Revision as of 11:13, 4 December 2024 by imported>Scott.Munro
Description
This article describes the Morrell Continuum (Morrell C) method for estimating the power draw of a tumbling mill.[1]
The Morrell C model is a theoretical approach based on the dynamics of the grinding charge. By making simplifying assumptions about the charge shape, composition and position, Morrell developed analytical solutions to equations describing the the rate at which potential and kinetic energy is imparted to the charge during mill rotation.
Model theory
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Excel
The Morrell Continuum mill power model may be invoked from the Excel formula bar with the following function call:
=mdMillPower_MorrellC(Parameters as Range)
Invoking the function with no arguments will print Help text associated with the model, including a link to this page.
The Parameters array and model results are defined below in matrix notation, along with an example image showing the selection of the same arrays in the Excel interface:
SysCAD
The Morrell Continuum power model is an optional calculation for tumbling mill units. If selected, the input and display parameters below are shown.
Tag (Long/Short)
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Input / Display
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Description/Calculated Variables/Options
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MorrellC
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HelpLink
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Opens a link to this page using the system default web browser. Note: Internet access is required.
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MillDiameter
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Input/Display
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Diameter of the mill (inside liners).
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BellyLength
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Input/Display
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Length of the cylindrical section (belly) of the mill (inside liners).
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TrunnionDiameter
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Input/Display
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Diameter of the trunnion (inside liners).
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FracCS
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Input/Display
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Fraction critical speed of the mill.
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Jt
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Input/Display
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Volumetric fraction of the mill occupied by balls and coarse rock (including voids).
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Jb
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Input/Display
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Volumetric fraction of the mill occupied by balls (including voids).
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Voidage
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Input/Display
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Volumetric fraction of interstitial void space in the charge. Usually 0.4.
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VoidFillFraction
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Input/Display
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Volumetric fraction of interstitial grinding media voidage occupied by slurry.
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ConeAngle
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Input/Display
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Angular displacement of the cone surface from the vertical direction.
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DischargePulpDensity
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Display
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Mass fraction of solids in discharge slurry.
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SolidsSG
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Display
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Specific Gravity or density of solids.
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LiquidsSG
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Display
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Specific Gravity or density of liquids.
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BallSG
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Input/Display
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Specific Gravity or density of balls.
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DischargeType
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Grate/Overflow
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Discharge configuration, grate or overflow.
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NetPowerAdjust
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Input
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Lumped calibration parameter accounting for power losses. Found to be a value of 1.26 for industrial mills.
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ThetaShoulder
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Display
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Angle of the charge shoulder.
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ThetaToe
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Display
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Angle of the charge toe.
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ThetaSlurryToe
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Display
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Angle of the slurry pool surface at the toe.
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ChargeSurfaceRadius
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Display
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Radius of the inner surface of the charge.
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NoLoadPower
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Display
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Power input to the motor when the mill is empty (no balls, rocks or slurry).
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NetPower
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Display
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Charge motion power, including losses.
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GrossPower
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Display
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Power input to the motor.
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See also
References
- ↑ Morrell, S., 1996. Power draw of wet tumbling mills and its relationship to charge dynamics. Pt. 1: a continuum approach to mathematical modelling of mill power draw. Transactions of the Institution of Mining and Metallurgy. Section C. Mineral Processing and Extractive Metallurgy, 105.