Response of a floating ice sheet due to a moving load in the presence of an undulating sea bottom

被引:1
作者
Nehra, Mahesh Kumar [1 ]
Bora, Swaroop Nandan [1 ]
机构
[1] Indian Inst Technol Guwahati, Dept Math, Gauhati 781039, Assam, India
关键词
SURFACE-WAVE PROPAGATION; TIME-DEPENDENT RESPONSE; WATER-WAVES; REFLECTION; MOTION; PLATE; BED;
D O I
10.1063/5.0255552
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
This work studies how waves are generated due to a moving load activated on a floating ice sheet in the presence of an undulating sea bottom. This study is concerned with the two-dimensional situation in which a line load is considered as the moving load on the ice sheet. The Fourier transform technique is used to solve the governing equation, which is derived from potential flow theory. A perturbation method is utilized to study the effect of the moving load and the undulating sea-bed in the form of a sinusoidal ripple bed. Expressing the moving load in the form of a Dirac delta function and a Heaviside unit step function, the ice sheet deflection is obtained through an integral for which the asymptotic contribution associated with stationary points for various load speed regimes is obtained. Various load speeds are found to be responsible for altering the deflection of the ice sheet. During the study of the effect of the undulating sea-bed, the ice behavior is observed to be closer to that of a flat sea-bed when the number of ripples of the undulation increases. In addition, a noticeable difference arises in the ice sheet deflection around the load when the number of ripples varies. In all results, the phenomenon of Bragg resonance is accounted for. The findings of this work provide valuable information on the complex interplay among the ice sheet, sea-bed undulation, and external forcing, contributing significantly to the understanding of wave dynamics in ice-covered environments.
引用
收藏
页数:12
相关论文
共 32 条
[1]  
Bender CarlM., 1978, ADV MATH METHODS SCI
[2]   Steady free-surface flow over spatially periodic topography [J].
Binder, B. J. ;
Blyth, M. G. ;
Balasuriya, S. .
JOURNAL OF FLUID MECHANICS, 2015, 781
[3]   SAND RIPPLES UNDER SEA WAVES .1. RIPPLE FORMATION [J].
BLONDEAUX, P .
JOURNAL OF FLUID MECHANICS, 1990, 218 :1-17
[4]   WATER-WAVES OVER RIPPLES [J].
DALRYMPLE, RA ;
KIRBY, JT .
JOURNAL OF WATERWAY PORT COASTAL AND OCEAN ENGINEERING-ASCE, 1986, 112 (02) :309-319
[5]  
Davies A. G., 1980, Technical report
[6]   SURFACE-WAVE PROPAGATION OVER SINUSOIDALLY VARYING TOPOGRAPHY [J].
DAVIES, AG ;
HEATHERSHAW, AD .
JOURNAL OF FLUID MECHANICS, 1984, 144 (JUL) :419-443
[7]   THE PROPAGATION OF LONG WAVES OVER AN UNDULATING BED [J].
DAVIES, AG ;
GUAZZELLI, E ;
BELZONS, M .
PHYSICS OF FLUIDS A-FLUID DYNAMICS, 1989, 1 (08) :1331-1340
[8]  
DAVIES AG, 1982, J MAR RES, V40, P331
[9]   THE REFLECTION OF WAVE ENERGY BY UNDULATIONS ON THE SEABED [J].
DAVIES, AG .
DYNAMICS OF ATMOSPHERES AND OCEANS, 1982, 6 (04) :207-232
[10]   WAVES DUE TO A STEADILY MOVING SOURCE ON A FLOATING ICE PLATE [J].
DAVYS, JW ;
HOSKING, RJ ;
SNEYD, AD .
JOURNAL OF FLUID MECHANICS, 1985, 158 (SEP) :269-287