Thrust given Intrados Stresses on Arch Dam Solution

STEP 0: Pre-Calculation Summary
Formula Used
Thrust of Abutments = Intrados Stresses*Base Thickness-6*Moment acting on Arch Dam/Base Thickness
F = S*Tb-6*Mt/Tb
This formula uses 4 Variables
Variables Used
Thrust of Abutments - (Measured in Newton) - Thrust of Abutments refers to the horizontal force exerted by an arch, vault, or similar structure against its supporting abutments.
Intrados Stresses - (Measured in Pascal) - Intrados Stresses is defined as the stresses on the inner wall of the Arch Dam.
Base Thickness - (Measured in Meter) - Base Thickness is the maximum thickness or width of a dam measured horizontally between upstream and downstream faces and normal to the axis or centerline crest of the dam.
Moment acting on Arch Dam - (Measured in Joule) - Moment acting on Arch Dam is an overturning effect (tends to bend or turn the member) created by the force(load) acting on a structural member.
STEP 1: Convert Input(s) to Base Unit
Intrados Stresses: 250 Newton per Square Meter --> 250 Pascal (Check conversion here)
Base Thickness: 1.3 Meter --> 1.3 Meter No Conversion Required
Moment acting on Arch Dam: 54.5 Newton Meter --> 54.5 Joule (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
F = S*Tb-6*Mt/Tb --> 250*1.3-6*54.5/1.3
Evaluating ... ...
F = 73.4615384615385
STEP 3: Convert Result to Output's Unit
73.4615384615385 Newton --> No Conversion Required
FINAL ANSWER
73.4615384615385 73.46154 Newton <-- Thrust of Abutments
(Calculation completed in 00.004 seconds)

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National Institute of Technology Karnataka (NITK), Surathkal
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6 Thrust on Arch Dam Calculators

Thrust at Crown of Arch Dam given Moment at Abutments
Go Thrust of Abutments = Moment acting on Arch Dam/(Radius to Center Line of Arch*(sin(Theta)/(Theta-(cos(Theta)))))+Normal Radial Pressure*Radius to Center Line of Arch
Thrust at Crown of Arch Dam
Go Thrust of Abutments = (Normal Radial Pressure*Radius to Center Line of Arch)*(1-(2*Theta*sin(Theta*((Base Thickness/Radius to Center Line of Arch)^2)/12)/Diameter))
Thrust at Abutments of Arch Dam
Go Thrust from Water = Radial Pressure*Radius to Center Line of Arch-(Radial Pressure*Radius to Center Line of Arch-Thrust of Abutments)*cos(Theta)
Thrust given Extrados Stresses on Arch Dam
Go Thrust of Abutments = Intrados Stresses*Base Thickness+6*Moment acting on Arch Dam/(Base Thickness^2)
Thrust given Intrados Stresses on Arch Dam
Go Thrust of Abutments = Intrados Stresses*Base Thickness-6*Moment acting on Arch Dam/Base Thickness
Thrust given Deflection due to Thrust on Arch Dam
Go Thrust of Abutments = Deflection due to Moments on Arch Dam*Elastic Modulus of Rock/Constant K2

Thrust given Intrados Stresses on Arch Dam Formula

Thrust of Abutments = Intrados Stresses*Base Thickness-6*Moment acting on Arch Dam/Base Thickness
F = S*Tb-6*Mt/Tb

What is an Arch Dam ?

An arch dam is a concrete dam that is curved upstream in plan. The arch dam is designed so that the force of the water against it, known as hydrostatic pressure, presses against the arch, causing the arch to straighten slightly and strengthening the structure as it pushes into its foundation or abutments.

How to Calculate Thrust given Intrados Stresses on Arch Dam?

Thrust given Intrados Stresses on Arch Dam calculator uses Thrust of Abutments = Intrados Stresses*Base Thickness-6*Moment acting on Arch Dam/Base Thickness to calculate the Thrust of Abutments, Thrust given Intrados Stresses on Arch Dam is defined as pressure exerted on inner wall of dam. Thrust of Abutments is denoted by F symbol.

How to calculate Thrust given Intrados Stresses on Arch Dam using this online calculator? To use this online calculator for Thrust given Intrados Stresses on Arch Dam, enter Intrados Stresses (S), Base Thickness (Tb) & Moment acting on Arch Dam (Mt) and hit the calculate button. Here is how the Thrust given Intrados Stresses on Arch Dam calculation can be explained with given input values -> 73.46154 = 250*1.3-6*54.5/1.3.

FAQ

What is Thrust given Intrados Stresses on Arch Dam?
Thrust given Intrados Stresses on Arch Dam is defined as pressure exerted on inner wall of dam and is represented as F = S*Tb-6*Mt/Tb or Thrust of Abutments = Intrados Stresses*Base Thickness-6*Moment acting on Arch Dam/Base Thickness. Intrados Stresses is defined as the stresses on the inner wall of the Arch Dam, Base Thickness is the maximum thickness or width of a dam measured horizontally between upstream and downstream faces and normal to the axis or centerline crest of the dam & Moment acting on Arch Dam is an overturning effect (tends to bend or turn the member) created by the force(load) acting on a structural member.
How to calculate Thrust given Intrados Stresses on Arch Dam?
Thrust given Intrados Stresses on Arch Dam is defined as pressure exerted on inner wall of dam is calculated using Thrust of Abutments = Intrados Stresses*Base Thickness-6*Moment acting on Arch Dam/Base Thickness. To calculate Thrust given Intrados Stresses on Arch Dam, you need Intrados Stresses (S), Base Thickness (Tb) & Moment acting on Arch Dam (Mt). With our tool, you need to enter the respective value for Intrados Stresses, Base Thickness & Moment acting on Arch Dam 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 Thrust of Abutments?
In this formula, Thrust of Abutments uses Intrados Stresses, Base Thickness & Moment acting on Arch Dam. We can use 4 other way(s) to calculate the same, which is/are as follows -
  • Thrust of Abutments = (Normal Radial Pressure*Radius to Center Line of Arch)*(1-(2*Theta*sin(Theta*((Base Thickness/Radius to Center Line of Arch)^2)/12)/Diameter))
  • Thrust of Abutments = Moment acting on Arch Dam/(Radius to Center Line of Arch*(sin(Theta)/(Theta-(cos(Theta)))))+Normal Radial Pressure*Radius to Center Line of Arch
  • Thrust of Abutments = Intrados Stresses*Base Thickness+6*Moment acting on Arch Dam/(Base Thickness^2)
  • Thrust of Abutments = Deflection due to Moments on Arch Dam*Elastic Modulus of Rock/Constant K2
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