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Simplifications for hydronic system models in modelica
Authors:F Jorissen  M Wetter  L Helsen
Affiliation:1. Department of Mechanical Engineering, University of Leuven, Celestijnenlaan 300 - bus 2421, 3000 Leuven, Belgium;2. EnergyVille, Thor Park 8310, 3600 Genk, Belgium;3. Energy and Environmental Technologies Division, Lawrence Berkeley National Laboratory, 1 Cyclotron Rd, Berkeley, CA 90-3147, USA
Abstract:Building systems and their heating, ventilation and air conditioning flow networks, are becoming increasingly complex. Some building energy simulation tools simulate these flow networks using pressure drop equations. These flow network models typically generate coupled algebraic nonlinear systems of equations, which become increasingly more difficult to solve as their sizes increase. This leads to longer computation times and can cause the solver to fail. These problems also arise when using the equation-based modelling language Modelica and Annex 60-based libraries. This may limit the applicability of the library to relatively small problems unless problems are restructured. This paper discusses two algebraic loop types and presents an approach that decouples algebraic loops into smaller parts, or removes them completely. The approach is applied to a case study model where an algebraic loop of 86 iteration variables is decoupled into smaller parts with a maximum of five iteration variables.
Keywords:Modelica  algebraic loop  simplification  hydronic  computation time
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