0 .001
0.0001
1e-005
1e-006
4.1 Non-Linear Energy Transfer in Wind Wave Spectrum
113
5
0
\
\
8
1=0
~ 1=10e3
-a-- 1=1 0e4
-e-- 1=10e5
-----l!r-- 1=1 Oe6
-----9----- 1=10e7
Y = pow(X,-6.08) • 0 .0478
12
Y = pow(X,-2.627) • 0 .683e-3
Y = pow(X, 16.32) • 5.642E-010
cr
16
20
Fig. 4.13. Frequency spectrum evolution for the initial value (4.12)- (4.14) and
"( = 3.3, n = 2 at different time moments
D
1.6
1.2
0.8
0.4
0.5
0
0
1.5
2
1=0
t=10e3
t=10e4
t=10e5
t= 10e6
t=10e7
2. 5
a'q,.,_, 3
Fig. 4.14. Parameter D for the initial value (4.12)- (4 .14) and"(= 3.3, n = 2 at
different time moments
0.0001
1e-005
1e-006
4.1 Non-Linear Energy Transfer in Wind Wave Spectrum
113
5
0
\
\
8
1=0
~ 1=10e3
-a-- 1=1 0e4
-e-- 1=10e5
-----l!r-- 1=1 Oe6
-----9----- 1=10e7
Y = pow(X,-6.08) • 0 .0478
12
Y = pow(X,-2.627) • 0 .683e-3
Y = pow(X, 16.32) • 5.642E-010
cr
16
20
Fig. 4.13. Frequency spectrum evolution for the initial value (4.12)- (4.14) and
"( = 3.3, n = 2 at different time moments
D
1.6
1.2
0.8
0.4
0.5
0
0
1.5
2
1=0
t=10e3
t=10e4
t=10e5
t= 10e6
t=10e7
2. 5
a'q,.,_, 3
Fig. 4.14. Parameter D for the initial value (4.12)- (4 .14) and"(= 3.3, n = 2 at
different time moments
