REPRODUCTION OF THE MEAN, VARIANCE, AND VARIOGRAM MODEL IN SPECTRAL SIMULATION

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dc.contributor.author Yao T.
dc.date.accessioned 2022-09-23T00:35:23Z
dc.date.available 2022-09-23T00:35:23Z
dc.date.issued 2004
dc.identifier https://elibrary.ru/item.asp?id=6617789
dc.identifier.citation Mathematical Geology, 2004, 36, 4, 487-506
dc.identifier.issn 0882-8121
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/38701
dc.description.abstract The application of spectral simulation is gaining acceptance because it honors the spatial distribution of petrophysical properties, such as reservoir porosity and shale volume. While it has been widely assumed that spectral simulation will reproduce the mean and variance of the important properties such as the observed net/gross ratio or global average of porosity, this paper shows the traditional way of implementing spectral simulation yields a mean and variance that deviates from the observed mean and variance. Some corrections (shift and rescale) could be applied to generate geologic models yielding the observed mean and variance; however, this correction implicitly rescales the input variogram model, so the variogram resulting from the generated cases has a higher sill than the input variogram model. Therefore, the spectral simulation algorithm cannot build geologic models honoring the desired mean, variance, and variogram model simultaneously, which is contrary to the widely accepted assumption that spectral simulation can reproduce all the target statistics. However, by using Fourier transform just once to generate values at all the cells instead of visiting each cell sequentially, spectral simulation does reproduce the observed variogram better than sequential Gaussian simulation. That is, the variograms calculated from the generated geologic models show smaller fluctuations around the target variogram. The larger the generated model size relative to the variogram range, the smaller the observed fluctuations.
dc.subject FOURIER TRANSFORM
dc.subject FOURIER COEFFICIENT
dc.subject DENSITY SPECTRUM
dc.subject SEQUENTIAL-GAUSSIAN SIMULATION
dc.subject FLUCTUATION
dc.title REPRODUCTION OF THE MEAN, VARIANCE, AND VARIOGRAM MODEL IN SPECTRAL SIMULATION
dc.type Статья


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