Coefficient for Wave Transmission by Flow over Structure Solution

STEP 0: Pre-Calculation Summary
Formula Used
Coefficient of Transmission Flow over Structure = sqrt(Wave Transmission Coefficient^2-Coefficient of Wave Transmission through Structure^2)
Ct0 = sqrt(Ct^2-Ctt^2)
This formula uses 1 Functions, 3 Variables
Functions Used
sqrt - A square root function is a function that takes a non-negative number as an input and returns the square root of the given input number., sqrt(Number)
Variables Used
Coefficient of Transmission Flow over Structure - Coefficient of Transmission Flow over Structure is a dimensionless factor representing the efficiency with which fluid passes over or through the structure, often used to characterize flow behavior.
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.
Coefficient of Wave Transmission through Structure - Coefficient of Wave Transmission through Structure is a dimensionless parameter that quantifies the proportion of wave energy transmitted past or through the structure.
STEP 1: Convert Input(s) to Base Unit
Wave Transmission Coefficient: 0.2775 --> No Conversion Required
Coefficient of Wave Transmission through Structure: 0.2334 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Ct0 = sqrt(Ct^2-Ctt^2) --> sqrt(0.2775^2-0.2334^2)
Evaluating ... ...
Ct0 = 0.150102265139471
STEP 3: Convert Result to Output's Unit
0.150102265139471 --> No Conversion Required
FINAL ANSWER
0.150102265139471 0.150102 <-- Coefficient of Transmission Flow over Structure
(Calculation completed in 00.004 seconds)

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14 Wave Transmission Coefficient and Water Surface Amplitude Calculators

Reflected Wave Period given Water Surface Amplitude
​ Go Reflected Wave Period = (2*pi*Time Elapsed)/(acos(Water Surface Amplitude/(Incident Wave Height*cos((2*pi*Horizontal Ordinate)/Incident Wave Length in Deepwater))))
Time Elapsed given Water Surface Amplitude
​ Go Time Elapsed = Reflected Wave Period*(acos(Water Surface Amplitude/(Incident Wave Height*cos((2*pi*Horizontal Ordinate)/Incident Wave Length in Deepwater))))/(2*pi)
Incident Wave Height given Water Surface Amplitude
​ Go Incident Wave Height = Water Surface Amplitude/(cos((2*pi*Horizontal Ordinate)/Incident Wave Length in Deepwater)*cos((2*pi*Time Elapsed)/Reflected Wave Period))
Water Surface Amplitude
​ Go Water Surface Amplitude = Incident Wave Height*cos((2*pi*Horizontal Ordinate)/Incident Wave Length in Deepwater)*cos((2*pi*Time Elapsed)/Reflected Wave Period)
Surf Similarity Number or Iribarren Number
​ Go Surf Similarity Number or Iribarren Number = tan(Angle Sloped Plane forms with the Horizontal)/sqrt(Incident Wave Height/Incident Wave Length in Deepwater)
Incident Wave Height given Surf Similarity Number or Iribarren Number
​ Go Incident Wave Height = Incident Wave Length in Deepwater*(tan(Angle Sloped Plane forms with the Horizontal)/Surf Similarity Number or Iribarren Number)^2
Coefficient for Wave Transmission through Structure given Combined Transmission Coefficient
​ Go Coefficient of Wave Transmission through Structure = sqrt(Wave Transmission Coefficient^2-Coefficient of Transmission Flow over Structure^2)
Coefficient for Wave Transmission by Flow over Structure
​ Go Coefficient of Transmission Flow over Structure = sqrt(Wave Transmission Coefficient^2-Coefficient of Wave Transmission through Structure^2)
Combined Wave Transmission Coefficient
​ Go Wave Transmission Coefficient = sqrt(Coefficient of Wave Transmission through Structure^2+Coefficient of Transmission Flow over Structure^2)
Dimensionless Coefficient in Seelig Equation for Wave Transmission Coefficient
​ 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
​ Go Wave Runup = Freeboard/(1-(Wave Transmission Coefficient/Dimensionless Coefficient in the Seelig Equation))
Freeboard for given Wave Transmission Coefficient
​ Go Freeboard = Wave Runup*(1-(Wave Transmission Coefficient/Dimensionless Coefficient in the Seelig Equation))
Wave Transmission Coefficient
​ Go Wave Transmission Coefficient = Dimensionless Coefficient in the Seelig Equation*(1-(Freeboard/Wave Runup))
Dimensionless Coefficient in Seelig Equation
​ Go Dimensionless Coefficient in the Seelig Equation = 0.51-((0.11*Structure Crest Width)/Structure Crest Elevation)

Coefficient for Wave Transmission by Flow over Structure Formula

Coefficient of Transmission Flow over Structure = sqrt(Wave Transmission Coefficient^2-Coefficient of Wave Transmission through Structure^2)
Ct0 = sqrt(Ct^2-Ctt^2)

What is the process of Dredging?

Dredging is the excavation of material from a water environment. Possible reasons for dredging include improving existing water features; reshaping land and water features to alter drainage.

How to Calculate Coefficient for Wave Transmission by Flow over Structure?

Coefficient for Wave Transmission by Flow over Structure calculator uses Coefficient of Transmission Flow over Structure = sqrt(Wave Transmission Coefficient^2-Coefficient of Wave Transmission through Structure^2) to calculate the Coefficient of Transmission Flow over Structure, The Coefficient for Wave Transmission by Flow over Structure is defined as a dimensionless parameter quantifying the efficiency of wave energy passing over the structure, considering factors such as flow velocity, structure geometry, and wave characteristics. Coefficient of Transmission Flow over Structure is denoted by Ct0 symbol.

How to calculate Coefficient for Wave Transmission by Flow over Structure using this online calculator? To use this online calculator for Coefficient for Wave Transmission by Flow over Structure, enter Wave Transmission Coefficient (Ct) & Coefficient of Wave Transmission through Structure (Ctt) and hit the calculate button. Here is how the Coefficient for Wave Transmission by Flow over Structure calculation can be explained with given input values -> 8.996973 = sqrt(0.2775^2-0.2334^2).

FAQ

What is Coefficient for Wave Transmission by Flow over Structure?
The Coefficient for Wave Transmission by Flow over Structure is defined as a dimensionless parameter quantifying the efficiency of wave energy passing over the structure, considering factors such as flow velocity, structure geometry, and wave characteristics and is represented as Ct0 = sqrt(Ct^2-Ctt^2) or Coefficient of Transmission Flow over Structure = sqrt(Wave Transmission Coefficient^2-Coefficient of Wave Transmission through Structure^2). Wave Transmission Coefficient is a dimensionless ratio that quantifies the amount of wave energy transmitted through a structure compared to the incident wave energy & Coefficient of Wave Transmission through Structure is a dimensionless parameter that quantifies the proportion of wave energy transmitted past or through the structure.
How to calculate Coefficient for Wave Transmission by Flow over Structure?
The Coefficient for Wave Transmission by Flow over Structure is defined as a dimensionless parameter quantifying the efficiency of wave energy passing over the structure, considering factors such as flow velocity, structure geometry, and wave characteristics is calculated using Coefficient of Transmission Flow over Structure = sqrt(Wave Transmission Coefficient^2-Coefficient of Wave Transmission through Structure^2). To calculate Coefficient for Wave Transmission by Flow over Structure, you need Wave Transmission Coefficient (Ct) & Coefficient of Wave Transmission through Structure (Ctt). With our tool, you need to enter the respective value for Wave Transmission Coefficient & Coefficient of Wave Transmission through Structure 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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