Fast Offshore Wells Model (FOWM): A practical dynamic model for multiphase oil production systems in deepwater and ultra-deepwater scenarios
Autor: | Fabio C. Diehl, Thiago K. Anzai, Giovani G. Gerevini, Cassiano Ranzan, Vinicius Ramos Rosa, Oscar F. von Meien, Marcelo Farenzena, Mario Cesar Mello Massa de Campos, Cristina S. Almeida, Saul S. Neto, Jorge Otávio Trierweiler, Filipe Reolon |
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Rok vydání: | 2017 |
Předmět: |
Petroleum production
0209 industrial biotechnology Engineering Petroleum engineering business.industry General Chemical Engineering Terrain 02 engineering and technology Computer Science Applications 020901 industrial engineering & automation 020401 chemical engineering Oil production Limit cycle Limit (music) Production (economics) Submarine pipeline 0204 chemical engineering business Casing |
Zdroj: | Computers & Chemical Engineering. 99:304-313 |
ISSN: | 0098-1354 |
DOI: | 10.1016/j.compchemeng.2017.01.036 |
Popis: | This work describes a simplified dynamic model for control and real time applications in offshore deepwater and ultra-deepwater petroleum production systems. Literature about simplified dynamical models, capable of cover the global architecture of an offshore multiphase production system, is scarce. Hence, the proposed model integrates and adapts partial models available in the literature in order to generate a single model of the whole system. The model, designed to represent slugs generated by the casing heading and terrain/riser concomitantly, was evaluated by comparison with a traditional commercial simulator and was also implemented in two actual production systems. As a result, the model showed the capability of capturing complex dynamical behaviors, such as limit cycles, demonstrated to be numerically more stable than similar models in literature, fast enough to be used in real time applications and proved to be adherent to the commercial simulator and actual operating data from Petrobras production systems. |
Databáze: | OpenAIRE |
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