KRWR

Recognised by the OPM Flow parserPROPS

Part of the ENDPOINT_SPECIFIERS keyword family in the OPM Flow parser.

KRWR defines the scaling parameter at the drainage critical oil to water saturation value (SOWCR), for the drainage water relative permeability curve, for all the cells in the model via an array. The ENDSCALE keyword in the RUNSPEC section should be activated to enable end-point scaling and the use of this keyword. The SCALCERS keyword in the PROPS section defines the options used in the re-scaling process, the options are two point scaling and three point scaling.

Notes:

The number of entries should correspond to the NX x NY x NZ parameters on the DIMENS keyword in the RUNSPEC section, unless the BOX keyword defines a sub area of the grid, in which case the total number of entries should correspond to the number of cells defined by the BOX statement.

The keyword is terminated by a “/”.

Note this the directional independent version of the keyword used with the end-point scaling option. If directional end-point scaling has been activated then the KRWRX±, KRWRY± and KRWRZ± series of the keywords should be used.

When the KRWR keyword is present in the input deck then the scaling matches the relative permeability at the critical saturation of the displacing phase.

If three point scaling option has been selected via the SCALECRS keyword in the PROPS section the critical displacing phase is defined as:

No

Phases Present

Critical Saturation

1

Gas-Oil

S critical = 1.0 – SOWCR - SGL

2

Gas-Oil-Water

S critical = 1.0 – SOWCR - SGL

3

Gas-Water

S critical = 1.0 – SGCR

Table 8.86: Critical Displacement Relationships

End-point scaling allows the entered relative permeability functions to be re-scaled based on the saturation end-points allocated to each cell by the SWL, SWCR, SWU, SGL, SGCR, SGU, SOWCR, and SOGCR saturation grid arrays for the saturation end-points, In addition end-point scaling may be directional dependent in which case the directional dependent versions of the aforementioned arrays should be used, that is SWUX, SWUY and SWUZ instead of SWU, There is also the facility to make the directional end-point scaling reversible or non-reversible and if the non-reversible option is selected the non-reversible versions of the aforementioned arrays should be used, that is SWUX, SWUX-, SWUY, SWUY-, SWUZ and SWUZ-, instead of the SWU keyword.

End-point scaling also allows the entered relative permeability functions to be scale on the relative permeability values using the KRG, KRGR, KRWR, KRORG, KRORW, KRWR and KRWRR relative permeability grid cell arrays for the relative permeability end-point data. In addition end-point scaling may be directional dependent in which case the directional dependent versions of the aforementioned arrays should be used, that is KRWRX, KRWRY and KRWRZ instead of KRWR, There is also the facility to make the directional end-point scaling reversible or non-reversible and if the non-reversible option is selected the non-reversible versions of the aforementioned arrays should be used, that is KRWRX, KRWRX-, KRWRY, KRWRY-, KRWRZ and KRWRZ-, instead of the KRWR keyword.

If the hysteresis model option has been activated on the SATOPTS keyword in the RUNSPEC section, then the equivalent imbibition arrays suffixed with the letter I, for example IKRWR, can be used to define the KRWR for the relative permeability imbibition tables.

Parameters

No.NameDescriptionFieldMetricLabDefault
1KRWRKRWR is an array of positive real numbers which are greater than zero and less than or equal to 1.0, that are the assigned scaling KRWR values for each cell in the model. Repeat counts may be used, for example 50*1.000.dimensionlessdimensionlessdimensionlessTaken from cell allocated relative permeability table.

Example

The first example defines an input box for the whole grid and for layers one to three, for layer one KRWR is set equal to 0.755, for layer two KRWR equals 0.775, and for layer three KRWR equals 0.800.
--
-- DEFINE INPUT BOX FOR EDITING INPUT ARRAYS (NX=100, NY=100)
--
-- ---------- BOX ---------
-- I1 I2 J1 J2 K1 K2
BOX
1* 1* 1* 1* 1 3 / DEFINE BOX AREA
--
-- SET KRWR VALUES FOR THREE LAYERS IN THE MODEL
--
KRWR
10000*0.755 10000*0.775 10000*0.800 /
--
-- DEFINE END OF INPUT BOX EDITING OF INPUT ARRAYS
--
ENDBOX
The next example does exactly the same thing using the EQUALS keyword instead.
--
-- ARRAY CONSTANT ---------- BOX ---------
-- I1 I2 J1 J2 K1 K2
EQUALS
KRWR 0.7550 1* 1* 1* 1* 1 1 / KRWR FOR LAYER 1
KRWR 0.7750 1* 1* 1* 1* 2 2 / KRWR FOR LAYER 2
KRWR 0.8000 1* 1* 1* 1* 3 3 / KRWR FOR LAYER 3
/
| No | Phases Present | Critical Saturation            |
|----|----------------|--------------------------------|
| 1  | Gas-Oil        | S critical = 1.0 – SOWCR - SGL |
| 2  | Gas-Oil-Water  | S critical = 1.0 – SOWCR - SGL |
| 3  | Gas-Water      | S critical = 1.0 – SGCR        |

Manual source: parts/chapters/subsections/8.3/KRWR.fodt