Catchment Area given Peak Rate of Runoff from Inglis Formula Solution

STEP 0: Pre-Calculation Summary
Formula Used
Catchment Area in KM = (Peak Rate of Runoff for Inglish/123)^2
Akm = (QI/123)^2
This formula uses 2 Variables
Variables Used
Catchment Area in KM - (Measured in Square Kilometer) - Catchment area in KM measured in square kilometers, refers to the geographical region from which water drains into a specific river, lake, or reservoir.
Peak Rate of Runoff for Inglish - (Measured in Cubic Meter per Second) - The Peak Rate of Runoff for Inglish is the maximum rate of discharge during the period of runoff caused by a storm and it is applicable for the fan-shaped catchments of Old Bombay of India.
STEP 1: Convert Input(s) to Base Unit
Peak Rate of Runoff for Inglish: 194.48 Cubic Meter per Second --> 194.48 Cubic Meter per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Akm = (QI/123)^2 --> (194.48/123)^2
Evaluating ... ...
Akm = 2.49999804349263
STEP 3: Convert Result to Output's Unit
2499998.04349263 Square Meter -->2.49999804349263 Square Kilometer (Check conversion here)
FINAL ANSWER
2.49999804349263 2.499998 Square Kilometer <-- Catchment Area in KM
(Calculation completed in 00.004 seconds)

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3 Inglis Formula Calculators

Peak Rate of Runoff from Inglis Formula
Go Peak Rate of Runoff for Inglish = (123*Catchment Area in KM)/sqrt(Catchment Area in KM+10.4)
Peak Rate of Runoff from Inglis Formula Approximate
Go Peak Rate of Runoff for Inglish = 123*sqrt(Catchment Area in KM)
Catchment Area given Peak Rate of Runoff from Inglis Formula
Go Catchment Area in KM = (Peak Rate of Runoff for Inglish/123)^2

Catchment Area given Peak Rate of Runoff from Inglis Formula Formula

Catchment Area in KM = (Peak Rate of Runoff for Inglish/123)^2
Akm = (QI/123)^2

What is Catchment Area ?

A water catchment (commonly referred to as a “watershed”) is an area of land where all water flows to a single stream, river, lake or even ocean. Natural boundaries of water catchments can be very small for a single creek or stream or quite large.

How to Calculate Catchment Area given Peak Rate of Runoff from Inglis Formula?

Catchment Area given Peak Rate of Runoff from Inglis Formula calculator uses Catchment Area in KM = (Peak Rate of Runoff for Inglish/123)^2 to calculate the Catchment Area in KM, The Catchment Area given Peak Rate of Runoff from Inglis Formula is defined as the area from which rain flows into a particular river or lake. Catchment Area in KM is denoted by Akm symbol.

How to calculate Catchment Area given Peak Rate of Runoff from Inglis Formula using this online calculator? To use this online calculator for Catchment Area given Peak Rate of Runoff from Inglis Formula, enter Peak Rate of Runoff for Inglish (QI) and hit the calculate button. Here is how the Catchment Area given Peak Rate of Runoff from Inglis Formula calculation can be explained with given input values -> 5.9E-10 = (194.48/123)^2.

FAQ

What is Catchment Area given Peak Rate of Runoff from Inglis Formula?
The Catchment Area given Peak Rate of Runoff from Inglis Formula is defined as the area from which rain flows into a particular river or lake and is represented as Akm = (QI/123)^2 or Catchment Area in KM = (Peak Rate of Runoff for Inglish/123)^2. The Peak Rate of Runoff for Inglish is the maximum rate of discharge during the period of runoff caused by a storm and it is applicable for the fan-shaped catchments of Old Bombay of India.
How to calculate Catchment Area given Peak Rate of Runoff from Inglis Formula?
The Catchment Area given Peak Rate of Runoff from Inglis Formula is defined as the area from which rain flows into a particular river or lake is calculated using Catchment Area in KM = (Peak Rate of Runoff for Inglish/123)^2. To calculate Catchment Area given Peak Rate of Runoff from Inglis Formula, you need Peak Rate of Runoff for Inglish (QI). With our tool, you need to enter the respective value for Peak Rate of Runoff for Inglish 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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