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Advanced Chemistry Basins Model
Author(s) -
José Ramón Blanco,
Cathles,
Manhardt,
Meulbroek,
Tang Tang
Publication year - 2003
Language(s) - English
Resource type - Reports
DOI - 10.2172/807776
Subject(s) - kerogen , maturity (psychological) , geothermal gradient , viscosity , fractionation , petroleum engineering , source rock , mixing (physics) , structural basin , chemistry , geology , thermodynamics , mineralogy , environmental science , organic chemistry , physics , psychology , paleontology , developmental psychology , quantum mechanics , geophysics
The objective of this project is to: (1) Develop a database of additional and better maturity indicators for paleo-heat flow calibration; (2) Develop maturation models capable of predicting the chemical composition of hydrocarbons produced by a specific kerogen as a function of maturity, heating rate, etc.; assemble a compositional kinetic database of representative kerogens; (3) Develop a 4 phase equation of state-flash model that can define the physical properties (viscosity, density, etc.) of the products of kerogen maturation, and phase transitions that occur along secondary migration pathways; (4) Build a conventional basin model and incorporate new maturity indicators and data bases in a user-friendly way; (5) Develop an algorithm which combines the volume change and viscosities of the compositional maturation model to predict the chemistry of the hydrocarbons that will be expelled from the kerogen to the secondary migration pathways; (6) Develop an algorithm that predicts the flow of hydrocarbons along secondary migration pathways, accounts for mixing of miscible hydrocarbon components along the pathway, and calculates the phase fractionation that will occur as the hydrocarbons move upward down the geothermal and fluid pressure gradients in the basin; and (7) Integrate the above components into a functional model implemented on a PC or low cost workstation

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