Diameter of Particle given Maximum Critical Scour Velocity Solution

STEP 0: Pre-Calculation Summary
Formula Used
Diameter of Particle(Max Critical Scour Velocity) = (Maximum Critical Scour Velocity/(4.5*sqrt(Acceleration due to Gravity*(Specific Gravity of Particle-1))))^2
D = (vmaxs/(4.5*sqrt(g*(G-1))))^2
This formula uses 1 Functions, 4 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
Diameter of Particle(Max Critical Scour Velocity) - (Measured in Meter) - Diameter of Particle(Max Critical Scour Velocity) is the size of sediment particles that can be moved or eroded by a fluid flow at its maximum critical scour velocity.
Maximum Critical Scour Velocity - (Measured in Meter per Second) - Maximum Critical Scour Velocity is the maximum settling velocity.
Acceleration due to Gravity - (Measured in Meter per Square Second) - Acceleration due to Gravity is a fundamental physical constant that represents the acceleration of an object due to the force of gravity exerted by the Earth.
Specific Gravity of Particle - Specific Gravity of Particle is the ratio of density of particle to density of standard material.
STEP 1: Convert Input(s) to Base Unit
Maximum Critical Scour Velocity: 49.97 Meter per Second --> 49.97 Meter per Second No Conversion Required
Acceleration due to Gravity: 9.8 Meter per Square Second --> 9.8 Meter per Square Second No Conversion Required
Specific Gravity of Particle: 15.99 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
D = (vmaxs/(4.5*sqrt(g*(G-1))))^2 --> (49.97/(4.5*sqrt(9.8*(15.99-1))))^2
Evaluating ... ...
D = 0.83939419762667
STEP 3: Convert Result to Output's Unit
0.83939419762667 Meter --> No Conversion Required
FINAL ANSWER
0.83939419762667 0.839394 Meter <-- Diameter of Particle(Max Critical Scour Velocity)
(Calculation completed in 00.020 seconds)

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Birsa Institute of Technology (BIT), Sindri
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Modified Shield's Formula Calculators

Diameter of Particle given Minimum Critical Scour Velocity
​ LaTeX ​ Go Diameter of Particle(Min Critical Scour Velocity) = (Minimum Critical Scour Velocity/(3*sqrt(Acceleration due to Gravity*(Specific Gravity of Particle-1))))^2
Specific Gravity given Minimum Critical Scour Velocity
​ LaTeX ​ Go Specific Gravity of Particle = ((Minimum Critical Scour Velocity/(3*sqrt(Acceleration due to Gravity*Diameter of Particle(Min Critical Scour Velocity))))^2)+1
Maximum Critical Scour Velocity
​ LaTeX ​ Go Maximum Critical Scour Velocity = (4.5*sqrt(Acceleration due to Gravity*Diameter of Particle(Max Critical Scour Velocity)*(Specific Gravity of Particle-1)))
Minimum Critical Scour Velocity
​ LaTeX ​ Go Minimum Critical Scour Velocity = (3*sqrt(Acceleration due to Gravity*Diameter of Particle(Min Critical Scour Velocity)*(Specific Gravity of Particle-1)))

Diameter of Particle given Maximum Critical Scour Velocity Formula

​LaTeX ​Go
Diameter of Particle(Max Critical Scour Velocity) = (Maximum Critical Scour Velocity/(4.5*sqrt(Acceleration due to Gravity*(Specific Gravity of Particle-1))))^2
D = (vmaxs/(4.5*sqrt(g*(G-1))))^2

What is Specific Gravity?

Relative density, or specific gravity, is the ratio of the density of a substance to the density of a given reference material. Specific gravity for liquids is nearly always measured with respect to water at its densest; for gases, the reference is air at room temperature.

How to Calculate Diameter of Particle given Maximum Critical Scour Velocity?

Diameter of Particle given Maximum Critical Scour Velocity calculator uses Diameter of Particle(Max Critical Scour Velocity) = (Maximum Critical Scour Velocity/(4.5*sqrt(Acceleration due to Gravity*(Specific Gravity of Particle-1))))^2 to calculate the Diameter of Particle(Max Critical Scour Velocity), The Diameter of Particle given Maximum Critical Scour Velocity formula is defined as the measure of the value of the size of sediment particles that can be moved or eroded by a fluid flow at its maximum critical scour velocity. The critical scour velocity is the flow speed at which particles begin to be dislodged and transported by the fluid. Diameter of Particle(Max Critical Scour Velocity) is denoted by D symbol.

How to calculate Diameter of Particle given Maximum Critical Scour Velocity using this online calculator? To use this online calculator for Diameter of Particle given Maximum Critical Scour Velocity, enter Maximum Critical Scour Velocity (vmaxs), Acceleration due to Gravity (g) & Specific Gravity of Particle (G) and hit the calculate button. Here is how the Diameter of Particle given Maximum Critical Scour Velocity calculation can be explained with given input values -> 0.838835 = (49.97/(4.5*sqrt(9.8*(15.99-1))))^2.

FAQ

What is Diameter of Particle given Maximum Critical Scour Velocity?
The Diameter of Particle given Maximum Critical Scour Velocity formula is defined as the measure of the value of the size of sediment particles that can be moved or eroded by a fluid flow at its maximum critical scour velocity. The critical scour velocity is the flow speed at which particles begin to be dislodged and transported by the fluid and is represented as D = (vmaxs/(4.5*sqrt(g*(G-1))))^2 or Diameter of Particle(Max Critical Scour Velocity) = (Maximum Critical Scour Velocity/(4.5*sqrt(Acceleration due to Gravity*(Specific Gravity of Particle-1))))^2. Maximum Critical Scour Velocity is the maximum settling velocity, Acceleration due to Gravity is a fundamental physical constant that represents the acceleration of an object due to the force of gravity exerted by the Earth & Specific Gravity of Particle is the ratio of density of particle to density of standard material.
How to calculate Diameter of Particle given Maximum Critical Scour Velocity?
The Diameter of Particle given Maximum Critical Scour Velocity formula is defined as the measure of the value of the size of sediment particles that can be moved or eroded by a fluid flow at its maximum critical scour velocity. The critical scour velocity is the flow speed at which particles begin to be dislodged and transported by the fluid is calculated using Diameter of Particle(Max Critical Scour Velocity) = (Maximum Critical Scour Velocity/(4.5*sqrt(Acceleration due to Gravity*(Specific Gravity of Particle-1))))^2. To calculate Diameter of Particle given Maximum Critical Scour Velocity, you need Maximum Critical Scour Velocity (vmaxs), Acceleration due to Gravity (g) & Specific Gravity of Particle (G). With our tool, you need to enter the respective value for Maximum Critical Scour Velocity, Acceleration due to Gravity & Specific Gravity of Particle 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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