Zero-th Moment given Significant Wave Height Solution

STEP 0: Pre-Calculation Summary
Formula Used
Zero-th Moment of Wave Spectrum = (Significant Wave Height/4)^2
m0 = (Hs/4)^2
This formula uses 2 Variables
Variables Used
Zero-th Moment of Wave Spectrum - Zero-th Moment of Wave Spectrum in terms of cyclic frequency.
Significant Wave Height - (Measured in Meter) - Significant Wave Height is defined traditionally as the mean wave height of the highest third of the waves.
STEP 1: Convert Input(s) to Base Unit
Significant Wave Height: 65 Meter --> 65 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
m0 = (Hs/4)^2 --> (65/4)^2
Evaluating ... ...
m0 = 264.0625
STEP 3: Convert Result to Output's Unit
264.0625 --> No Conversion Required
FINAL ANSWER
264.0625 <-- Zero-th Moment of Wave Spectrum
(Calculation completed in 00.004 seconds)

Credits

Created by Mithila Muthamma PA
Coorg Institute of Technology (CIT), Coorg
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12 Zero-Crossing Method Calculators

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Go Probability = 1-(Number of Waves Higher than Design Wave Height/Wave Number)
Probability that Wave Height is greater than or equal to Design Wave Height
Go Probability = Number of Waves Higher than Design Wave Height/Wave Number
Significant Wave Height given Zero-th Moment
Go Significant Wave Height = 4*sqrt(Zero-th Moment of Wave Spectrum)
Number of Zero Up-Crossings given Zero-Crossing Period
Go Number of Zero-Upcrossings = Record Length/Zero-Crossing Period
Record Length given Zero-Crossing Period
Go Record Length = Zero-Crossing Period*Number of Zero-Upcrossings
Zero-Crossing Period
Go Zero-Crossing Period = Record Length/Number of Zero-Upcrossings
Number of Crests in Wave Record given Wave Crest Period
Go Number of Crests = Record Length/Wave Crest Period
Record Length given Wave Crest Period
Go Record Length = Wave Crest Period*Number of Crests
Wave Crest Period
Go Wave Crest Period = Record Length/Number of Crests
Zero-th Moment given Significant Wave Height
Go Zero-th Moment of Wave Spectrum = (Significant Wave Height/4)^2
Root Mean Square Surface Elevation given Significant Wave Height
Go RMS Surface Elevation = Significant Wave Height/4
Significant Wave Height given rms Surface Elevation
Go Significant Wave Height = 4*RMS Surface Elevation

Zero-th Moment given Significant Wave Height Formula

Zero-th Moment of Wave Spectrum = (Significant Wave Height/4)^2
m0 = (Hs/4)^2

What are the characteristics of progressive waves?

A progressive wave is formed due to continuous vibration of the particles of the medium.
The wave travels with a certain velocity.
There is a flow of energy in the direction of the wave.
No particles in the medium are at rest.
The amplitude of all the particles is the same.

How to Calculate Zero-th Moment given Significant Wave Height?

Zero-th Moment given Significant Wave Height calculator uses Zero-th Moment of Wave Spectrum = (Significant Wave Height/4)^2 to calculate the Zero-th Moment of Wave Spectrum, Zero-th Moment given Significant Wave Height is the total area under wave energy density spectrum that defines significant wave height. Zero-th Moment of Wave Spectrum is denoted by m0 symbol.

How to calculate Zero-th Moment given Significant Wave Height using this online calculator? To use this online calculator for Zero-th Moment given Significant Wave Height, enter Significant Wave Height (Hs) and hit the calculate button. Here is how the Zero-th Moment given Significant Wave Height calculation can be explained with given input values -> 264.0625 = (65/4)^2.

FAQ

What is Zero-th Moment given Significant Wave Height?
Zero-th Moment given Significant Wave Height is the total area under wave energy density spectrum that defines significant wave height and is represented as m0 = (Hs/4)^2 or Zero-th Moment of Wave Spectrum = (Significant Wave Height/4)^2. Significant Wave Height is defined traditionally as the mean wave height of the highest third of the waves.
How to calculate Zero-th Moment given Significant Wave Height?
Zero-th Moment given Significant Wave Height is the total area under wave energy density spectrum that defines significant wave height is calculated using Zero-th Moment of Wave Spectrum = (Significant Wave Height/4)^2. To calculate Zero-th Moment given Significant Wave Height, you need Significant Wave Height (Hs). With our tool, you need to enter the respective value for Significant Wave Height and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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