TY - JOUR
T1 - Numerical modelling for scattering of waves in three‐dimensional cracked material
AU - Han, Sixiong
AU - Ichikawa, Yasuaki
PY - 1995/12/30
Y1 - 1995/12/30
N2 - In this paper, a mathematical model is proposed for the problem of the scattering of plane waves in a three‐dimensional cracked materials. Instead of obtaining closed‐form solutions as in conventional theoretical analysis methods, this approach, called the Equivalent Nodal Force (ENF) method formulates the mechanical effects of cracks as an equivalent nodal force in a numerical procedure, and physically translates cracked material into an equivalent continuous one. Several mechanical relations between waves and cracks are evident from this method. Also the results of several numerical calculations are presented and these are compared with those obtained by the conventional methods.
AB - In this paper, a mathematical model is proposed for the problem of the scattering of plane waves in a three‐dimensional cracked materials. Instead of obtaining closed‐form solutions as in conventional theoretical analysis methods, this approach, called the Equivalent Nodal Force (ENF) method formulates the mechanical effects of cracks as an equivalent nodal force in a numerical procedure, and physically translates cracked material into an equivalent continuous one. Several mechanical relations between waves and cracks are evident from this method. Also the results of several numerical calculations are presented and these are compared with those obtained by the conventional methods.
KW - crack
KW - displacement gap vector
KW - equivalent nodal force
KW - wave propagation
KW - wave scattering
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U2 - 10.1002/nme.1620382402
DO - 10.1002/nme.1620382402
M3 - Article
AN - SCOPUS:0029485448
SN - 0029-5981
VL - 38
SP - 4081
EP - 4100
JO - International Journal for Numerical Methods in Engineering
JF - International Journal for Numerical Methods in Engineering
IS - 24
ER -