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- W2186804931 abstract "This work was carried out in order to analyze the temperature distribution in an insulated pipeline during its restart (transient state), work (steady state) and shutdown, and estimate the time required to reach the critical temperatures of approximately 40 and 25 oC during the shutdown. Simulations with the Finite Element Method (FEM) were performed with COMSOL Multiphysics ® to compare numerical results with those obtained experimentally and numerically in the literature. Therefore, one expects to find values consistent with the actual obtained in the subsea oil industry, and characterize insulated pipelines in service conditions. Computational Methods: The computational geometry, finite element mesh and boundary conditions of the improved model used to study the thermal insulation pipe multiple layers are presented in Figure 2. This model follows the conditions described by Bouchonneau et al. (2010), which are based on following hypotheses: internal convection between the air and the inner surface of the prototype, external convection between the water and the pipeline, hydrostatic pressure of the water on external surfaces, and internal heat flux. Besides, the model consider the presence of the connector to link the experimental sensors, which lies at the center of the PTFE cap and is responsible for much of the longitudinal heat loss." @default.
- W2186804931 created "2016-06-24" @default.
- W2186804931 creator A5051588143 @default.
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- W2186804931 date "2014-01-01" @default.
- W2186804931 modified "2023-09-27" @default.
- W2186804931 title "Evaluation of the Shutdown Time of Subsea Pipeline for Oil Transportation" @default.
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