Method for estimating depth of hydrocarbon reservoir
A method of estimating a depth of a hydrocarbon-water contact of a hydrocarbon reservoir in a structure. The method may include the steps of analysing one or more samples obtained from the structure to generate a relationship relating resistivity to hydrocarbon-water contact depth, obtaining a resistivity measurement of the hydrocarbon reservoir, and estimating the hydrocarbon-water contact depth from the relationship relating resistivity to hydrocarbon-water contact depth and the resistivity measurement of the hydrocarbon reservoir.
1 . A method of estimating a depth of a hydrocarbon-water contact of a hydrocarbon reservoir in a structure, the method comprising:
a. analysing one or more samples obtained from the structure to generate a relationship relating resistivity to hydrocarbon-water contact depth;
b. obtaining a resistivity measurement of the hydrocarbon reservoir; and
c. estimating the hydrocarbon-water contact depth from the relationship relating resistivity to hydrocarbon-water contact depth and the resistivity measurement of the hydrocarbon reservoir;
wherein analysing one or more samples comprises:
obtaining images of a pore structure of the one or more samples; and
obtaining one or more capillary pressure measurements of the one or more samples, the method further comprising:
d. using the images and the one or more capillary pressure measurements to calibrate a relationship between at least one of a saturation and capillary pressure or in a resistivity model of at least a part of the structure;
e. using the estimated hydrocarbon-water contact depth to estimate a volume of the hydrocarbon reservoir;
f. using the estimated volume of the hydrocarbon reservoir to determine whether to extract hydrocarbons from the hydrocarbon reservoir; and
g. drilling, based on the hydrocarbon-water contact depth, at least one of an appraisal well associated with exploring for hydrocarbons or a production well associated with extracting hydrocarbons from a hydrocarbon reservoir with the production well.
2 . A method as claimed in claim 1 , further comprising obtaining the one or more samples from the structure.
3 . A method as claimed in claim 1 , step a. comprising analysing a plurality of samples.
4 . A method as claimed in claim 3 , wherein the plurality of samples are obtained from at least two different depths.
5 . A method as claimed in claim 1 , wherein the one or more samples comprise a core plug, a side wall core, and/or a sample from a cutting.
6 . A method as claimed in claim 1 , wherein generating a relationship relating resistivity to hydrocarbon-water contact depth comprises:
generating a model of at least a part of the structure;
relating resistivity to hydrocarbon saturation;
relating hydrocarbon saturation to capillary pressure; and/or
relating capillary pressure to the hydrocarbon-water contact depth.
7 . A method as claimed in claim 6 , wherein the model is a pore scale model.
8 . A method as claimed in claim 6 , wherein generating a model of at least a part of the structure comprises estimating a formation resistivity factor of at least a part of the structure and/or an absolute permeability of at least a part of the structure.
9 . A method as claimed in claim 6 , wherein generating a model of at least a part of the structure comprises simulating:
the resistivity of at least a part of the structure as a function of saturation; and/or
a relationship between saturation and capillary pressure in at least a part of the structure.
10 . A method as claimed in claim 1 , wherein the relationship relating resistivity to hydrocarbon-water contact depth comprises a function or set of values relating resistivity to hydrocarbon-water contact depth.
11 . A non-transitory computer readable medium comprising computer readable instructions that, when run on a computer, is configured to cause one or more processers to perform the method of claim 1 .
12 . A system comprising a non-transitory computer readable medium arranged to perform the method of claim 1 .