Wave Energy for Power per unit Crest Length Solution

STEP 0: Pre-Calculation Summary
Formula Used
Wave Energy Per Unit Surface Area = Power Per Unit Crest Length/Wave Group Speed in Coastal Eng.
E = P/CG
This formula uses 3 Variables
Variables Used
Wave Energy Per Unit Surface Area - (Measured in Joule per Square Meter) - Wave Energy Per Unit Surface Area referred to as wave energy density, measures the amount of energy carried by ocean waves over a specific area.
Power Per Unit Crest Length - (Measured in Watt) - Power Per Unit Crest Length refers to the amount of wave energy that impacts a given length of a coastal structure's crest. Understanding it, is crucial for designing and evaluating coastal defenses.
Wave Group Speed in Coastal Eng. - (Measured in Meter per Second) - Wave Group Speed in Coastal Eng. is the velocity at which the envelope of a wave group or wave packet travels. It is distinct from the phase speed.
STEP 1: Convert Input(s) to Base Unit
Power Per Unit Crest Length: 100 Watt --> 100 Watt No Conversion Required
Wave Group Speed in Coastal Eng.: 5 Meter per Second --> 5 Meter per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
E = P/CG --> 100/5
Evaluating ... ...
E = 20
STEP 3: Convert Result to Output's Unit
20 Joule per Square Meter --> No Conversion Required
FINAL ANSWER
20 Joule per Square Meter <-- Wave Energy Per Unit Surface Area
(Calculation completed in 00.004 seconds)

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Created by Mithila Muthamma PA
Coorg Institute of Technology (CIT), Coorg
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9 Wave Power Calculators

Wave Phase Velocity
​ Go Wave Phase Velocity = sqrt(([g]/Wave Number for Water Wave)*tanh(Wave Number for Water Wave*Water Depth of Coast))
Wave Celerity given Power per unit Crest Length
​ Go Celerity of the Wave = Power Per Unit Crest Length/(Wave Energy Per Unit Surface Area*Ratio of Group Velocity to Phase Velocity)
Power per unit Crest Length given Ratio of Group Velocity to Phase Velocity
​ Go Power Per Unit Crest Length = Wave Energy Per Unit Surface Area*Ratio of Group Velocity to Phase Velocity*Celerity of the Wave
Group Wave Celerity for Power per unit Crest Length
​ Go Wave Group Speed in Coastal Eng. = Power Per Unit Crest Length/Wave Energy Per Unit Surface Area
Wave Energy for Power per unit Crest Length
​ Go Wave Energy Per Unit Surface Area = Power Per Unit Crest Length/Wave Group Speed in Coastal Eng.
Power per unit Crest Length
​ Go Power Per Unit Crest Length = Wave Energy Per Unit Surface Area*Wave Group Speed in Coastal Eng.
Wave Phase Velocity for Wavelength and Wave Period
​ Go Wave Phase Velocity = Wavelength/Mean Wave Period
Wavelength given Certain Wave Phase Velocity
​ Go Wavelength = Wave Phase Velocity*Mean Wave Period
Wave Period for Certain Wave Phase Velocity
​ Go Mean Wave Period = Wavelength/Wave Phase Velocity

Wave Energy for Power per unit Crest Length Formula

Wave Energy Per Unit Surface Area = Power Per Unit Crest Length/Wave Group Speed in Coastal Eng.
E = P/CG

What is Salinity?

Salinity is the saltiness or amount of salt dissolved in a body of water, called saline water. It is a strong contributor to conductivity and helps determine many aspects of the chemistry of natural waters and the biological processes within them. Salinity, along with temperature and pressure, helps govern physical characteristics of water such as density and heat capacity.

How to Calculate Wave Energy for Power per unit Crest Length?

Wave Energy for Power per unit Crest Length calculator uses Wave Energy Per Unit Surface Area = Power Per Unit Crest Length/Wave Group Speed in Coastal Eng. to calculate the Wave Energy Per Unit Surface Area, The Wave Energy for Power per unit Crest Length Formula is defined as the amount of energy that can be harnessed from ocean waves along a specific length of coastline or structure crest. In coastal engineering, this metric is crucial for assessing the potential of wave energy conversion systems to generate renewable electricity. Wave Energy Per Unit Surface Area is denoted by E symbol.

How to calculate Wave Energy for Power per unit Crest Length using this online calculator? To use this online calculator for Wave Energy for Power per unit Crest Length, enter Power Per Unit Crest Length (P) & Wave Group Speed in Coastal Eng. (CG) and hit the calculate button. Here is how the Wave Energy for Power per unit Crest Length calculation can be explained with given input values -> 10 = 100/5.

FAQ

What is Wave Energy for Power per unit Crest Length?
The Wave Energy for Power per unit Crest Length Formula is defined as the amount of energy that can be harnessed from ocean waves along a specific length of coastline or structure crest. In coastal engineering, this metric is crucial for assessing the potential of wave energy conversion systems to generate renewable electricity and is represented as E = P/CG or Wave Energy Per Unit Surface Area = Power Per Unit Crest Length/Wave Group Speed in Coastal Eng.. Power Per Unit Crest Length refers to the amount of wave energy that impacts a given length of a coastal structure's crest. Understanding it, is crucial for designing and evaluating coastal defenses & Wave Group Speed in Coastal Eng. is the velocity at which the envelope of a wave group or wave packet travels. It is distinct from the phase speed.
How to calculate Wave Energy for Power per unit Crest Length?
The Wave Energy for Power per unit Crest Length Formula is defined as the amount of energy that can be harnessed from ocean waves along a specific length of coastline or structure crest. In coastal engineering, this metric is crucial for assessing the potential of wave energy conversion systems to generate renewable electricity is calculated using Wave Energy Per Unit Surface Area = Power Per Unit Crest Length/Wave Group Speed in Coastal Eng.. To calculate Wave Energy for Power per unit Crest Length, you need Power Per Unit Crest Length (P) & Wave Group Speed in Coastal Eng. (CG). With our tool, you need to enter the respective value for Power Per Unit Crest Length & Wave Group Speed in Coastal Eng 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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