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首页> 外文期刊>Ocean Engineering >Bragg reflection of waves by slope sandy rippled bed and its induced soil response
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Bragg reflection of waves by slope sandy rippled bed and its induced soil response

机译:斜坡沙质波纹床的波格布拉格反射及其诱发的土壤响应

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Wave reflection and energy scattering occurs when waves propagate onto coastal areas with topography undulations. The reflection reaches a peak value when the surface wavelength is twice the wavelength of the undulations. The so-called Bragg resonance and its potential applications for the coastal defense have long been discussed. While there have been numerous studies on this topic, most of them assume the bottom topography as rigid and non-deformable. This study developed an extended time-dependent mild-slope equation to investigate wave propagation over a sand bed with rippled topography, to evaluate soil permeability and slope effect on Bragg reflection and its induced soil response. The sand bed was assumed as poro-elastic medium, and its soil properties such as permeability, porosity, and shear modulus were included. The results showed that the incident wavelength ratio at resonance was slightly smaller for the slope sandy rippled bed. Greater partial standing waves formed on the up-wave side of the ripples while wave breaking occurred on the slope after some distance from the ripples. Soil permeability increases the degree of wave attenuation as waves propagate. This study also investigated the wave-induced pore pressure in the soil skeleton. High pore pressure might cause soil liquefaction under Bragg resonance.
机译:当波传播到具有地形起伏的沿海地区时,就会发生波反射和能量散射。当表面波长是起伏波长的两倍时,反射达到峰值。长期以来,人们一直在讨论所谓的布拉格共振及其在海防中的潜在应用。尽管对此主题进行了大量研究,但大多数研究都认为底部地形是刚性且不可变形的。这项研究开发了一个扩展的时变缓坡方程,以研究波在具有波纹地形的沙床上的传播,以评估土壤渗透率和坡度对布拉格反射及其引起的土壤响应的影响。假定沙床为孔隙弹性介质,并包括其土壤性质,如渗透性,孔隙度和剪切模量。结果表明,斜坡沙质波纹床的共振入射波长比略小。在距波纹一定距离之后,在斜坡上形成了更大的局部驻波,而在斜坡上发生了波破碎。随着波传播,土壤渗透性增加了波衰减的程度。这项研究还研究了土壤骨架中波浪引起的孔隙压力。较高的孔隙压力可能会在布拉格共振作用下引起土壤液化。

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