Ratio of Discharge due to Spherical Flow to Discharge due to Radial Flow with Base 10 Solution

STEP 0: Pre-Calculation Summary
Formula Used
Ratio of Discharge = 2.3*(Radius of Well/Aquifer Thickness)*log((Radius of Influence/Radius of Well),10)
QsQratio = 2.3*(r/b)*log((R/r),10)
This formula uses 1 Functions, 4 Variables
Functions Used
log - Logarithmic function is an inverse function to exponentiation., log(Base, Number)
Variables Used
Ratio of Discharge - Ratio of discharge refers to the ratio of discharge due to spherical flow to discharge due to radial flow.
Radius of Well - (Measured in Meter) - The radius of well refers to the horizontal distance from the center of the well to its inner wall, essentially the well’s radius.
Aquifer Thickness - (Measured in Meter) - Aquifer Thickness (at Midpoint between Equipotential lines) or otherwise is the thickness of aquifer in which the pore spaces of rock forming the aquifer may or may not be with water.
Radius of Influence - (Measured in Meter) - The radius of influence is the distance from a pumping well to the point where the drawdown, or lowering of the water table, becomes negligible.
STEP 1: Convert Input(s) to Base Unit
Radius of Well: 2.94 Meter --> 2.94 Meter No Conversion Required
Aquifer Thickness: 15 Meter --> 15 Meter No Conversion Required
Radius of Influence: 100 Meter --> 100 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
QsQratio = 2.3*(r/b)*log((R/r),10) --> 2.3*(2.94/15)*log((100/2.94),10)
Evaluating ... ...
QsQratio = 0.294322602605007
STEP 3: Convert Result to Output's Unit
0.294322602605007 --> No Conversion Required
FINAL ANSWER
0.294322602605007 0.294323 <-- Ratio of Discharge
(Calculation completed in 00.004 seconds)

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Spherical Flow in a Well Calculators

Coefficient of Permeability given Discharge due to Spherical Flow in Well
​ LaTeX ​ Go Coefficient of Permeability = Discharge by Spherical Flow/(2*pi*Radius of Well*(Initial Piezometric Surface-Depth of Water))
Thickness of Aquifer given Discharge due to Spherical Flow in Well
​ LaTeX ​ Go Initial Piezometric Surface = Depth of Water+(Discharge by Spherical Flow/(2*pi*Coefficient of Permeability*Radius of Well))
Radius of Well given Discharge due to Spherical Flow in Well
​ LaTeX ​ Go Radius of Well = Discharge by Spherical Flow/(2*pi*Coefficient of Permeability*(Initial Piezometric Surface-Depth of Water))
Discharge due to Spherical Flow in Well
​ LaTeX ​ Go Discharge by Spherical Flow = 2*pi*Coefficient of Permeability*Radius of Well*(Initial Piezometric Surface-Depth of Water)

Ratio of Discharge due to Spherical Flow to Discharge due to Radial Flow with Base 10 Formula

​LaTeX ​Go
Ratio of Discharge = 2.3*(Radius of Well/Aquifer Thickness)*log((Radius of Influence/Radius of Well),10)
QsQratio = 2.3*(r/b)*log((R/r),10)

What is Discharge?

The amount of fluid passing a section of a stream in unit time is called the discharge. If v is the mean velocity and A is the cross sectional area, the discharge Q is defined by Q = Av which is known as volume flow rate.

How to Calculate Ratio of Discharge due to Spherical Flow to Discharge due to Radial Flow with Base 10?

Ratio of Discharge due to Spherical Flow to Discharge due to Radial Flow with Base 10 calculator uses Ratio of Discharge = 2.3*(Radius of Well/Aquifer Thickness)*log((Radius of Influence/Radius of Well),10) to calculate the Ratio of Discharge, Ratio of Discharge due to Spherical Flow to Discharge due to Radial Flow with Base 10 formula is defined as a dimensionless quantity that compares the discharge rates of spherical and radial flows in a well, providing insights into the flow patterns and hydraulic properties of the aquifer. Ratio of Discharge is denoted by QsQratio symbol.

How to calculate Ratio of Discharge due to Spherical Flow to Discharge due to Radial Flow with Base 10 using this online calculator? To use this online calculator for Ratio of Discharge due to Spherical Flow to Discharge due to Radial Flow with Base 10, enter Radius of Well (r), Aquifer Thickness (b) & Radius of Influence (R) and hit the calculate button. Here is how the Ratio of Discharge due to Spherical Flow to Discharge due to Radial Flow with Base 10 calculation can be explained with given input values -> 0.294323 = 2.3*(2.94/15)*log((100/2.94),10).

FAQ

What is Ratio of Discharge due to Spherical Flow to Discharge due to Radial Flow with Base 10?
Ratio of Discharge due to Spherical Flow to Discharge due to Radial Flow with Base 10 formula is defined as a dimensionless quantity that compares the discharge rates of spherical and radial flows in a well, providing insights into the flow patterns and hydraulic properties of the aquifer and is represented as QsQratio = 2.3*(r/b)*log((R/r),10) or Ratio of Discharge = 2.3*(Radius of Well/Aquifer Thickness)*log((Radius of Influence/Radius of Well),10). The radius of well refers to the horizontal distance from the center of the well to its inner wall, essentially the well’s radius, Aquifer Thickness (at Midpoint between Equipotential lines) or otherwise is the thickness of aquifer in which the pore spaces of rock forming the aquifer may or may not be with water & The radius of influence is the distance from a pumping well to the point where the drawdown, or lowering of the water table, becomes negligible.
How to calculate Ratio of Discharge due to Spherical Flow to Discharge due to Radial Flow with Base 10?
Ratio of Discharge due to Spherical Flow to Discharge due to Radial Flow with Base 10 formula is defined as a dimensionless quantity that compares the discharge rates of spherical and radial flows in a well, providing insights into the flow patterns and hydraulic properties of the aquifer is calculated using Ratio of Discharge = 2.3*(Radius of Well/Aquifer Thickness)*log((Radius of Influence/Radius of Well),10). To calculate Ratio of Discharge due to Spherical Flow to Discharge due to Radial Flow with Base 10, you need Radius of Well (r), Aquifer Thickness (b) & Radius of Influence (R). With our tool, you need to enter the respective value for Radius of Well, Aquifer Thickness & Radius of Influence 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 Ratio of Discharge?
In this formula, Ratio of Discharge uses Radius of Well, Aquifer Thickness & Radius of Influence. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Ratio of Discharge = (Radius of Well/Aquifer Thickness)*log((Radius of Influence/Radius of Well),e)
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