Channel Depth in Non-propagated Wave values in Forbidden Region Solution

STEP 0: Pre-Calculation Summary
Formula Used
Time Averaged Water Depth = (((Velocity in Channel*cos(Angle b/w Horizontal Velocity and Horizontal Wave)/Non-propagated Wave Values of 'F'))^2)/[g]
dT = (((V*cos(θ)/F))^2)/[g]
This formula uses 1 Constants, 1 Functions, 4 Variables
Constants Used
[g] - Gravitational acceleration on Earth Value Taken As 9.80665
Functions Used
cos - Cosine of an angle is the ratio of the side adjacent to the angle to the hypotenuse of the triangle., cos(Angle)
Variables Used
Time Averaged Water Depth - (Measured in Meter) - Time Averaged Water Depth is the depth of water during average time.
Velocity in Channel - (Measured in Meter per Second) - Velocity in Channel is the speed at which fluid flows, crucial for understanding and managing water or air movement.
Angle b/w Horizontal Velocity and Horizontal Wave - (Measured in Radian) - Angle b/w Horizontal Velocity and Horizontal Wave is the angle subtended and depends on non-propagated wave values of 'F', channel depth and velocity in channel.
Non-propagated Wave Values of 'F' - Non-propagated Wave Values of 'F' represent instances where information doesn't spread, indicating localized effects or boundary conditions in physics.
STEP 1: Convert Input(s) to Base Unit
Velocity in Channel: 4 Meter per Second --> 4 Meter per Second No Conversion Required
Angle b/w Horizontal Velocity and Horizontal Wave: 3.76 Degree --> 0.0656243798749745 Radian (Check conversion here)
Non-propagated Wave Values of 'F': 0.57 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
dT = (((V*cos(θ)/F))^2)/[g] --> (((4*cos(0.0656243798749745)/0.57))^2)/[g]
Evaluating ... ...
dT = 5.00009132718051
STEP 3: Convert Result to Output's Unit
5.00009132718051 Meter --> No Conversion Required
FINAL ANSWER
5.00009132718051 5.000091 Meter <-- Time Averaged Water Depth
(Calculation completed in 00.004 seconds)

Credits

Created by Mithila Muthamma PA
Coorg Institute of Technology (CIT), Coorg
Mithila Muthamma PA has created this Calculator and 2000+ more calculators!
Verified by M Naveen
National Institute of Technology (NIT), Warangal
M Naveen has verified this Calculator and 900+ more calculators!

10+ Wave-Current Interaction Calculators

Channel Velocity in Non-propagated Wave Values in Forbidden Region
Go Velocity in Channel = (Non-propagated Wave Values of 'F'*([g]*Time Averaged Water Depth)^0.5)/cos(Angle b/w Horizontal Velocity and Horizontal Wave)
Channel Depth in Non-propagated Wave values in Forbidden Region
Go Time Averaged Water Depth = (((Velocity in Channel*cos(Angle b/w Horizontal Velocity and Horizontal Wave)/Non-propagated Wave Values of 'F'))^2)/[g]
Non-propagated Wave Values in Forbidden Region Boundary Line
Go Non-propagated Wave Values of 'F' = (Velocity in Channel*cos(Angle b/w Horizontal Velocity and Horizontal Wave))/([g]*Time Averaged Water Depth)^0.5
Angle Wave Orthogonal makes with Current in Non-propagated Wave Values on Forbidden Region
Go Angle b/w Horizontal Velocity and Horizontal Wave = acos(Non-propagated Wave Values of 'F'*([g]*Time Averaged Water Depth)^0.5/Velocity in Channel)
Channel Depth in Non-propagated Wave Values
Go Time Averaged Water Depth = [g]*((Non-propagated Wave Values*Wave Period)/(2*pi))^(1/0.5)
Non-propagated Wave Values in Forbidden Region of Boundary Line
Go Non-propagated Wave Values = ((2*pi)/Wave Period)*(Time Averaged Water Depth/[g])^0.5
Wave Period in Non-propagated Wave Values
Go Wave Period = (2*pi*(Time Averaged Water Depth/[g])^(1/2))/Non-propagated Wave Values
Effect of Current on Wave Height
Go Wave Height = Inlet Current Wave Height Factor*Wave Height Entering Inlet
Inlet Current Wave Height Factor
Go Inlet Current Wave Height Factor = Wave Height/Wave Height Entering Inlet
Wave Height Entering Inlet
Go Wave Height Entering Inlet = Wave Height/Inlet Current Wave Height Factor

Channel Depth in Non-propagated Wave values in Forbidden Region Formula

Time Averaged Water Depth = (((Velocity in Channel*cos(Angle b/w Horizontal Velocity and Horizontal Wave)/Non-propagated Wave Values of 'F'))^2)/[g]
dT = (((V*cos(θ)/F))^2)/[g]

What are the factors affecting Wave Height?

Wave Height is affected by wind speed, wind duration (or how long the wind blows), and fetch, which is the distance over water that the wind blows in a single direction. If wind speed is slow, only small waves result, regardless of wind duration or fetch.

What is waves and currents?

Waves are created by the wind and then radiate in all directions away from the disturbance. Currents represent the movement of water particles which is controlled by winds and density differences. Waves and currents can travel in opposite directions.

How to Calculate Channel Depth in Non-propagated Wave values in Forbidden Region?

Channel Depth in Non-propagated Wave values in Forbidden Region calculator uses Time Averaged Water Depth = (((Velocity in Channel*cos(Angle b/w Horizontal Velocity and Horizontal Wave)/Non-propagated Wave Values of 'F'))^2)/[g] to calculate the Time Averaged Water Depth, The Channel Depth in Non-propagated Wave values in Forbidden Region is defined as the vertical distance of the lowest point of a channel section from the free surface of water and influences the wave height factor. Time Averaged Water Depth is denoted by dT symbol.

How to calculate Channel Depth in Non-propagated Wave values in Forbidden Region using this online calculator? To use this online calculator for Channel Depth in Non-propagated Wave values in Forbidden Region, enter Velocity in Channel (V), Angle b/w Horizontal Velocity and Horizontal Wave (θ) & Non-propagated Wave Values of 'F' (F) and hit the calculate button. Here is how the Channel Depth in Non-propagated Wave values in Forbidden Region calculation can be explained with given input values -> 5.000091 = (((4*cos(0.0656243798749745)/0.57))^2)/[g].

FAQ

What is Channel Depth in Non-propagated Wave values in Forbidden Region?
The Channel Depth in Non-propagated Wave values in Forbidden Region is defined as the vertical distance of the lowest point of a channel section from the free surface of water and influences the wave height factor and is represented as dT = (((V*cos(θ)/F))^2)/[g] or Time Averaged Water Depth = (((Velocity in Channel*cos(Angle b/w Horizontal Velocity and Horizontal Wave)/Non-propagated Wave Values of 'F'))^2)/[g]. Velocity in Channel is the speed at which fluid flows, crucial for understanding and managing water or air movement, Angle b/w Horizontal Velocity and Horizontal Wave is the angle subtended and depends on non-propagated wave values of 'F', channel depth and velocity in channel & Non-propagated Wave Values of 'F' represent instances where information doesn't spread, indicating localized effects or boundary conditions in physics.
How to calculate Channel Depth in Non-propagated Wave values in Forbidden Region?
The Channel Depth in Non-propagated Wave values in Forbidden Region is defined as the vertical distance of the lowest point of a channel section from the free surface of water and influences the wave height factor is calculated using Time Averaged Water Depth = (((Velocity in Channel*cos(Angle b/w Horizontal Velocity and Horizontal Wave)/Non-propagated Wave Values of 'F'))^2)/[g]. To calculate Channel Depth in Non-propagated Wave values in Forbidden Region, you need Velocity in Channel (V), Angle b/w Horizontal Velocity and Horizontal Wave (θ) & Non-propagated Wave Values of 'F' (F). With our tool, you need to enter the respective value for Velocity in Channel, Angle b/w Horizontal Velocity and Horizontal Wave & Non-propagated Wave Values of 'F' 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 Time Averaged Water Depth?
In this formula, Time Averaged Water Depth uses Velocity in Channel, Angle b/w Horizontal Velocity and Horizontal Wave & Non-propagated Wave Values of 'F'. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Time Averaged Water Depth = [g]*((Non-propagated Wave Values*Wave Period)/(2*pi))^(1/0.5)
Let Others Know
Facebook
Twitter
Reddit
LinkedIn
Email
WhatsApp
Copied!