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Workshop 1.3 - Calculate MeABP of a Given Assay Workshop 1.2 - Extrapolate an Incomplete Distillation Curve Workshop 1.1 Interconvert Distillation Curves Written for chemical engineers, process engineers, and engineers for measurement and control, this resource explores the advanced simulation tools and techniques that are available to support experienced and aid new operators and engineers.ĬHARACTERIZATION, AND PHYSICAL AND THERMODYNAMIC PROPERTIES OF OIL FRACTIONSīoiling Point Based Pseudocomponent Generation Discusses modeling FCC, catalytic reforming and hydroprocessing units Uses the key concepts of fractionation lumps and physical properties to develop detailed models and workflows for atmospheric (CDU) and vacuum (VDU) distillation units Offers the basic information of thermodynamics and physical property predictions of hydrocarbon components in the context of process modeling In addition, the authors offer information on applying models in an overall refinery context through refinery planning based on linear programming. It provides a sound and informed basis to understand and exploit plant phenomena to improve yield, consistency, and performance.
PETROLEUM METHODS IN ASPEN HYSYS HOW TO
The text shows how to filter through the extensive data available at the refinery and using plant data to begin calibrating available models and extend the models to include key fractionation sub-models. The authors - three experts on the topic - outline the procedures and include the key data required for building reaction and fractionation models with commercial software. The text introduces the basics of dealing with the thermodynamics and physical property predictions of hydrocarbon components in the context of process modeling. Petroleum Refinery Process Modeling offers a thorough review of how to quantitatively model key refinery reaction and fractionation processes. A comprehensive review of the theory and practice of the simulation and optimization of the petroleum refining processes