Template:Separ Model Theory
The Solid-Liquid Separator allows the user to define the solid-liquid separation with a high degree of flexibility, including the ability to allow specified species to bypass the separation calculations.
Note: To minimise input fields, some requirement combinations for solid-liquid separation necessitate swapping the OF and UF definitions and connections.
- e.g. A settler requiring a defined Recovery to OF and OF Solids Fraction may be defined by swapping the OF/UF connections and choosing "Recovery to UF" and "UF Solids Fraction".
Solids Density - Erf Cut Density Method
If this method is chosen, SysCAD uses the error function along with the solid species density, user specified SolidsCutDensity and [math]\displaystyle{ \alpha }[/math] to determine how much of each solid species is sent to the Overflow and Underflow streams.
The fraction of a particular solid species which is sent to the Overflow stream is calculated as follows:
- [math]\displaystyle{ f= \frac12 \operatorname{erfc} \, \left( \frac{\alpha (\rho - \rho_C)}{1000} \right) }[/math]
where f Calculated fraction of the solid species reporting to underflow [math]\displaystyle{ \alpha }[/math] User specified separation curve efficiency parameter or sharpness (ErfAlpha) [math]\displaystyle{ \rho }[/math] Density of each solids species [math]\displaystyle{ \rho_C }[/math] User specified Solids Cut Density
Here [math]\displaystyle{ \operatorname{erfc} (x) = 1-\operatorname{erf}(x) }[/math] is the complementary error function
Solids Density - Logistic Cut Density Method
Recovery [math]\displaystyle{ R_i }[/math] to underflow for a given solid species i:
- [math]\displaystyle{ R_i=\cfrac {\exp\left(\alpha \, \cfrac{\rho_i}{\rho_c}\right)-1} {\exp\left(\alpha \, \cfrac{\rho_i}{\rho_C}\right)+\exp(\alpha)-2} }[/math]
where [math]\displaystyle{ \rho_i }[/math] Density of solids species i [math]\displaystyle{ \alpha }[/math] User specified separation curve efficiency parameter or sharpness (Logistic Alpha) [math]\displaystyle{ \rho_C }[/math] User specified Solids Cut Density. For a species with this density, there is a 50% split to underflow.
Bypass Species
Often in a plant one, or more, of the solid species will behave differently in a unit operation to the other solid species.
The Examples below demonstrate one of the Separation methods used with the Bypass species functionality and the use of the BypassSeparCals tickbox:
| Solid-Liquid Separator Settings: | |
| SplitMethod: | Solid Separation |
| SolidsSeparMethod: | Recovery to UF |
| SolidsToUFReqd: | 95% |
| UFSolidsMethod: | UF Solids Fraction |
| UFSolidsFracReqd: | 60% |
Note: All values in the tables below are mass flows as t/h.
| Description | Total Solids | Species A(s) | Species B(s) | Liquids | Diagram |
|---|---|---|---|---|---|
| Feed | 100 | 90 | 10 | 100 | |
| Example 1: No Bypass | |||||
| Overflow | 5 | 4.5 | 0.5 | 36.67 |
|
| Underflow | 95 | 85.5 | 9.5 | 63.33 | |
| Example 2: Overflow Bypass Species B Bypass = 10% | |||||
| BypassSeparCalcs NOT enabled (Overflow satisfies requirements) |
| ||||
| Overflow | 5 | 3.64 | 1.36 | 36.67 | |
| Underflow | 95 | 86.36 | 8.64 | 63.33 | |
| BypassSeparCalcs enabled (Internal stream 1A satisfies requirements) see Note in Bypass Species | |||||
| Overflow | 5.95 | 4.5 | 1.45 | 37.3 | |
| Underflow | 94.05 | 85.5 | 8.55 | 62.7 | |
| Example 3: Underflow Bypass Species B Bypass = 10% | |||||
| BypassSeparCalcs NOT enabled (Underflow satisfies requirements) |
| ||||
| Overflow | 5 | 4.55 | 0.45 | 36.67 | |
| Underflow | 95 | 85.45 | 9.55 | 63.33 | |
| BypassSeparCalcs enabled (Internal stream 2A satisfies requirements) see Note in Bypass Species | |||||
| Overflow | 4.95 | 4.5 | 0.45 | 37.3 | |
| Underflow | 95.05 | 85.5 | 9.55 | 62.7 | |
| Example 4: Bypass to Both Species B: Bypass Fraction = 100% and Fraction to Overflow = 50% | |||||
| BypassSeparCalcs NOT enabled Under and Over flow streams satisfy requirements) |
| ||||
| Overflow | 5 | 0 | 5 | 36.67 | |
| Underflow | 95 | 90 | 5 | 63.33 | |
| BypassSeparCalcs enabled (Internal streams 1A and 2A satisfy requirements) see Note in Bypass Species. | |||||
| Overflow | 9.5 | 4.5 | 5 | 43 | |
| Underflow | 90.5 | 85.5 | 5 | 57 | |






