Calculate: a) The related wave heights H for each period. b) The related wave lengths. c) The related wave energy and wave energy flux (power).

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A pressure sensor was place on the sea floor in 20m water depth to measure the waves in
the Bass Straight. Following the processing of the data using FFT, the different pressure
amplitudes,
a, = 198.02, 3160.29, 6780.49 and 2445.30 Pa
%3D
for the related periods,
T = 5, 10, 20 and 40s
were found.
Calculate:
a) The related wave heights H for each period.
b) The related wave lengths.
c) The related wave energy and wave energy flux (power).
d) The total maximum horizontal velocity at 5m water depth which may occur.
e) Plot the free surface elevation between T=0-80s.
Transcribed Image Text:A pressure sensor was place on the sea floor in 20m water depth to measure the waves in the Bass Straight. Following the processing of the data using FFT, the different pressure amplitudes, a, = 198.02, 3160.29, 6780.49 and 2445.30 Pa %3D for the related periods, T = 5, 10, 20 and 40s were found. Calculate: a) The related wave heights H for each period. b) The related wave lengths. c) The related wave energy and wave energy flux (power). d) The total maximum horizontal velocity at 5m water depth which may occur. e) Plot the free surface elevation between T=0-80s.
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