Systems and methods for multiscale sector hydrocarbon reservoir simulation
Systems and methods for multiscale sectors based hydrocarbon reservoir simulation that include dividing a full-field reservoir model into regions and sub-regions, and iteratively assessing and reconnecting models of the sub-regions and regions in a sequential manner to generate an adjusted full-field model.
1. A method of developing a hydrocarbon reservoir, the method comprising:
determining a full-field reservoir model of a hydrocarbon reservoir, the full-field reservoir model comprising a plurality of cells that represent a full-field of the hydrocarbon reservoir;
determining regions of the full-field reservoir model, wherein determining the regions of the full-field reservoir model comprises segmenting the full-field reservoir model into the regions based on shared characteristics of the portions of the reservoir corresponding to the regions, wherein the characteristics comprise pore-volume;
determining, for each of the regions of the full-field reservoir model, sub-regions of each of the regions;
generating, based on iterative history match based adjustment of the sub-regions, the regions of the full-field reservoir model, and the full-field of the hydrocarbon reservoir, an adjusted full-field model of the hydrocarbon reservoir, the generating of the adjusted full-field model of the hydrocarbon reservoir comprising:
for each sub-region, determining an adjusted sub-region model, the determining of the adjusted sub-region model for each sub-region comprising adjusting parameters of a sub-region model for the sub-region to history match the sub-region model to historic data for the sub-region;
for each region of the full-field reservoir model, determining an adjusted region model, the determining of the adjusted region model for each region comprising adjusting parameters of a region model for the region to history match the region model for the region to historic data for the region, the region model for the region comprising the adjusted sub-region models of the sub-regions within the region;
for the full-field of the hydrocarbon reservoir, determining an adjusted full-field model, the determining of the adjusted full-field model for the full-field comprising adjusting parameters of a full-field model for the full-field to history match the full-field model for the full-field to historic parameters for the full-field, the full-field model for the full-field comprising the adjusted region models of the regions of the full-field reservoir model; and
generating, using the adjusted full-field model, a simulation of the hydrocarbon reservoir, wherein determining the regions of the full-field reservoir model comprises verifying the regions of the full-field reservoir model, the verifying comprising:
conducting, using the full-field reservoir model of the hydrocarbon reservoir, a simulation of the hydrocarbon reservoir to determine full-field fluid fluxes for the regions;
for each of the regions:
conducting, using the region model for the region, a simulation of the region to determine region fluid fluxes for the region; and
comparing the region fluid fluxes for the region to the full-field fluid fluxes for the region to verify the region fluid fluxes for the region.
2. The method of claim 1 , wherein determining sub-regions of each of the regions of the full-field reservoir model comprises segmenting the region into sub-regions based on shared characteristics of the portions of the reservoir corresponding to the sub-regions.
3. The method of claim 2 , wherein the characteristics comprise well mismatch, well density or grid size.
4. The method of claim 1 ,
wherein adjusting parameters of the sub-region model for a sub-region to history match the sub-region model to historic data for the sub-region comprises adjusting a permeability of the sub-region model for the sub-region to match an output of the sub-region model for the sub-region to observed performance data for the sub-region,
wherein adjusting parameters of the region model for a region to history match the region model for the region to historic data for the region comprises adjusting permeability of the adjusted sub-region models of the sub-regions within the region to match an output of the adjusted sub-region models of the sub-regions within the region to observed performance data for the region, and
wherein adjusting parameters of a full-field model for the full-field to history match the full-field model for the full-field to historic parameters for the full-field comprises adjusting permeability of the adjusted region models of the regions within the full-field to match an output of the adjusted region models of the regions within the full-field to observed performance data for the full-field.
5. The method of claim 4 ,
wherein adjusting permeability of the adjusted sub-region models of the sub-regions within a region comprises adjusting the permeabilities of the adjusted sub-region models of the sub-regions within the region by a given region factor, and
wherein adjusting permeability of the adjusted region models of the regions within the full-field comprises adjusting the permeabilities of the adjusted region models of the regions within the full-field by a given full-field factor.
6. The method of claim 1 , further comprising generating a field development plan (FDP) for the hydrocarbon reservoir based on the simulation of the hydrocarbon reservoir.
7. The method of claim 1 , further comprising:
identifying well drilling parameters based on the simulation of the hydrocarbon reservoir; and
drilling a well in the hydrocarbon reservoir based on the well drilling parameters.
8. The method of claim 1 , further comprising:
identifying well operating parameters based on the simulation of the hydrocarbon reservoir; and
operating a well in the hydrocarbon reservoir based on the well operating parameters.
9. A non-transitory computer readable storage medium comprising program instructions stored thereon that are executable by a processor to perform the following operations for developing a hydrocarbon reservoir:
determining a full-field reservoir model of a hydrocarbon reservoir, the full-field reservoir model comprising a plurality of cells that represent a full-field of the hydrocarbon reservoir;
determining regions of the full-field reservoir model, wherein determining the regions of the full-field reservoir model comprises segmenting the full-field reservoir model into the regions based on shared characteristics of the portions of the reservoir corresponding to the regions, wherein the characteristics comprise pore-volume;
determining, for each of the regions of the full-field reservoir model, sub-regions of each of the regions;
generating, based on iterative history match based adjustment of the sub-regions, the regions of the full-field reservoir model, and the full-field of the hydrocarbon reservoir, an adjusted full-field model of the hydrocarbon reservoir, the generating of the adjusted full-field model of the hydrocarbon reservoir comprising:
for each sub-region, determining an adjusted sub-region model, the determining of the adjusted sub-region model for each sub-region comprising adjusting parameters of a sub-region model for the sub-region to history match the sub-region model to historic data for the sub-region;
for each region of the full-field reservoir model, determining an adjusted region model, the determining of the adjusted region model for each region comprising adjusting parameters of a region model for the region to history match the region model for the region to historic data for the region, the region model for the region comprising the adjusted sub-region models of the sub-regions within the region;
for the full-field of they hydrocarbon reservoir, determining an adjusted full-field model, the determining of the adjusted full-field model for the full-field comprising adjusting parameters of a full-field model for the full-field to history match the full-field model for the full-field to historic parameters for the full-field, the full-field model for the full-field comprising the adjusted region models of the regions of the full-field reservoir model; and
generating, using the adjusted full-field model, a simulation of the hydrocarbon reservoir, wherein determining the regions of the full-field reservoir model comprises verifying the regions of the full-field reservoir model, the verifying comprising:
conducting, using the full-field reservoir model of the hydrocarbon reservoir, a simulation of the hydrocarbon reservoir to determine full-field fluid fluxes for the regions;
for each of the regions:
conducting, using the region model for the region, a simulation of the region to determine region fluid fluxes for the region; and
comparing the region fluid fluxes for the region to the full-field fluid fluxes for the region to verify the region fluid fluxes for the region.
10. The medium of claim 9 , wherein determining sub-regions of a each of the regions of the full-field reservoir model comprises segmenting the region into sub-regions based on shared characteristics of the portions of the reservoir corresponding to the sub-regions.
11. The medium of claim 10 , wherein the characteristics comprise well mismatch, well density or grid size.
12. The medium of claim 9 ,
wherein adjusting parameters of the sub-region model for a sub-region to history match the sub-region model to historic data for the sub-region comprises adjusting a permeability of the sub-region model for the sub-region to match an output of the sub-region model for the sub-region to observed performance data for the sub-region,
wherein adjusting parameters of the region model for a region to history match the region model for the region to historic data for the region comprises adjusting permeability of the adjusted sub-region models of the sub-regions within the region to match an output of the adjusted sub-region models of the sub-regions within the region to observed performance data for the region, and
wherein adjusting parameters of a full-field model for the full-field to history match the full-field model for the full-field to historic parameters for the full-field comprises adjusting permeability of the adjusted region models of the regions within the full-field to match an output of the adjusted region models of the regions within the full-field to observed performance data for the full-field.
13. The medium of claim 12 ,
wherein adjusting permeability of the adjusted sub-region models of the sub-regions within a region comprises adjusting the permeabilities of the adjusted sub-region models of the sub-regions within the region by a given region factor, and
wherein adjusting permeability of the adjusted region models of the regions within the full-field comprises adjusting the permeabilities of the adjusted region models of the regions within the full-field by a given full-field factor.
14. The medium of claim 9 , further comprising generating a field development plan (FDP) for the hydrocarbon reservoir based on the simulation of the hydrocarbon reservoir.
15. The medium of claim 9 , further comprising:
identifying well drilling parameters based on the simulation of the hydrocarbon reservoir; and
drilling a well in the hydrocarbon reservoir based on the well drilling parameters.
16. The medium of claim 9 , further comprising:
identifying well operating parameters based on the simulation of the hydrocarbon reservoir; and
operating a well in the hydrocarbon reservoir based on the well operating parameters.
17. A hydrocarbon reservoir development system comprising:
a hydrocarbon reservoir control system comprising non-transitory computer readable storage medium comprising program instructions stored thereon that are executable by a processor to perform the following operations for developing a hydrocarbon reservoir:
determining a full-field reservoir model of a hydrocarbon reservoir, the full-field reservoir model comprising a plurality of cells that represent a full-field of the hydrocarbon reservoir;
determining regions of the full-field reservoir model, wherein determining the regions of the full-field reservoir model comprises segmenting the full-field reservoir model into the regions based on shared characteristics of the portions of the reservoir corresponding to the regions, wherein the characteristics comprise pore-volume;
determining, for each of the regions of the full-field reservoir model, sub-regions of the region;
determining, for each of the regions, sub-regions of each of the regions;
generating, based on iterative history match based adjustment of the sub-regions, the regions of the full-field reservoir model, and the full-field of the hydrocarbon reservoir, an adjusted full-field model of the hydrocarbon reservoir, the generating of the adjusted full-field model of the hydrocarbon reservoir comprising:
for each sub-region, determining an adjusted sub-region model, the determining of the adjusted sub-region model for each sub-region comprising adjusting parameters of a sub-region model for the sub-region to history match the sub-region model to historic data for the sub-region;
for each region of the full-field reservoir model, determining an adjusted region model, the determining of the adjusted region model for each region comprising adjusting parameters of a region model for the region to history match the region model for the region to historic data for the region, the region model for the region comprising the adjusted sub-region models of the sub-regions within the region;
for the full-field of the hydrocarbon reservoir, determining an adjusted full-field model, the determining of the adjusted full-field model for the full-field comprising adjusting parameters of a full-field model for the full-field to history match the full-field model for the full-field to historic parameters for the full-field, the full-field model for the full-field comprising the adjusted region models of the regions of the full-field reservoir model; and
generating, using the adjusted full-field model, a simulation of the hydrocarbon reservoir, wherein determining the regions of the full-field reservoir model comprises verifying the regions of the full-field reservoir model, the verifying comprising:
conducting, using the full-field reservoir model of the hydrocarbon reservoir, a simulation of the hydrocarbon reservoir to determine full-field fluid fluxes for the regions;
for each of the regions:
conducting, using the region model for the region, a simulation of the region to determine region fluid fluxes for the region; and
comparing the region fluid fluxes for the region to the full-field fluid fluxes for the region to verify the region fluid fluxes for the region.
18. The system of claim 17 , wherein determining sub-regions of each of the regions of the full-field reservoir model comprises segmenting the region into sub-regions based on shared characteristics of the portions of the reservoir corresponding to the sub-regions.
19. The system of claim 18 , wherein the characteristics comprise well mismatch, well density or grid size.
20. The system of claim 17 ,
wherein adjusting parameters of the sub-region model for a sub-region to history match the sub-region model to historic data for the sub-region comprises adjusting a permeability of the sub-region model for the sub-region to match an output of the sub-region model for the sub-region to observed performance data for the sub-region,
wherein adjusting parameters of the region model for a region to history match the region model for the region to historic data for the region comprises adjusting permeability of the adjusted sub-region models of the sub-regions within the region to match an output of the adjusted sub-region models of the sub-regions within the region to observed performance data for the region, and
wherein adjusting parameters of a full-field model for the full-field to history match the full-field model for the full-field to historic parameters for the full-field comprises adjusting permeability of the adjusted region models of the regions within the full-field to match an output of the adjusted region models of the regions within the full-field to observed performance data for the full-field.
21. The system of claim 20 ,
wherein adjusting permeability of the adjusted sub-region models of the sub-regions within a region comprises adjusting the permeabilities of the adjusted sub-region models of the sub-regions within the region by a given region factor, and
wherein adjusting permeability of the adjusted region models of the regions within the full-field comprises adjusting the permeabilities of the adjusted region models of the regions within the full-field by a given full-field factor.
22. The system of claim 17 , further comprising generating a field development plan (FDP) for the hydrocarbon reservoir based on the simulation of the hydrocarbon reservoir.
23. The system of claim 17 , further comprising:
identifying well drilling parameters based on the simulation of the hydrocarbon reservoir; and
drilling a well in the hydrocarbon reservoir based on the well drilling parameters.
24. The system of claim 17 , further comprising:
identifying well operating parameters based on the simulation of the hydrocarbon reservoir; and
operating a well in the hydrocarbon reservoir based on the well operating parameters.