Effect of bottom undulation for mitigating wave-induced forces on a floating bridge

被引:38
|
作者
Manisha [1 ]
Kaligatla, R. B. [1 ]
Sahoo, T. [2 ]
机构
[1] Indian Inst Technol ISM, Dept Appl Math, Dhanbad 826004, Bihar, India
[2] Indian Inst Technol, Dept Ocean Engn & Naval Architecture, Kharagpur 721302, W Bengal, India
关键词
Floating bridge; Submerged breakwater; Trench; Eigenfunction expansion; Modified mild-slope equation; Reflection coefficient; POROUS BARRIERS; OBLIQUE WAVES; WATER-WAVES; LONG WAVES; SCATTERING; BREAKWATER; WALL;
D O I
10.1016/j.wavemoti.2019.03.007
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
A model for oblique wave interaction with a floating bridge in the presence of a submerged breakwater and a trench is developed. The breakwaters and trenches are considered to be of trapezoidal and circular types. The performance of these undulations in bottom bed are analyzed in detail for reflecting waves and reducing resulting forces on bridge. The analysis is performed by utilizing solutions derived with the aid of modified mild-slope equation in the undulated bottom region and of eigenfunction expansion in uniform bottom region. Significant changes are found in wave reflection and forces due to consideration of these undulations in bottom bed as compared to those in the case of uniform bottom everywhere in fluid region. The present study shows certain range of wave incident angles at which the breakwaters and trenches perform effectively in reflecting waves and thereby reducing forces. A complementary connection is justified between reflection of waves and consequent forces on bridge. Moreover, critical wavenumbers and angles where zero reflection occurs are found in shallow and intermediate water depth. The critical values are found to lead an increase in forces and for these values appropriate gap lengths between bridge and breakwater or trench, width of breakwater and trench are explored. Phase shift in reflection and forces is observed due to the inversion of undulated profiles. Within a periodic value of the distance between the breakwater/trench and the floating bridge, optima in wave reflection occurs. In addition, the maxima in wave reflection is associated with the minima in wave forces acting on the floating bridge. The findings from the present model are likely to be useful in understanding the role of breakwaters and trenches in engineering applications. (C) 2019 Elsevier B.V. All rights reserved.
引用
收藏
页码:166 / 184
页数:19
相关论文
共 50 条
  • [21] Wave-induced local steady forces on a column-supported very large floating structure
    Kashiwagi, M
    PROCEEDINGS OF THE ELEVENTH (2001) INTERNATIONAL OFFSHORE AND POLAR ENGINEERING CONFERENCE, VOL I, 2001, : 264 - 271
  • [22] Effects of a floating wave barrier with square cross section on the wave-induced forces exerted to an offshore jacket structure
    Osgouei, Arash Dalili
    Poursorkhabi, Ramin Vafaei
    Maleki, Ahmad
    Ahmadi, Hamid
    OCEAN SYSTEMS ENGINEERING-AN INTERNATIONAL JOURNAL, 2021, 11 (03): : 259 - 274
  • [23] Research on Wave-Induced Dynamic Response Characteristics of Floating Bridge Based on Time Domain Analysis
    Xiang, Sheng
    Zhang, Song-Yan
    Cheng, Bin
    Bridge Construction, 2022, 52 (03) : 98 - 105
  • [24] Wave-induced motion and seismic response characteristics of floating bridge anchored with submarine cable and fender
    Kusaka, Tadasu
    Fukuda, Isao
    Ueda, Shigeru
    Shiraishi, Satoru
    Sugano, Takahiro
    PROCEEDINGS OF THE SEVENTEENTH (2007) INTERNATIONAL OFFSHORE AND POLAR ENGINEERING CONFERENCE, VOL 1- 4, PROCEEDINGS, 2007, : 2523 - 2530
  • [25] COMPUTATION OF THE DRIVING FORCES OF WAVE-INDUCED CURRENTS
    DINGEMANS, MW
    RADDER, AC
    DEVRIEND, HJ
    COASTAL ENGINEERING, 1987, 11 (5-6) : 539 - 563
  • [26] Forecasting wave-induced response for offshore floating structures
    Magnusson, AK
    Vårdal, OT
    Hjollo, BÅ
    Myklebust, R
    Reistad, M
    Hansen, K
    PROCEEDINGS OF THE ELEVENTH (2001) INTERNATIONAL OFFSHORE AND POLAR ENGINEERING CONFERENCE, VOL III, 2001, : 229 - 236
  • [27] Control of wave-induced vibrations on floating production systems
    Travanca, Joao
    Hao, Hong
    OCEAN ENGINEERING, 2017, 141 : 35 - 52
  • [28] ESTIMATING WAVE-INDUCED BOTTOM VELOCITIES AT VERTICAL WALL
    HUGHES, SA
    JOURNAL OF WATERWAY PORT COASTAL AND OCEAN ENGINEERING-ASCE, 1992, 118 (02): : 175 - 192
  • [29] Estimating wave-induced bottom velocities at vertical wall
    Hughes, Steven A.
    Journal of Waterway, Port, Coastal and Ocean Engineering, 1992, 118 (02) : 175 - 192
  • [30] Experimental investigation of TLD for mitigating wave-induced structural vibration
    Li, HJ
    Dong, S
    Takayama, T
    PROCEEDINGS OF THE ELEVENTH (2001) INTERNATIONAL OFFSHORE AND POLAR ENGINEERING CONFERENCE, VOL I, 2001, : 84 - 89