Mass Flow Rate of Feed Solution

STEP 0: Pre-Calculation Summary
Formula Used
Mass Flow Rate of Feed = Mass Flow Rate of Underflow+Mass Flow Rate of Overflow
F = B+D
This formula uses 3 Variables
Variables Used
Mass Flow Rate of Feed - (Measured in Kilogram per Second) - Mass Flow Rate of Feed is the flow of mass through a surface per unit time .
Mass Flow Rate of Underflow - (Measured in Kilogram per Second) - Mass Flow Rate of Underflow gives us the flow rate of underflow mass in the feed .
Mass Flow Rate of Overflow - (Measured in Kilogram per Second) - Mass Flow Rate of Overflow gives the mass flow rate of overflow from the feed.
STEP 1: Convert Input(s) to Base Unit
Mass Flow Rate of Underflow: 8 Kilogram per Second --> 8 Kilogram per Second No Conversion Required
Mass Flow Rate of Overflow: 10 Kilogram per Second --> 10 Kilogram per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
F = B+D --> 8+10
Evaluating ... ...
F = 18
STEP 3: Convert Result to Output's Unit
18 Kilogram per Second --> No Conversion Required
FINAL ANSWER
18 Kilogram per Second <-- Mass Flow Rate of Feed
(Calculation completed in 00.020 seconds)

Credits

Created by Qazi Muneeb
NIT Srinagar (NIT SRI), Srinagar, Kashmir
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Verified by Soupayan banerjee
National University of Judicial Science (NUJS), Kolkata
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12 Mechanical Separation Calculators

Combined Overall Efficiency of Screen
Go Combined Overall Efficiency = (Mass Flow Rate of Underflow*Mass Flow Rate of Overflow*Mass Fraction of Material A in Overflow*(1-Mass Fraction of Material A in Underflow))/(Mass Flow Rate of Feed*Mass Flow Rate of Feed*Mass Fraction of Material A in Feed*(1-Mass Fraction of Material A in Feed))
Mass Fraction of Material in Underflow
Go Mass Fraction of Material A in Underflow = Mass Fraction of Material A in Overflow-((Mass Fraction of Material A in Overflow-Mass Fraction of Material A in Feed)*(Mass Flow Rate of Feed/Mass Flow Rate of Underflow))
Mass Flow Rate of under flow
Go Mass Flow Rate of Underflow = Mass Flow Rate of Feed*((Mass Fraction of Material A in Overflow-Mass Fraction of Material A in Feed)/(Mass Fraction of Material A in Overflow-Mass Fraction of Material A in Underflow))
Mass Flow Rate of over flow
Go Mass Flow Rate of Overflow = Mass Flow Rate of Feed*((Mass Fraction of Material A in Feed-Mass Fraction of Material A in Underflow)/(Mass Fraction of Material A in Overflow-Mass Fraction of Material A in Underflow))
Mass Fraction of Material in Feed
Go Mass Fraction of Material A in Feed = (Mass Flow Rate of Overflow/Mass Flow Rate of Feed)*(Mass Fraction of Material A in Overflow-Mass Fraction of Material A in Underflow)+Mass Fraction of Material A in Underflow
Screen Effectiveness based on Undersize Material
Go Screen Effectiveness Based On Undersize = (Mass Flow Rate of Underflow*(1-Mass Fraction of Material A in Underflow))/(Mass Flow Rate of Feed*(1-Mass Fraction of Material A in Feed))
Screen Effectiveness Based on Oversize Material
Go Screen Effectiveness = (Mass Fraction of Material A in Overflow*Mass Flow Rate of Overflow)/(Mass Flow Rate of Feed*Mass Fraction of Material A in Feed)
Screen Effectiveness based on Oversize Material from Overall Efficiency
Go Screen Effectiveness Based on Oversize Material = Combined Overall Efficiency/Screen Effectiveness Based On Undersize
Mass Flow Rate of Feed
Go Mass Flow Rate of Feed = Mass Flow Rate of Underflow+Mass Flow Rate of Overflow
Diameter of Wire in Terms of Mesh Number
Go Diameter Of Wire = (1/Mesh Number)-Aperture Size
Aperture Size
Go Aperture Size = (1/Mesh Number)-Diameter Of Wire
Mesh Number
Go Mesh Number = 1/(Aperture Size+Diameter Of Wire)

Mass Flow Rate of Feed Formula

Mass Flow Rate of Feed = Mass Flow Rate of Underflow+Mass Flow Rate of Overflow
F = B+D

Why are material balances important ?

Material and Energy balances are important, since they make it possible to identify and quantify previously unknown losses and emissions. These balances are also useful for monitoring the improvements made in an ongoing project, while evaluating cost benefits.

How to Calculate Mass Flow Rate of Feed?

Mass Flow Rate of Feed calculator uses Mass Flow Rate of Feed = Mass Flow Rate of Underflow+Mass Flow Rate of Overflow to calculate the Mass Flow Rate of Feed, Mass Flow Rate of Feed is the mass of a substance passing per unit time. In other words, the mass flow rate is defined as the rate of movement of amount of a substance passing through a unit area. Mass Flow Rate of Feed is denoted by F symbol.

How to calculate Mass Flow Rate of Feed using this online calculator? To use this online calculator for Mass Flow Rate of Feed, enter Mass Flow Rate of Underflow (B) & Mass Flow Rate of Overflow (D) and hit the calculate button. Here is how the Mass Flow Rate of Feed calculation can be explained with given input values -> 18 = 8+10.

FAQ

What is Mass Flow Rate of Feed?
Mass Flow Rate of Feed is the mass of a substance passing per unit time. In other words, the mass flow rate is defined as the rate of movement of amount of a substance passing through a unit area and is represented as F = B+D or Mass Flow Rate of Feed = Mass Flow Rate of Underflow+Mass Flow Rate of Overflow. Mass Flow Rate of Underflow gives us the flow rate of underflow mass in the feed & Mass Flow Rate of Overflow gives the mass flow rate of overflow from the feed.
How to calculate Mass Flow Rate of Feed?
Mass Flow Rate of Feed is the mass of a substance passing per unit time. In other words, the mass flow rate is defined as the rate of movement of amount of a substance passing through a unit area is calculated using Mass Flow Rate of Feed = Mass Flow Rate of Underflow+Mass Flow Rate of Overflow. To calculate Mass Flow Rate of Feed, you need Mass Flow Rate of Underflow (B) & Mass Flow Rate of Overflow (D). With our tool, you need to enter the respective value for Mass Flow Rate of Underflow & Mass Flow Rate of Overflow 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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