Authors
Javier Bonilla, Sebastian Dormido, Francois E Cellier
Publication date
2015/3/1
Journal
Communications in nonlinear science and numerical simulation
Volume
20
Issue
3
Pages
743-768
Publisher
Elsevier
Description
The moving boundary method is an appealing approach for the design, testing and validation of advanced control schemes for evaporators and condensers. When it comes to advanced control strategies, not only accurate but fast dynamic models are required. Moving boundary models are fast low-order dynamic models, and they can describe the dynamic behavior with high accuracy. This paper presents a mathematical formulation based on physical principles for two-phase flow moving boundary evaporator and condenser models which support dynamic switching between all possible flow configurations. The models were implemented in a library using the equation-based object-oriented Modelica language. Several integrity tests in steady-state and transient predictions together with stability tests verified the models. Experimental data from a direct steam generation parabolic-trough solar thermal power plant is …
Total citations
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Scholar articles
J Bonilla, S Dormido, FE Cellier - Communications in nonlinear science and numerical …, 2015