The building sector in the European Union significantly impacts energy consumption and greenhouse gas emissions. The EU’s Horizon 2050 initiative sets ambitious goals to reduce these impacts through enhanced building renovation rates. The CoE HiDALGO2 supports this initiative by developing high-performance computing solutions, specifically through the Urban Building pilot application, which utilizes advanced CI/CD methodologies to streamline simulation and deployment across various computational platforms, such as the EuroHPC JU supercomputers. The present work provides an overview of the Ktirio Urban Building framework (KUB), starting with its workflow and a description of some of the main ingredients of the software stack, it then discusses some results performed on EuroHPC JU supercomputers using an innovative CI/CD.

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Ktirio Urban Building: A Computational Framework for City Energy Simulations Enhanced by CI/CD Innovations on EuroHPC Systems

  • Luca Berti,
  • Vincent Chabannes,
  • Gwennolé Chappron,
  • Javier Cladellas,
  • Abdoulaye Diallo,
  • Maryam Maslek Elayam,
  • Philippe Pinçon,
  • Christophe Prud’homme

摘要

The building sector in the European Union significantly impacts energy consumption and greenhouse gas emissions. The EU’s Horizon 2050 initiative sets ambitious goals to reduce these impacts through enhanced building renovation rates. The CoE HiDALGO2 supports this initiative by developing high-performance computing solutions, specifically through the Urban Building pilot application, which utilizes advanced CI/CD methodologies to streamline simulation and deployment across various computational platforms, such as the EuroHPC JU supercomputers. The present work provides an overview of the Ktirio Urban Building framework (KUB), starting with its workflow and a description of some of the main ingredients of the software stack, it then discusses some results performed on EuroHPC JU supercomputers using an innovative CI/CD.