Storage Coefficient given Distance from Pumping Well Solution

STEP 0: Pre-Calculation Summary
Formula Used
Storage Coefficient (Well-Field Design) = (2.25*Transmissivity*Time)/(Distance from Pumping Well to Point Intersection^2)
S = (2.25*T*t)/(ro^2)
This formula uses 4 Variables
Variables Used
Storage Coefficient (Well-Field Design) - The Storage Coefficient (Well-Field Design) refers to the volume of water released from storage per unit decline in hydraulic head in the aquifer, per unit area of the aquifer.
Transmissivity - (Measured in Square Meter per Second) - Transmissivity is the rate at which groundwater flows horizontally through an aquifer or the degree to which a medium allows something, in particular electromagnetic radiation, to pass through it.
Time - (Measured in Hour) - The Time refers to as the ongoing and continuous sequence of events that occur in succession, from the past through the present to the future.
Distance from Pumping Well to Point Intersection - (Measured in Meter) - The Distance from Pumping Well to Point Intersection is referred as the straight line which intersects the zero-drawdown line.
STEP 1: Convert Input(s) to Base Unit
Transmissivity: 11 Square Meter per Second --> 11 Square Meter per Second No Conversion Required
Time: 4 Hour --> 4 Hour No Conversion Required
Distance from Pumping Well to Point Intersection: 4 Meter --> 4 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
S = (2.25*T*t)/(ro^2) --> (2.25*11*4)/(4^2)
Evaluating ... ...
S = 6.1875
STEP 3: Convert Result to Output's Unit
6.1875 --> No Conversion Required
FINAL ANSWER
6.1875 <-- Storage Coefficient (Well-Field Design)
(Calculation completed in 00.020 seconds)

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Well Field Design Calculators

Distance from Pumping Well
​ LaTeX ​ Go Distance from Pumping Well to Point Intersection = sqrt(2.25*Transmissivity*Time/Storage Coefficient (Well-Field Design))
Storage Coefficient given Distance from Pumping Well
​ LaTeX ​ Go Storage Coefficient (Well-Field Design) = (2.25*Transmissivity*Time)/(Distance from Pumping Well to Point Intersection^2)
Transmissivity given Distance from Pumping Well
​ LaTeX ​ Go Transmissivity = Distance from Pumping Well to Point Intersection^2*Storage Coefficient (Well-Field Design)/(2.25*Time)
First Estimate of Pumping Rate
​ LaTeX ​ Go First Estimate of the Pumping Rate = 2.7*Transmissivity*Drawdown Across One Log Cycle

Storage Coefficient given Distance from Pumping Well Formula

​LaTeX ​Go
Storage Coefficient (Well-Field Design) = (2.25*Transmissivity*Time)/(Distance from Pumping Well to Point Intersection^2)
S = (2.25*T*t)/(ro^2)

What is Pumping Well?

Pumping Well is a well in which pumping is required to increase the formation pressure to allow the free production flow. It is the opposite of a naturally flowing well because in such type of a well an external device such as a reciprocating pump is used to force the liquid to move out of the well.

How to Calculate Storage Coefficient given Distance from Pumping Well?

Storage Coefficient given Distance from Pumping Well calculator uses Storage Coefficient (Well-Field Design) = (2.25*Transmissivity*Time)/(Distance from Pumping Well to Point Intersection^2) to calculate the Storage Coefficient (Well-Field Design), The Storage Coefficient given Distance from Pumping Well is the volume of water released from storage per unit decline in hydraulic head in the aquifer, per unit area of the aquifer. Storage Coefficient (Well-Field Design) is denoted by S symbol.

How to calculate Storage Coefficient given Distance from Pumping Well using this online calculator? To use this online calculator for Storage Coefficient given Distance from Pumping Well, enter Transmissivity (T), Time (t) & Distance from Pumping Well to Point Intersection (ro) and hit the calculate button. Here is how the Storage Coefficient given Distance from Pumping Well calculation can be explained with given input values -> 6.1875 = (2.25*11*14400)/(4^2).

FAQ

What is Storage Coefficient given Distance from Pumping Well?
The Storage Coefficient given Distance from Pumping Well is the volume of water released from storage per unit decline in hydraulic head in the aquifer, per unit area of the aquifer and is represented as S = (2.25*T*t)/(ro^2) or Storage Coefficient (Well-Field Design) = (2.25*Transmissivity*Time)/(Distance from Pumping Well to Point Intersection^2). Transmissivity is the rate at which groundwater flows horizontally through an aquifer or the degree to which a medium allows something, in particular electromagnetic radiation, to pass through it, The Time refers to as the ongoing and continuous sequence of events that occur in succession, from the past through the present to the future & The Distance from Pumping Well to Point Intersection is referred as the straight line which intersects the zero-drawdown line.
How to calculate Storage Coefficient given Distance from Pumping Well?
The Storage Coefficient given Distance from Pumping Well is the volume of water released from storage per unit decline in hydraulic head in the aquifer, per unit area of the aquifer is calculated using Storage Coefficient (Well-Field Design) = (2.25*Transmissivity*Time)/(Distance from Pumping Well to Point Intersection^2). To calculate Storage Coefficient given Distance from Pumping Well, you need Transmissivity (T), Time (t) & Distance from Pumping Well to Point Intersection (ro). With our tool, you need to enter the respective value for Transmissivity, Time & Distance from Pumping Well to Point Intersection 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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