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Peak Discharge is the maximum volume flow rate passing a particular location during an event. Check FAQs
Qp=Qdf
Qp - Peak Discharge?Qd - Average Daily Load?f - Peaking Factor?

Peak Discharge in Circular Settling Tanks Example

With values
With units
Only example

Here is how the Peak Discharge in Circular Settling Tanks equation looks like with Values.

Here is how the Peak Discharge in Circular Settling Tanks equation looks like with Units.

Here is how the Peak Discharge in Circular Settling Tanks equation looks like.

37.5Edit=15Edit2.5Edit
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Peak Discharge in Circular Settling Tanks Solution

Follow our step by step solution on how to calculate Peak Discharge in Circular Settling Tanks?

FIRST Step Consider the formula
Qp=Qdf
Next Step Substitute values of Variables
Qp=15MLD2.5
Next Step Convert Units
Qp=0.1736m³/s2.5
Next Step Prepare to Evaluate
Qp=0.17362.5
Next Step Evaluate
Qp=0.434027777777777m³/s
LAST Step Convert to Output's Unit
Qp=37.5MLD

Peak Discharge in Circular Settling Tanks Formula Elements

Variables
Peak Discharge
Peak Discharge is the maximum volume flow rate passing a particular location during an event.
Symbol: Qp
Measurement: Volumetric Flow RateUnit: MLD
Note: Value can be positive or negative.
Average Daily Load
Average Daily Load is the total amount of a substance, such as pollutants or nutrients, entering a system per day, averaged over a specified period, typically measured in kilograms per day (kg/day).
Symbol: Qd
Measurement: Volumetric Flow RateUnit: MLD
Note: Value should be greater than 0.
Peaking Factor
The Peaking Factor is the ratio of the peak flow rate to the average flow rate used to determine the tank's capacity to handle high-flow periods.
Symbol: f
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.

Other Formulas to find Peak Discharge

​Go Peak Discharge given Surface Area of Circular Settling Tank
Qp=(SASl)

Other formulas in Design of a Circular Settling Tank category

​Go Surface Area of Circular Settling Tank
SA=(QpSl)
​Go Design Surface Loading Rate given Surface Area of Circular Settling Tank
Sl=(QpSA)
​Go Average Daily Load using Peak Discharge in Circular Settling Tanks
Qd=(Qpf)
​Go Peaking Factor using Peak Discharge in Circular Settling Tanks
f=(QpQd)

How to Evaluate Peak Discharge in Circular Settling Tanks?

Peak Discharge in Circular Settling Tanks evaluator uses Peak Discharge = Average Daily Load*Peaking Factor to evaluate the Peak Discharge, The Peak Discharge in Circular Settling Tanks is defined as the maximum volume flow rate passing a particular location in a circular tank. Peak Discharge is denoted by Qp symbol.

How to evaluate Peak Discharge in Circular Settling Tanks using this online evaluator? To use this online evaluator for Peak Discharge in Circular Settling Tanks, enter Average Daily Load (Qd) & Peaking Factor (f) and hit the calculate button.

FAQs on Peak Discharge in Circular Settling Tanks

What is the formula to find Peak Discharge in Circular Settling Tanks?
The formula of Peak Discharge in Circular Settling Tanks is expressed as Peak Discharge = Average Daily Load*Peaking Factor. Here is an example- 37.5 = 15*2.5.
How to calculate Peak Discharge in Circular Settling Tanks?
With Average Daily Load (Qd) & Peaking Factor (f) we can find Peak Discharge in Circular Settling Tanks using the formula - Peak Discharge = Average Daily Load*Peaking Factor.
What are the other ways to Calculate Peak Discharge?
Here are the different ways to Calculate Peak Discharge-
  • Peak Discharge=(Surface Area*Surface Loading Rate)OpenImg
Can the Peak Discharge in Circular Settling Tanks be negative?
Yes, the Peak Discharge in Circular Settling Tanks, measured in Volumetric Flow Rate can be negative.
Which unit is used to measure Peak Discharge in Circular Settling Tanks?
Peak Discharge in Circular Settling Tanks is usually measured using the Million Liters per Day[MLD] for Volumetric Flow Rate. Cubic Meter per Second[MLD], Cubic Meter per Day[MLD], Cubic Meter per Hour[MLD] are the few other units in which Peak Discharge in Circular Settling Tanks can be measured.
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