Dimensionless Coefficient in Seelig Equation for Wave Transmission Coefficient Solution

STEP 0: Pre-Calculation Summary
Formula Used
Dimensionless Coefficient in the Seelig Equation = Wave Transmission Coefficient/(1-(Freeboard/Wave Runup))
C = Ct/(1-(F/R))
This formula uses 4 Variables
Variables Used
Dimensionless Coefficient in the Seelig Equation - Dimensionless Coefficient in the Seelig Equation is a parameter used to quantify the wave transmission through a structure, integrating factors like wave height, and material properties.
Wave Transmission Coefficient - Wave Transmission Coefficient is a dimensionless ratio that quantifies the amount of wave energy transmitted through a structure compared to the incident wave energy.
Freeboard - (Measured in Meter) - Freeboard is the height of the watertight portion of a building or other construction above a given level of water in a river, lake, etc.
Wave Runup - (Measured in Meter) - Wave Runup is the maximum onshore elevation reached by waves, relative to the shoreline position in the absence of waves.
STEP 1: Convert Input(s) to Base Unit
Wave Transmission Coefficient: 0.2775 --> No Conversion Required
Freeboard: 5 Meter --> 5 Meter No Conversion Required
Wave Runup: 20 Meter --> 20 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
C = Ct/(1-(F/R)) --> 0.2775/(1-(5/20))
Evaluating ... ...
C = 0.37
STEP 3: Convert Result to Output's Unit
0.37 --> No Conversion Required
FINAL ANSWER
0.37 <-- Dimensionless Coefficient in the Seelig Equation
(Calculation completed in 00.020 seconds)

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Wave Transmission Coefficient and Water Surface Amplitude Calculators

Dimensionless Coefficient in Seelig Equation for Wave Transmission Coefficient
​ LaTeX ​ Go Dimensionless Coefficient in the Seelig Equation = Wave Transmission Coefficient/(1-(Freeboard/Wave Runup))
Wave Runup above Mean Water Level for given Wave Transmission Coefficient
​ LaTeX ​ Go Wave Runup = Freeboard/(1-(Wave Transmission Coefficient/Dimensionless Coefficient in the Seelig Equation))
Freeboard for given Wave Transmission Coefficient
​ LaTeX ​ Go Freeboard = Wave Runup*(1-(Wave Transmission Coefficient/Dimensionless Coefficient in the Seelig Equation))
Wave Transmission Coefficient
​ LaTeX ​ Go Wave Transmission Coefficient = Dimensionless Coefficient in the Seelig Equation*(1-(Freeboard/Wave Runup))

Dimensionless Coefficient in Seelig Equation for Wave Transmission Coefficient Formula

​LaTeX ​Go
Dimensionless Coefficient in the Seelig Equation = Wave Transmission Coefficient/(1-(Freeboard/Wave Runup))
C = Ct/(1-(F/R))

What is Wave Run-up?

Wave run-up is the maximum onshore elevation reached by waves, relative to the shoreline position in the absence of waves.

What is Freeboard?

Freeboard is the height of the watertight portion of a building or other construction above a given level of water in a river, lake, etc.

How to Calculate Dimensionless Coefficient in Seelig Equation for Wave Transmission Coefficient?

Dimensionless Coefficient in Seelig Equation for Wave Transmission Coefficient calculator uses Dimensionless Coefficient in the Seelig Equation = Wave Transmission Coefficient/(1-(Freeboard/Wave Runup)) to calculate the Dimensionless Coefficient in the Seelig Equation, The Dimensionless coefficient in Seelig Equation for Wave Transmission Coefficient formula is defined as the effectiveness of a structure in transmitting wave energy, considering factors like wave height, structure geometry, and material properties. Dimensionless Coefficient in the Seelig Equation is denoted by C symbol.

How to calculate Dimensionless Coefficient in Seelig Equation for Wave Transmission Coefficient using this online calculator? To use this online calculator for Dimensionless Coefficient in Seelig Equation for Wave Transmission Coefficient, enter Wave Transmission Coefficient (Ct), Freeboard (F) & Wave Runup (R) and hit the calculate button. Here is how the Dimensionless Coefficient in Seelig Equation for Wave Transmission Coefficient calculation can be explained with given input values -> 0.37 = 0.2775/(1-(5/20)).

FAQ

What is Dimensionless Coefficient in Seelig Equation for Wave Transmission Coefficient?
The Dimensionless coefficient in Seelig Equation for Wave Transmission Coefficient formula is defined as the effectiveness of a structure in transmitting wave energy, considering factors like wave height, structure geometry, and material properties and is represented as C = Ct/(1-(F/R)) or Dimensionless Coefficient in the Seelig Equation = Wave Transmission Coefficient/(1-(Freeboard/Wave Runup)). Wave Transmission Coefficient is a dimensionless ratio that quantifies the amount of wave energy transmitted through a structure compared to the incident wave energy, Freeboard is the height of the watertight portion of a building or other construction above a given level of water in a river, lake, etc & Wave Runup is the maximum onshore elevation reached by waves, relative to the shoreline position in the absence of waves.
How to calculate Dimensionless Coefficient in Seelig Equation for Wave Transmission Coefficient?
The Dimensionless coefficient in Seelig Equation for Wave Transmission Coefficient formula is defined as the effectiveness of a structure in transmitting wave energy, considering factors like wave height, structure geometry, and material properties is calculated using Dimensionless Coefficient in the Seelig Equation = Wave Transmission Coefficient/(1-(Freeboard/Wave Runup)). To calculate Dimensionless Coefficient in Seelig Equation for Wave Transmission Coefficient, you need Wave Transmission Coefficient (Ct), Freeboard (F) & Wave Runup (R). With our tool, you need to enter the respective value for Wave Transmission Coefficient, Freeboard & Wave Runup and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Dimensionless Coefficient in the Seelig Equation?
In this formula, Dimensionless Coefficient in the Seelig Equation uses Wave Transmission Coefficient, Freeboard & Wave Runup. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Dimensionless Coefficient in the Seelig Equation = 0.51-((0.11*Structure Crest Width)/Structure Crest Elevation)
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