Sensitivity analysis and optimization to reduce dry weight and footprint of FPSO processing plants in a high CO2 oil field
Author:
Publisher
Elsevier BV
Subject
Computer Science Applications,General Chemical Engineering
Reference55 articles.
1. Energy optimization of an FPSO operating in the Brazilian Pre-salt;Allahyarzadeh-Bigdoli;Energy,2018
2. FPSO fuel consumption and hydrocarbon liquids recovery optimization over the lifetime of a deep-water oil field;Allahyarzadeh-Bigdoli;Energy,2019
3. Oil dehydration improved by dual frequency electrostatic process;Armstrong,2007
4. A Control- and Estimation-Oriented Gravity Separator Model for Oil and Gas Applications Based upon First-Principles;Backi;Ind. Eng. Chem. Res.,2018
5. Simple methodology for sizing of absorbers for TEG (triethylene glycol) gas dehydration systems;Bahadori;Energy,2009
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