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Translating building information modeling to building energy modeling using model view definition.

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This study introduces BIM2BEM, a novel method for translating Building Information Modeling (BIM) to Building Energy Modeling (BEM) using Modelica. This approach ensures seamless data transfer for enhanced building energy simulations.

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Area of Science:

  • Building Science
  • Computational Engineering
  • Energy Modeling

Background:

  • Building Information Modeling (BIM) and Building Energy Modeling (BEM) are critical for sustainable design but often lack interoperability.
  • Seamless data exchange between BIM and BEM is essential for accurate energy performance analysis.

Purpose of the Study:

  • To develop and validate a new approach for translating BIM data into a format suitable for Building Energy Modeling (BEM) using Modelica.
  • To establish a standardized method for data exchange, facilitating the integration of BIM and BEM workflows.

Main Methods:

  • Developed a data modeling method to create a Model View Definition (MVD) including a process model and class diagram.
  • Implemented an intermediate class package for direct data translation from BIM (Revit) to Modelica-based BEM (ModelicaBEM).
  • Validated the approach through three test cases comparing BIM-generated Modelica models with manually created BEM models.

Main Results:

  • Successfully demonstrated the translation of BIM models into ModelicaBEM models.
  • Enabled the development of a system interface (Revit2Modelica) for automated BIM data translation.
  • Facilitated the reuse of original BIM data in energy simulations without manual re-entry or import/export issues.

Conclusions:

  • The BIM2BEM approach provides a robust solution for integrating BIM and BEM workflows.
  • The developed MVD and intermediate class package streamline the translation process for thermal simulations.
  • This method enhances the efficiency and accuracy of building energy performance analysis by leveraging existing BIM data.