Method for determining the origin of a mixture of constituents by spectral analysis
The invention relates to a method for determining the origin of a mixture of constituents by spectral analysis. The invention especially relates to a method for determining the concentration and origin of raw gases and/or crude oils in a mixing zone following mixing by the transport of said raw gases and/or crude oils that come from at least two different sources of extraction, said method comprising a specific spectral analysis.
1. A method for determining concentration and origin of gases and/or of oils in a mixing zone after mixing by transporting of these gases and/or oils coming from at least two different origins, which method comprises
a spectral analysis carried out in a range of wavelengths for each gas and/or oil coming from different origins,
a spectral analysis carried out in the same range of wavelengths for the gases and/or oils in a mixture,
a comparison stage among all the spectral analyses,
and a stage for highlighting by means of this comparison among these spectral analyses from a characterizing spectral range without referring to and/or without a least correlation with chemical and/or physicochemical properties of these gases and/or oils, which allows a discrimination among them of the different origins of these gases and/or oils and therefore a determination of concentration and of origin of each of the gases and/or oils in the mixture, wherein the characterizing spectral range is determined by topological spectral analysis and the spectral analyses are performed in the near infrared range (“NIR”) and wherein a selection of close neighbors of the gases and/or oils in the mixture is performed in the characterizing spectral range.
2. A method for determining concentration and origin of gases and/or of oils according to claim 1 wherein the origin constitutes an origin of extraction of the gases and/or oils.
3. A method for determining concentration and origin of gases and/or of oils according to claim 2 wherein origins of the extraction of the gases and/or oils are wells and in that the spectral analyses of the gases and/or oils coming from these wells are carried out on an extraction platform and/or on a wellhead, and/or inside the well.
4. A method for determining concentration and origin of gases and/or of oils according to claim 3 wherein the spectral analyses are carried out in situ using an optical fiber.
5. A method for determining concentration and origin of gases and/or of oils according to claim 1 wherein the spectral analyses come from spectra obtained by a same type of spectrometer.
6. A method for determining concentration and origin of gases and/or of oils according to claim 1 wherein the stage of highlighting a characterizing spectral range comprises an empirical stage based on a visual analysis of the spectra.
7. A method for determining concentration and origin of gases and/or of oils in a mixing zone after mixing by transporting of these gases and/or oils coming from at least two different origins, which method comprises:
a spectral analysis carried out in a range of wavelengths for each gas and/or oil coming from different origins,
a spectral analysis carried out in the same range of wavelengths for the gases and/or oils in a mixture,
a comparison stage among all the spectral analyses,
and a stage for highlighting by means of this comparison among these spectral analyses from a characterizing spectral range without referring to and/or without a least correlation with chemical and/or physicochemical properties of these gases and/or oils, which allows a discrimination among them of the different origins of these gases and/or oils and therefore a determination of concentration and of origin of each of the gases and/or oils in the mixture, wherein the characterizing spectral range is determined by topological spectral analysis and the spectral analyses are performed in the near infrared range (“NIR”), wherein a selection of close neighbors of the gases and/or oils in the mixture is performed in the characterizing spectral range and wherein a distance between the close neighbors of the gases and/or oils in the mixture in the characterizing spectral range determines concentration and origin of each of the gases and/or oils in the mixture.