CONDITIONING CHANNEL MEANDERS TO WELL OBSERVATIONS

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dc.contributor.author Oliver D.S.
dc.date.accessioned 2021-04-16T05:17:19Z
dc.date.available 2021-04-16T05:17:19Z
dc.date.issued 2002
dc.identifier https://www.elibrary.ru/item.asp?id=950403
dc.identifier.citation Mathematical Geology, 2002, 34, 2, 185-201
dc.identifier.issn 0882-8121
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/27919
dc.description.abstract Assessment of uncertainty in the performance of fluvial reservoirs often requires the ability to generate realizations of channel sands that are conditional to well observations. For channels with low sinuosity this problem has been effectively solved. When the sinuosity is large, however, the standard stochastic models for fluvial reservoirs are not valid, because the deviation of the channel from a principal direction line is multivalued. In this paper, I show how the method of randomized maximum likelihood can be used to generate conditional realizations of channels with large sinuosity. In one example, a Gaussian random field model is used to generate an unconditional realization of a channel with large sinuosity, and this realization is then conditioned to well observations. Channels generated in the second approach are less realistic, but may be sufficient for modeling reservoir connectivity in a realistic way. In the second example, an unconditional realization of a channel is generated by a complex geologic model with random forcing. It is then adjusted in a meaningful way to honor well observations. The key feature in the solution is the use of channel direction instead of channel deviation as the characteristic random function describing the geometry of the channel.
dc.subject CONDITIONAL SIMULATION
dc.subject GEOLOGIC MODEL
dc.subject FLUVIAL MODEL
dc.subject STOCHASTIC MODEL
dc.subject UNCERTAINTY
dc.title CONDITIONING CHANNEL MEANDERS TO WELL OBSERVATIONS
dc.type Статья


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