Wave propagation in channel with side porous caves

被引:10
|
作者
Sulisz, W [1 ]
机构
[1] Polish Acad Sci, Inst Hydroengn, PL-80953 Gdansk, Poland
来源
JOURNAL OF WATERWAY PORT COASTAL AND OCEAN ENGINEERING-ASCE | 2005年 / 131卷 / 04期
关键词
D O I
10.1061/(ASCE)0733-950X(2005)131:4(162)
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
A three-dimensional numerical solution was developed to determine the wave field in it narrow channel with side porous caves. The solution was achieved by applying the boundary element method. The model was applied to determine the effect of the geometry of caves and the physical and hydraulic properties of the porous material in the caves on the wave field ill the channel. The results show that the cave geometry and the physical and hydraulic properties of porous material in the cave have it significant effect on the wave field in a channel. Wave transmission down the channel usually decreases with increasing cave length and cave width and decreases with increasing porosity. Moreover, wave transmission usually decreases with increasing wave-damping properties for Porous material of low damping properties and increases with increasing wave-damping properties for porous material of high damping properties. A reduction of wave transmission down the channel, often substantial, can usually be achieved by increasing the porosity and increasing the wave-damping properties of the porous material. The results and additional analysis show that a reasonable wave transmission level can be achieved even for fairly short porous caves and that the model can be applied to select an optimal cave system for any prespecified conditions. Theoretical results are found to be in reasonable agreement with experimental data.
引用
收藏
页码:162 / 170
页数:9
相关论文
共 50 条
  • [41] Reflected and transmitted wave in a channel with side porous mattresses Wojciech Sulisz 55 (2008) 391-399
    Hudspeth, Robert T.
    COASTAL ENGINEERING, 2008, 55 (12) : 1250 - 1251
  • [42] Elastic wave propagation and scattering in prestressed porous rocks
    Li-Yun FU
    Bo-Ye FU
    Weijia SUN
    Tongcheng HAN
    Jianlin LIU
    Science China(Earth Sciences), 2020, 63 (09) : 1309 - 1329
  • [43] Experimental Investigation of Infragravity Wave Propagation on a Porous Reef
    Zhu, Gancheng
    Wen, Hongjie
    Dong, Ping
    Gu, Hanbin
    Ren, Bing
    JOURNAL OF WATERWAY PORT COASTAL AND OCEAN ENGINEERING, 2023, 149 (03)
  • [44] A possible mechanism for elastic wave propagation in porous rocks
    Sidorov, V. K.
    Tarantin, M. V.
    DOKLADY EARTH SCIENCES, 2010, 434 (01) : 1253 - 1256
  • [45] Elastic wave propagation and scattering in prestressed porous rocks
    Li-Yun Fu
    Bo-Ye Fu
    Weijia Sun
    Tongcheng Han
    Jianlin Liu
    Science China Earth Sciences, 2020, 63 : 1309 - 1329
  • [46] Reactive wave propagation in energetic porous silicon composites
    Parimi, Venkata Sharat
    Lozda, Alfredo Bermudez
    Tadigadapa, Srinivas A.
    Yetter, Richard A.
    COMBUSTION AND FLAME, 2014, 161 (11) : 2991 - 2999
  • [47] Wave propagation passing over a submerged porous breakwater
    Wiryanto, L. H.
    JOURNAL OF ENGINEERING MATHEMATICS, 2011, 70 (1-3) : 129 - 136
  • [48] Wave propagation in transversely isotropic porous piezoelectric materials
    Vashishth, Anil K.
    Gupta, Vishakha
    INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2009, 46 (20) : 3620 - 3632
  • [49] Wave propagation in porous thermoelasticity with two delay times
    Chirita, Stan
    Zampoli, Vittorio
    MATHEMATICAL METHODS IN THE APPLIED SCIENCES, 2022, 45 (03) : 1498 - 1512
  • [50] Partitioning surface wave propagation on reconfigurable porous plane
    Zhiyuan Chu
    Kin-Fai Tong
    Kai-Kit Wong
    Chan-Byoung Chae
    Yangyang Zhang
    Scientific Reports, 14