A fluid dynamic approach to model and optimize energy flows in networked systems

HIGHLIGHTS

  • What: And also considering the topology of the energy hub under discussion, the authors focus on the particular case of nodes of the 1 × 2 type (i.e., one incoming arc and two outgoing ones). In Figures 3 and 4, the authors show some simulation results for the energy hub. In this paper, the theoretical foundations of a novel computing paradigm based on the fluid dynamic theory for modeling, analysis, and optimization of complex and networked energy systems were presented.
  • Who: Massimo de Falco and collaborators from the Scienze Aziendali-Management and Innovation Systems, University . . .

     

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