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Some models of hydrocarbon reservoirs have used these kinds of natural fractures.
It is also valuable for validating basic chemical kinetic models of hydrocarbon oxidation.
The highly precise nature of these measurements is expected to impose critical constraints on chemical kinetic models of hydrocarbon combustion.
A kinetic correlation was developed that is suitable for use in kinetic modeling, allowing antioxidant chemistry to be included in large mechanistic models of hydrocarbon oxidation.
We use the relative change in viscosity of product compared to the feed defined by delta_{mu } = frac{{mu_{0} left( T right) - mu left( T right)}}{{mu_{0} (T)}} (A1)The validity of this approximation can be checked against various models of hydrocarbon mixture viscosity temperature response such as the Eyring model (Mehrotra 1995).
This research focuses on providing the petroleum reservoir engineering community with robust models of hydrocarbon density and viscosity at the extreme temperature and pressure conditions (up to 533 K and 276 MPa, respectively) characteristic of ultra-deep reservoirs, such as those associated with the deepwater wells in the Gulf of Mexico.
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In this paper, the author presented a novel general model of hydrocarbon generation and evolution with soluble and insoluble organic matter both contributing to hydrocarbon generation.
By designing experimental methods, the modeling of hydrocarbon selectivity and CO conversion of the Fischer Tropsch synthesis over Co-based catalyst on a SiO2 support has been investigated in this study.
We built a 1D photochemical model with an up to date neutral chemistry to investigate the significance of these uncertainties on the modeling of hydrocarbon photochemistry of Titan's atmosphere.
These results indicate that ReaxFF MD simulations can give an atomistic description of the initiation mechanism and product distributions of pyrolysis and combustion for hydrocarbon fuels, and can be further used to provide molecular based robust kinetic reaction mechanism for chemical kinetic modeling of hydrocarbon fuels.
Quantitative estimates of lateral continuity and spatial variations of rudist bodies have a significant potential for reservoir modelling of hydrocarbon-bearing rudist-rich platform carbonates.
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