HPGR (Morrell-Tondo-Shi)

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Description

This article describes the Morrell-Tondo-Shi (Morrell et al., 1997) model for comminution by High Pressure Grinding Rolls (HPGR), verified for simulation and scale-up by Daniel and Morrell (2004).[1][2]

Model theory

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Pre, edge and bed crushers

Edge split

Throughput

Power

Excel

The Morrell-Tondo-Shi HPGR model may be invoked from the Excel formula bar with the following function call:

=mdUnit_HPGR_MorrellTondoShi(Parameters as Range, Size as Range, HPGRFeed as Range, SP_Appearance as Range, SP_Ecst10Size-t10-size as Range, Bed_Appearance as Range, Bed_Ecst10Size as Range)

Invoking the function with no arguments will print Help text associated with the model, including a link to this page.

Inputs

The required inputs are defined below in matrix notation with elements corresponding to cells in Excel row ([math]\displaystyle{ i }[/math]) x column ([math]\displaystyle{ j }[/math]) format:

[math]\displaystyle{ Parameters= \begin{bmatrix} D\text{ (m)}\\ L\text{ (m)}\\ U\text{ (m/s)}\\ x_{\rm g}\text{ (m)}\\ \rho_{\rm c}\text{ (t/m}^3\text{)}\\ \rho_{\rm g}\text{ (t/m}^3\text{)}\\ \gamma\text{ (-)}\\ c_{\rm a}\text{ (-)}\\ c_{\rm b}\text{ (-)}\\ P_{\rm NoLoad}\text{ (kW)}\\ (k_{\rm P})_{\rm Edge}\text{ (kW/kW)}\\ (k_{\rm P})_{\rm Bed}\text{ (kW/kW)}\\ (c_{K_1})_{\rm Pre}\text{ (mm/mm)}\\ (K_3)_{\rm Pre}\text{ (-)}\\ (t_{10})_{\rm Pre}\text{ (}%\text{)}\\ (K_1)_{\rm Bed}\text{ (mm)}\\ (K_3)_{\rm Bed}\text{ (-)}\\ (c_{K_1})_{\rm Edge}\text{ (mm/mm)}\\ (K_3)_{\rm Edge}\text{ (-)}\\ (t_{10})_{\rm Edge}\text{ (}%\text{)}\\ \end{bmatrix},\;\;\;\;\;\; Size = \begin{bmatrix} d_{1}\text{ (mm)}\\ \vdots\\ d_n\text{ (mm)}\\ \end{bmatrix},\;\;\;\;\;\; \mathit{HPGRFeed}= \begin{bmatrix} (Q_{\rm M,F})_{11}\text{ (t/h)} & \dots & (Q_{\rm M,F})_{1m}\text{ (t/h)}\\ \vdots & \ddots & \vdots\\ (Q_{\rm M,F})_{n1}\text{ (t/h)} & \dots & (Q_{\rm M,F})_{nm}\text{ (t/h)}\\ \end{bmatrix} }[/math]
[math]\displaystyle{ \mathit{SP\_Appearance}= \begin{bmatrix} \begin{bmatrix} (t_{75})_{10}\text{ (}\%\text{)} & (t_{50})_{10}\text{ (}\%\text{)} & (t_{25})_{10}\text{ (}\%\text{)} & (t_{4})_{10}\text{ (}\%\text{)} & (t_{2})_{10}\text{ (}\%\text{)}\\ (t_{75})_{20}\text{ (}\%\text{)} & (t_{50})_{20}\text{ (}\%\text{)} & (t_{25})_{20}\text{ (}\%\text{)} & (t_{4})_{20}\text{ (}\%\text{)} & (t_{2})_{20}\text{ (}\%\text{)}\\ (t_{75})_{30}\text{ (}\%\text{)} & (t_{50})_{30}\text{ (}\%\text{)} & (t_{25})_{30}\text{ (}\%\text{)} & (t_{4})_{30}\text{ (}\%\text{)} & (t_{2})_{30}\text{ (}\%\text{)}\\ \end{bmatrix}_{\rm SP,1}\\ \vdots\\ \begin{bmatrix} (t_{75})_{10}\text{ (}\%\text{)} & (t_{50})_{10}\text{ (}\%\text{)} & (t_{25})_{10}\text{ (}\%\text{)} & (t_{4})_{10}\text{ (}\%\text{)} & (t_{2})_{10}\text{ (}\%\text{)}\\ (t_{75})_{20}\text{ (}\%\text{)} & (t_{50})_{20}\text{ (}\%\text{)} & (t_{25})_{20}\text{ (}\%\text{)} & (t_{4})_{20}\text{ (}\%\text{)} & (t_{2})_{20}\text{ (}\%\text{)}\\ (t_{75})_{30}\text{ (}\%\text{)} & (t_{50})_{30}\text{ (}\%\text{)} & (t_{25})_{30}\text{ (}\%\text{)} & (t_{4})_{30}\text{ (}\%\text{)} & (t_{2})_{30}\text{ (}\%\text{)}\\ \end{bmatrix}_{\rm SP,m}\\ \end{bmatrix},\;\;\;\;\;\; \mathit{SP\_Ecst10Size} = \begin{bmatrix} \begin{bmatrix} (d_{\rm p})_1\text{ (mm)} & \dots & (d_{\rm p})_k\text{ (mm)} \\ \end{bmatrix}_{\rm SP}\\ \begin{bmatrix} (E_{\rm cs})_{10,1}\text{ (kWh/t)} & \dots & (E_{\rm cs})_{10,k}\text{ (kWh/t)}\\ (E_{\rm cs})_{20,1}\text{ (kWh/t)} & \dots & (E_{\rm cs})_{20,k}\text{ (kWh/t)}\\ (E_{\rm cs})_{30,1}\text{ (kWh/t)} & \dots & (E_{\rm cs})_{30,k}\text{ (kWh/t)}\\ \end{bmatrix}_{\rm SP,1}\\ \vdots\\ \begin{bmatrix} (E_{\rm cs})_{10,1}\text{ (kWh/t)} & \dots & (E_{\rm cs})_{10,k}\text{ (kWh/t)}\\ (E_{\rm cs})_{20,1}\text{ (kWh/t)} & \dots & (E_{\rm cs})_{20,k}\text{ (kWh/t)}\\ (E_{\rm cs})_{30,1}\text{ (kWh/t)} & \dots & (E_{\rm cs})_{30,k}\text{ (kWh/t)}\\ \end{bmatrix}_{\rm SP,m}\\ \end{bmatrix} }[/math]
[math]\displaystyle{ Bed\_Appearance= \begin{bmatrix} \begin{bmatrix} (t_{75})_{10}\text{ (}\%\text{)} & (t_{50})_{10}\text{ (}\%\text{)} & (t_{25})_{10}\text{ (}\%\text{)} & (t_{4})_{10}\text{ (}\%\text{)} & (t_{2})_{10}\text{ (}\%\text{)}\\ (t_{75})_{30}\text{ (}\%\text{)} & (t_{50})_{30}\text{ (}\%\text{)} & (t_{25})_{30}\text{ (}\%\text{)} & (t_{4})_{30}\text{ (}\%\text{)} & (t_{2})_{30}\text{ (}\%\text{)}\\ (t_{75})_{50}\text{ (}\%\text{)} & (t_{50})_{50}\text{ (}\%\text{)} & (t_{25})_{50}\text{ (}\%\text{)} & (t_{4})_{50}\text{ (}\%\text{)} & (t_{2})_{50}\text{ (}\%\text{)}\\ \end{bmatrix}_{\rm Bed,1}\\ \vdots\\ \begin{bmatrix} (t_{75})_{10}\text{ (}\%\text{)} & (t_{50})_{10}\text{ (}\%\text{)} & (t_{25})_{10}\text{ (}\%\text{)} & (t_{4})_{10}\text{ (}\%\text{)} & (t_{2})_{10}\text{ (}\%\text{)}\\ (t_{75})_{30}\text{ (}\%\text{)} & (t_{50})_{30}\text{ (}\%\text{)} & (t_{25})_{30}\text{ (}\%\text{)} & (t_{4})_{30}\text{ (}\%\text{)} & (t_{2})_{30}\text{ (}\%\text{)}\\ (t_{75})_{50}\text{ (}\%\text{)} & (t_{50})_{50}\text{ (}\%\text{)} & (t_{25})_{50}\text{ (}\%\text{)} & (t_{4})_{50}\text{ (}\%\text{)} & (t_{2})_{50}\text{ (}\%\text{)}\\ \end{bmatrix}_{\rm Bed,m}\\ \end{bmatrix},\;\;\;\;\;\; Bed\_Ecst10Size= \begin{bmatrix} \begin{bmatrix} (d_{\rm p})_1\text{ (mm)} & \dots & (d_{\rm p})_k\text{ (mm)} \\ \end{bmatrix}_{\rm Bed}\\ \begin{bmatrix} (E_{\rm cs})_{10,1}\text{ (kWh/t)} & \dots & (E_{\rm cs})_{10,k}\text{ (kWh/t)}\\ (E_{\rm cs})_{30,1}\text{ (kWh/t)} & \dots & (E_{\rm cs})_{30,k}\text{ (kWh/t)}\\ (E_{\rm cs})_{50,1}\text{ (kWh/t)} & \dots & (E_{\rm cs})_{50,k}\text{ (kWh/t)}\\ \end{bmatrix}_{\rm Bed,1}\\ \vdots\\ \begin{bmatrix} (E_{\rm cs})_{10,1}\text{ (kWh/t)} & \dots & (E_{\rm cs})_{10,k}\text{ (kWh/t)}\\ (E_{\rm cs})_{30,1}\text{ (kWh/t)} & \dots & (E_{\rm cs})_{30,k}\text{ (kWh/t)}\\ (E_{\rm cs})_{50,1}\text{ (kWh/t)} & \dots & (E_{\rm cs})_{50,k}\text{ (kWh/t)}\\ \end{bmatrix}_{\rm Bed,m}\\ \end{bmatrix} }[/math]

where:

  • [math]\displaystyle{ n }[/math] is the number of size intervals
  • [math]\displaystyle{ m }[/math] is the number of ore types
  • [math]\displaystyle{ d_i }[/math] is the size of the square mesh interval that mass is retained on (mm)
  • [math]\displaystyle{ d_{i+1}\lt d_i\lt d_{i-1} }[/math], i.e. descending size order from top size ([math]\displaystyle{ d_{1} }[/math]) to sub mesh ([math]\displaystyle{ d_{n}=0 }[/math] mm)
  • [math]\displaystyle{ Q_{\rm M,F} }[/math] is the mass flow rate of particles in the crusher feed (t/h)
  • [math]\displaystyle{ (t_{y})_x }[/math] is the fraction of mass passing one-[math]\displaystyle{ y }[/math]th the size of a parent particle (%) when [math]\displaystyle{ x\% }[/math] passes one-tenth the size of a parent particle (%), [math]\displaystyle{ y\in\{75, 50, 25, 2\} }[/math], and [math]\displaystyle{ x\in\{10, 20, 30\} }[/math] or [math]\displaystyle{ x\in\{10, 30, 50\} }[/math]
  • [math]\displaystyle{ d_{\rm p} }[/math] is the size of a parent particle subject to breakage for Energy-Size Reduction relationship testing (mm)
  • [math]\displaystyle{ k }[/math] is the number of particle sizes subject to breakage for Energy-Size Reduction relationship testing
  • [math]\displaystyle{ (E_{\rm cs})_{x,k} }[/math] is the specific comminution energy required to break a parent particle of size [math]\displaystyle{ (d_p)_k }[/math] into a distribution of progeny particles with [math]\displaystyle{ x\% }[/math] passing one-tenth of the parent size (kWh/t)
  • the [math]\displaystyle{ \rm SP }[/math] subscript indicates properties associated with single particle breakage
  • the [math]\displaystyle{ \rm Bed }[/math] subscript indicates properties associated with bed compression breakage

Results

The results are displayed in Excel as an array corresponding to the matrix notation below:

[math]\displaystyle{ \mathit{mdUnit\_HPGR\_MorrellTondoShi} = \begin{bmatrix} \begin{array}{c} \begin{bmatrix} x_{\rm c}\text{ (m)}\\ f\text{ (frac)}\\ c\text{ (frac)}\\ Q\text{ (t/h)}\\ P_{\rm Pre}\text{ (kW)}\\ P_{\rm Edge}\text{ (kW)}\\ P_{\rm Bed}\text{ (kW)}\\ P_{\rm Gross}\text{ (kW)}\\ E_{\rm cs}\text{ (kWh/t)}\\ (K_1)_{\rm Pre}\text{ (mm)}\\ (K_2)_{\rm Pre}\text{ (mm)}\\ (K_1)_{\rm Edge}\text{ (mm)}\\ (K_2)_{\rm Edge}\text{ (mm)}\\ \end{bmatrix} \end{array} & \begin{array}{cccc} \begin{bmatrix} d_1\text{ (mm)}\\ \vdots\\ d_n\text{ (mm)} \end{bmatrix} & \begin{bmatrix} (Q_{\rm M,P})_{11}\text{ (t/h)} & \dots & (Q_{\rm M,P})_{1m}\text{ (t/h)}\\ \vdots & \ddots & \vdots\\ (Q_{\rm M,P})_{n1}\text{ (t/h)} & \dots & (Q_{\rm M,P})_{nm}\text{ (t/h)}\\ \end{bmatrix} & \begin{bmatrix} (Q_{\rm M,E})_{11}\text{ (t/h)} & \dots & (Q_{\rm M,E})_{1m}\text{ (t/h)}\\ \vdots & \ddots & \vdots\\ (Q_{\rm M,E})_{n1}\text{ (t/h)} & \dots & (Q_{\rm M,E})_{nm}\text{ (t/h)}\\ \end{bmatrix} & \begin{bmatrix} (Q_{\rm M,B})_{11}\text{ (t/h)} & \dots & (Q_{\rm M,B})_{1m}\text{ (t/h)}\\ \vdots & \ddots & \vdots\\ (Q_{\rm M,B})_{n1}\text{ (t/h)} & \dots & (Q_{\rm M,B})_{nm}\text{ (t/h)}\\ \end{bmatrix} \\ \\ \\ \\ \\ \\ \\ \\ \\ \\ \\ \end{array} \end{bmatrix} }[/math]

where:

  • [math]\displaystyle{ Q_{\rm M,P} }[/math] is the mass flow rate of particles in the overall, combined product (t/h)
  • [math]\displaystyle{ Q_{\rm M,E} }[/math] is the mass flow rate of particles in the edge product (t/h)
  • [math]\displaystyle{ Q_{\rm M,B} }[/math] is the mass flow rate of particles in the bed (centre) product (t/h)

Example

The images below show the selection of input arrays and output results in the Excel interface.

Figure 2. Example showing the selection of the Parameters (blue frame) array in Excel.
Figure 2. Example showing the selection of the Size (red frame) and HPGRFeed (purple frame) arrays in Excel.
Figure 4. Example showing the selection of the Single Particle Appearance (green frame), Single Particle Energy-Size Reduction (pink frame), Compressed Bed Appearance (brown frame), and Compressed Bed Energy-Size Reduction (teal frame) arrays in Excel.
Figure 5. Example showing the outline of the Results (light blue frame) array in Excel.

SysCAD

The sections and variable names used in the SysCAD interface are described in detail in the following tables.

MD_HPGR page

The first tab page in the access window will have this name.

Tag (Long/Short) Input / Display Description/Calculated Variables/Options
Tag Display This name tag may be modified with the change tag option.
Condition Display OK if no errors/warnings, otherwise lists errors/warnings.
ConditionCount Display The current number of errors/warnings. If condition is OK, returns 0.
GeneralDescription / GenDesc Display This is an automatically generated description for the unit. If the user has entered text in the 'EqpDesc' field on the Info tab (see below), this will be displayed here.

If this field is blank, then SysCAD will display the unit class ID.

Requirements
On CheckBox This enables the unit. If this box is not checked, then the material will pass straight through the crusher with no change to the size distribution.
NumParallelUnits Input The number of parallel, identical units to simulate:
  • Feed is divided by the number of parallel units before being sent to the unit model.
  • Unit model products are multiplied back by the same value and returned to the SysCAD product streams.
  • All unit model result values are shown per parallel unit.
Method Fixed Discharge The discharge particle size distribution is user defined. Different distributions can be used for different solids.
Morrell-Shi-Tondo The throughput, power draw and product size distribution are determined by the Morrell-Tondo-Shi model. Different parameters can be used for different solids.
Torres The throughput, power draw and product size distribution are determined by the Torres model. Different parameters can be used for different solids.
Campos The throughput, power draw and product size distribution are determined by the Campos model. Different parameters can be used for different solids.
Options
ShowQFeed CheckBox QFeed and associated tab pages (eg Sp) will become visible, showing the properties of the combined feed stream.
ShowQProd CheckBox QProd and associated tab pages (eg Sp) will become visible, showing the properties of the products.
SizeForPassingFracCalc Input Size fraction for % Passing calculation. The size fraction input here will be shown in the Stream Summary section.
FracForPassingSizeCalc Input Fraction passing for Size calculation. The fraction input here will be shown in the Stream Summary section.
Stream Summary
MassFlow / Qm Display The total mass flow in each stream.
SolidMassFlow / SQm Display The Solids mass flow in each stream.
LiquidMassFlow / LQm Display The Liquid mass flow in each stream.
VolFlow / Qv Display The total Volume flow in each stream.
Temperature / T Display The Temperature of each stream.
Density / Rho Display The Density of each stream.
SolidFrac / Sf Display The Solid Fraction in each stream.
LiquidFrac / Lf Display The Liquid Fraction in each stream.
Passing Display The mass fraction passing the user-specified size (in the field SizeForPassingFracCalc) in each stream.
Passes Display The user-specified (in the field FracForPassesSizeCalc) fraction of material in each stream will pass this size fraction.

HPGR page

The HPGR page is used to specify the input parameters for the HPGR model.

Tag (Long/Short) Input / Display Description/Calculated Variables/Options
MorrellTondoShi
HelpLink ButtonModelHelp.png Opens a link to this page using the system default web browser. Note: Internet access is required.
Parameters
RollDiameter / D Input Diameter of the rolls.
RollLength / L Input Length of the rolls.
RollSpeed / U Input Circumferential velocity of the rolls.
Working gap / xg Input Working gap between the rolls.
FeedBulkDensity / Rhoc Input Bulk density of the feed solids.
CakeDensity / Rhog Input Bulk density of the discharge cake solids.
SplitFactor / g Input Edge split factor.
CpA Input Throughput relationship parameter.
CpB Input Throughput relationship parameter.
NoLoadPower Input No-load power draw of machine.
PowerCoeffEdge / kPEdge Input Power coefficient of edge crusher.
PowerCoeffBed / kPBed Input Power coefficient of bed crusher.
Whiten
K1Factor Input K1 parameter scaling factor for Pre and Edge crushers.
K1 Input / Display K1 parameter for Pre, Bed and Edge crushers.
K2 Display K2 parameter for Pre, Bed and Edge crushers.
K3 Input K3 parameter for Pre, Bed and Edge crushers.
t10 Input t10 parameter for Pre, Bed and Edge crushers.
Results
CriticalGap / xc Display Critical gap.
EdgeSplit / f Display Edge split fraction.
Cp Display Throughput scaling factor.
Throughput / Q Display Maximum throughput of HPGR unit.
GrossPower Display Gross power draw of HPGR unit.
Ecs Display Specific comminution energy of HPGR unit.

Ore page

This page is used to define the crusher comminution properties of SysCAD species with the size distribution quality in the project.

Tag (Long/Short) Input / Display Description/Calculated Variables/Options
Distribution
Name Display Shows the name of the SysCAD Size Distribution (PSD) quality associated with the feed stream.
IntervalCount Display Shows the number of size intervals in the SysCAD Size Distribution (PSD) quality associated with the feed stream.
SpWithPSDCount Display Shows the number of species in the feed stream assigned with the SysCAD Size Distribution (PSD) quality.
View
ColumnView CheckBox Arranges the Appearance and Energy-Size Reduction data in table format (default) or column view.

CrusherWhiten6.png CrusherWhiten7.png

Appearance
OreSpecific CheckBox Ore-specific parameters, allows the Appearance data to be separately input for all species. Default is all species have the same set of single input properties.
This option is only available if there is more than one species in the project with the size distribution property.
Appearance Input Appearance function data
CrusherWhiten8.png CrusherWhiten9.png
Ecs
NumEcsSizes Input The number of original particle sizes for which Energy-Size Reduction data was obtained in the JK Drop Weight test (usually three or five).
OreSpecific CheckBox Ore-specific parameters, allows the Energy-Size Reduction data to be separately input for all species. Default is all species have the same set of single input properties.
Ecs Input Energy-Size Reduction data

CrusherWhiten10.png CrusherWhiten11.png

CSz page

The CSz page provides composition and constituent information by particle size for QFeed, QProd, and QEdgeProduct. It appears after the standard SysCAD stream information when the corresponding stream display option is selected.

  • Results are available for Species, Component, Element, and Individual Phase, with views for Composition, Distribution by Size, and Stream Contribution.
  • The calculations are described in Stream Analyser - Composition by Size.
  • These combined composition-by-size results are not available in the standard SysCAD stream pages. They are particularly useful for comparing simulated results with measured size-by-size data, such as elemental assays or mineral grades by size.
Tag (Long/Short) Input / Display Description/Calculated Variables/Options
Distribution
Name Display Shows the name of the SysCAD Size Distribution (PSD) quality associated with the feed stream.
IntervalCount Display Shows the number of size intervals in the SysCAD Size Distribution (PSD) quality associated with the feed stream.
SpWithPSDCount Display Shows the number of species in the feed stream assigned with the SysCAD Size Distribution (PSD) quality.
CSz
Property Composition Displays the mass fraction of each species, component, element, or individual phase within each size interval. The All row displays the overall composition over all size intervals.
Distribution by Size Displays the fraction of each constituent's total mass that occurs in each size interval. The All column displays the distribution by size of all solids with a particle size distribution property in the selected stream.
Stream Contribution Displays each constituent and size interval mass as a fraction of the total mass of all solids with a particle size distribution property in the selected stream.
Comp
Size Display Size of each interval in the mesh series.
All (All column) Display Total composition of all solids with a particle size distribution property in each size interval. The result is 100% when the interval contains solids with a particle size distribution property and 0 when it does not.
Comp Display Mass fraction of each solid species with a particle size distribution property within each size interval.
All (All row, All column) Display Total composition of all solids with a particle size distribution property over all size intervals. The result is 100% when the selected stream contains solids with a particle size distribution property and 0 when it does not.
All (All row, per species) Display Overall mass fraction of each solid species with a particle size distribution property in the selected stream for all size intervals.
CmpComp
Components
ButtonHideComponents.png
ButtonShowComponents.png
Hides or shows the component composition table.
Size Display Size of each interval in the mesh series.
All (All column) Display Total composition of all solids with a particle size distribution property in each size interval. The result is 100% when the interval contains solids with a particle size distribution property and 0 when it does not.
CmpComp Display Mass fraction of each displayed solid component within each size interval.
All (All row, All column) Display Total composition of all solids with a particle size distribution property over all size intervals.
All (All row, per component) Display Overall mass fraction of each displayed solid component in the selected stream over all size intervals.
EleComp
Elements
ButtonHideElements.png
ButtonShowElements.png
Hides or shows the element composition table.
Size Display Size of each interval in the mesh series.
All (All column) Display Total composition of all solids with a particle size distribution property in each size interval. The result is 100% when the interval contains solids with a particle size distribution property and 0 when it does not.
EleComp Display Mass fraction of each displayed element within each size interval.
All (All row, All column) Display Total composition of all solids with a particle size distribution property over all size intervals.
All (All row, per element) Display Overall mass fraction of each displayed element in the selected stream over all size intervals.
IPhComp
IPhases
ButtonHideIPhases.png
ButtonShowIPhases.png
Hides or shows the individual phase composition table.
Size Display Size of each interval in the mesh series.
All (All column) Display Total composition of all solids with a particle size distribution property in each size interval. The result is 100% when the interval contains solids with a particle size distribution property and 0 when it does not.
IPhComp Display Mass fraction of each displayed individual phase within each size interval.
All (All row, All column) Display Total composition of all solids with a particle size distribution property over all size intervals.
All (All row, per individual phase) Display Overall mass fraction of each displayed individual phase in the selected stream over all size intervals.
Dist
Size Display Size of each interval in the mesh series.
All (All column) Display Fraction of the total mass of all solids with a particle size distribution property in the selected stream that occurs in each size interval.
Dist Display Fraction of the total mass of each solid species with a particle size distribution property that occurs in each size interval.
All (All row, All column) Display Total distribution by size of all solids with a particle size distribution property. The result is 100% when the selected stream contains solids with a particle size distribution property and 0 when it does not.
All (All row, per species) Display Total distribution by size of each solid species with a particle size distribution property. The result is 100% when that species is present and 0 when it is not.
CmpDist
Components
ButtonHideComponents.png
ButtonShowComponents.png
Hides or shows the component distribution-by-size table.
Size Display Size of each interval in the mesh series.
All (All column) Display Fraction of the total mass of all solids with a particle size distribution property in the selected stream that occurs in each size interval.
CmpDist Display Fraction of each displayed solid component's total mass that occurs in each size interval.
All (All row, All column) Display Total distribution by size of all solids with a particle size distribution property.
All (All row, per component) Display Total distribution by size of each displayed solid component. The result is 100% when that component is present and 0 when it is not.
EleDist
Elements
ButtonHideElements.png
ButtonShowElements.png
Hides or shows the element distribution-by-size table.
Size Display Size of each interval in the mesh series.
All (All column) Display Fraction of the total mass of all solids with a particle size distribution property in the selected stream that occurs in each size interval.
EleDist Display Fraction of each displayed element's total mass that occurs in each size interval.
All (All row, All column) Display Total distribution by size of all solids with a particle size distribution property.
All (All row, per element) Display Total distribution by size of each displayed element. The result is 100% when that element is present and 0 when it is not.
IPhDist
IPhases
ButtonHideIPhases.png
ButtonShowIPhases.png
Hides or shows the individual phase distribution-by-size table.
Size Display Size of each interval in the mesh series.
All (All column) Display Fraction of the total mass of all solids with a particle size distribution property in the selected stream that occurs in each size interval.
IPhDist Display Fraction of each displayed individual phase's total mass that occurs in each size interval.
All (All row, All column) Display Total distribution by size of all solids with a particle size distribution property.
All (All row, per individual phase) Display Total distribution by size of each displayed individual phase. The result is 100% when that individual phase is present and 0 when it is not.
Contr
Size Display Size of each interval in the mesh series.
All (All column) Display Fraction of the total mass of all solids with a particle size distribution property in the selected stream that occurs in each size interval.
Contr Display Stream Contribution of each solid species with a particle size distribution property and size interval to the total mass of all solids with a particle size distribution property in the selected stream.
All (All row, All column) Display Total stream contribution of all solids with a particle size distribution property. The result is 100% when the selected stream contains solids with a particle size distribution property and 0 when it does not.
All (All row, per species) Display Overall stream contribution of each solid species with a particle size distribution property for all size intervals.
CmpContr
Components
ButtonHideComponents.png
ButtonShowComponents.png
Hides or shows the component stream contribution table.
Size Display Size of each interval in the mesh series.
All (All column) Display Fraction of the total mass of all solids with a particle size distribution property in the selected stream that occurs in each size interval.
CmpContr Display Stream Contribution of each displayed solid component and size interval to the total mass of all solids with a particle size distribution property in the selected stream.
All (All row, All column) Display Total stream contribution of all solids with a particle size distribution property.
All (All row, per component) Display Overall stream contribution of each displayed solid component for all size intervals.
EleContr
Elements
ButtonHideElements.png
ButtonShowElements.png
Hides or shows the element stream contribution table.
Size Display Size of each interval in the mesh series.
All (All column) Display Fraction of the total mass of all solids with a particle size distribution property in the selected stream that occurs in each size interval.
EleContr Display Stream Contribution of each displayed element and size interval to the total mass of all solids with a particle size distribution property in the selected stream.
All (All row, All column) Display Total stream contribution of all solids with a particle size distribution property.
All (All row, per element) Display Overall stream contribution of each displayed element for all size intervals.
IPhContr
IPhases
ButtonHideIPhases.png
ButtonShowIPhases.png
Hides or shows the individual phase stream contribution table.
Size Display Size of each interval in the mesh series.
All (All column) Display Fraction of the total mass of all solids with a particle size distribution property in the selected stream that occurs in each size interval.
IPhContr Display Stream Contribution of each displayed individual phase and size interval to the total mass of all solids with a particle size distribution property in the selected stream.
All (All row, All column) Display Total stream contribution of all solids with a particle size distribution property.
All (All row, per individual phase) Display Overall stream contribution of each displayed individual phase for all size intervals.

About page

This page is provides product and licensing information about the Met Dynamics Models SysCAD Add-On.

Tag (Long/Short) Input / Display Description/Calculated Variables/Options
About
HelpLink ButtonLicensingHelp.png Opens a link to the Installation and Licensing page using the system default web browser. Note: Internet access is required.
Information ButtonCopyToClipboard.png Copies Product and License information to the Windows clipboard.
Product
Name Display Met Dynamics software product name
Version Display Met Dynamics software product version number.
BuildDate Display Build date and time of the Met Dynamics Models SysCAD Add-On.
License
File ButtonBrowse.png This is used to locate a Met Dynamics software license file.
Location Display Type of Met Dynamics software license or file name and path of license file.
SiteCode Display Unique machine identifier for license authorisation.
ReqdAuth Display Authorisation level required, MD-SysCAD Full or MD-SysCAD Runtime.
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Additional notes

When the edge stream is connected, the following applies to mass splits:

  • Solid species without a particle size distribution property are split to the edge stream according to the overall mass split of the default particle size distribution species selected in the SysCAD Project Configuration
  • If the default particle size distribution species is not present in the unit feed, the overall split of all other species with particle size distributions combined is used, as determined by the model.
  • Liquids species are split between the edge and product streams in the same proportion as solid species.
  • Gas phase species report directly to the product stream without split.

See also

External links

References

  1. ↑ Morrell, S., Tondo, L.A., and Shi, F., 1997. Modelling and scale-up of high pressure grinding rolls. In Proc. XX International Mineral Processing Congress, Aachen, Germany, September 1997.
  2. ↑ Daniel, M.J. and Morrell, S., 2004. HPGR model verification and scale-up. Minerals Engineering, 17(11-12), pp.1149-1161.