出了波浪在潜堤附近的沿程变化情况。 相似文献
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多体浮式防波堤消波特性是决定其应用价值的重要因素,基于三维势流理论,通过使用Ansys Workbench软件和AQWA Graphical Supervisor(AGS)图像后处理软件,对多体浮式防波堤在不同入射角和浮筒吃水深度下的消波效果展开研究。结果表明,在入射角度为90°时,多浮筒浮式防波堤能够最大程度地消减波浪。同时,透射系数随吃水深度的增加而不断减小,但结构稳定性会下降。因此,实际工程中应尽量保证浮式防波堤的迎浪面与波浪的来波方向垂直,这样可以获得较好的消波效果,同时应尽量避免选择吃水深度过大的浮式防波堤。 相似文献
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新型透空板式防波堤消浪效果试验研究 总被引:3,自引:0,他引:3
为增大双层板式防波堤的波能耗散和防波堤结构的稳定,提出了的一种新型桩基双层板式防波堤,通过物理模型试验,对比分析了该防波堤结构(模型 c)与另两种结构型式的防波堤(模型 a、b)在不同的波浪参数下透射系数、反射系数的变化关系,探讨了新型桩基双层板式防波堤(模型 c)透射系数、反射系数随相对波高、相对水深及相对淹没深度的变化关系,分析了其波能损耗情况。结果表明,在试验范围内,对于长周期波,模型 c 比其他两种型式的防波堤消波效果好;当水深与模型顶平齐时新结构(模型 c)对波能的消耗大于淹没和出水两种情况,说明防波堤高程与水位平齐时其消波效果较好。 相似文献
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针对新型附带消浪板桩基透空堤消浪性能,对波浪作用下该新型透空堤的反射系数、透射系数以及波能分布进行研究.采用FLOW-3D数值模拟方法,得出消浪板的开孔率、相对入水深度以及倾斜角度变化时透空堤反射系数、透射系数以及波能分布.结果显示:1)该新型附带消浪板桩基透空堤具有较好的消浪性能,开孔率越小,其反射系数越大、透射系数... 相似文献
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The integration of wave energy converters(WECs) with floating breakwaters has become common recently due to the benefits of both cost-sharing and providing offshore power supply. In this study, based on viscous computational fluid dynamics(CFD) theory, we investigated the hydrodynamic performances of the floating box and Berkeley Wedge breakwaters, both of which can also serve as WECs. A numerical wave flume model is constructed using Star-CCM+software and applied to investigate the interaction between waves and wave energy converters while completing the verification of the convergence study of time and space steps. The effects of wave length on motion response and transmission coefficient of the floating box breakwater model are studied. Comparisons of our numerical results and published experimental data indicate that Star-CCM+ is very capable of accurately modeling the nonlinear wave interaction of floating structures, while the analytical potential theory overrates the results especially around the resonant frequency. Optimal damping can be readily predicted using potential flow theory and can then be verified by CFD numerical results. Next, we investigated the relationship between wave frequencies and various coefficients using the CFD model under optimal damping, including the motion response, transmission coefficient, reflection coefficient,dissipation coefficient, and wave energy conversion efficiency. We then compared the power generation efficiencies and wave dissipation performances of the floating box and Berkeley Wedge breakwaters. The results show that the power generation efficiency of the Berkeley Wedge breakwater is always much higher than that of the floating box breakwater. Besides, the wave dissipation performance of the Berkeley Wedge breakwater is much better than that of the floating box breakwater at lower frequency. 相似文献