Proportionality Constant for Flow Discharge into well Solution

STEP 0: Pre-Calculation Summary
Formula Used
Proportionality Constant = Flow Discharge/Depression Head
K0 = Qf/H
This formula uses 3 Variables
Variables Used
Proportionality Constant - The proportionality constant depends upon the characteristics of the aquifer and the area of the well. It represents discharge per unit drawdown also called specific capacity of well.
Flow Discharge - (Measured in Cubic Meter per Second) - Flow Discharge into a well is the amount of fluid passing a section of a stream in unit time is called the discharge.
Depression Head - (Measured in Meter) - Depression Head is the height of the bottom of a well above the datum.
STEP 1: Convert Input(s) to Base Unit
Flow Discharge: 30 Cubic Meter per Second --> 30 Cubic Meter per Second No Conversion Required
Depression Head: 7 Meter --> 7 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
K0 = Qf/H --> 30/7
Evaluating ... ...
K0 = 4.28571428571429
STEP 3: Convert Result to Output's Unit
4.28571428571429 --> No Conversion Required
FINAL ANSWER
4.28571428571429 4.285714 <-- Proportionality Constant
(Calculation completed in 00.004 seconds)

Credits

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Coorg Institute of Technology (CIT), Coorg
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3 Open Wells Calculators

Proportionality Constant for Flow Discharge into well
Go Proportionality Constant = Flow Discharge/Depression Head
Depression Head for Flow Discharge into well
Go Depression Head = Flow Discharge/Proportionality Constant
Flow Discharge into Well
Go Flow Discharge = Proportionality Constant*Depression Head

Proportionality Constant for Flow Discharge into well Formula

Proportionality Constant = Flow Discharge/Depression Head
K0 = Qf/H

What is Discharge?

In Hydrology, Discharge is the volumetric flow rate of water that is transported through a given cross-sectional area. It includes any suspended solids, dissolved chemicals, or biologic material in addition to the water itself.

How to Calculate Proportionality Constant for Flow Discharge into well?

Proportionality Constant for Flow Discharge into well calculator uses Proportionality Constant = Flow Discharge/Depression Head to calculate the Proportionality Constant, The Proportionality Constant for Flow Discharge into well is defined as the characteristic of aquifer depending on the aquifer parameter and area of the well, representing the discharge per unit drawdown. Proportionality Constant is denoted by K0 symbol.

How to calculate Proportionality Constant for Flow Discharge into well using this online calculator? To use this online calculator for Proportionality Constant for Flow Discharge into well, enter Flow Discharge (Qf) & Depression Head (H) and hit the calculate button. Here is how the Proportionality Constant for Flow Discharge into well calculation can be explained with given input values -> 4.285714 = 30/7.

FAQ

What is Proportionality Constant for Flow Discharge into well?
The Proportionality Constant for Flow Discharge into well is defined as the characteristic of aquifer depending on the aquifer parameter and area of the well, representing the discharge per unit drawdown and is represented as K0 = Qf/H or Proportionality Constant = Flow Discharge/Depression Head. Flow Discharge into a well is the amount of fluid passing a section of a stream in unit time is called the discharge & Depression Head is the height of the bottom of a well above the datum.
How to calculate Proportionality Constant for Flow Discharge into well?
The Proportionality Constant for Flow Discharge into well is defined as the characteristic of aquifer depending on the aquifer parameter and area of the well, representing the discharge per unit drawdown is calculated using Proportionality Constant = Flow Discharge/Depression Head. To calculate Proportionality Constant for Flow Discharge into well, you need Flow Discharge (Qf) & Depression Head (H). With our tool, you need to enter the respective value for Flow Discharge & Depression Head 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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