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March 25, 2026Smart Cities3 citationsOpen Access

GeoBIM for Geothermal Energy Efficiency in Buildings and Smart Cities: A Review

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HPHugo Alexandre Silva PintoLGLuis M. Ferreira GomesLPLuís Andrade Pais

Key Points

  • The central aim is to evaluate GeoBIM's effectiveness in improving energy efficiency through integrated modeling.
  • Conducted a systematic literature review following the PRISMA framework.
  • Analyzed data from the Scopus database.
  • Critically examined representative case studies related to GeoBIM and energy efficiency.
  • GeoBIM improves data quality and thermal performance assessments.
  • Supports implementation of shallow geothermal systems, including energy piles.
  • Demonstrated energy consumption reductions exceeding 40% in some urban areas.
  • Identified challenges like data interoperability and the need for standardization.

Abstract

The global drive toward energy transition and carbon neutrality requires integrated and data-driven approaches for managing buildings and smart cities. Existing urban energy assessment frameworks remain fragmented and often lack multiscale interoperability between building-level models and territorial datasets. At the same time, shallow geothermal energy is emerging as an efficient and renewable solution for sustainable heating and cooling. To address these gaps, this study examines the potential of GeoBIM, the integration of Building Information Modeling (BIM) and Geographic Information Systems (GIS), as a unified framework for multiscale energy analysis and for supporting shallow geothermal applications. A systematic literature review was conducted based on the PRISMA framework, combining a systematic literature review using the Scopus database with the critical examination of representative case studies. The results show that GeoBIM-based modeling improves data quality, enhances thermal performance assessments, and supports the implementation of shallow geothermal systems, including energy piles and district-scale ground-coupled networks. Reported applications demonstrate energy consumption reductions exceeding 40% in certain urban contexts. Several research gaps and challenges were identified, particularly data interoperability issues, lack of standardization, computational complexity, and the need for specialized training. Overall, the review indicates that GeoBIM offers a promising pathway for optimizing resources, supporting informed decision-making, and advancing resilient and sustainable smart buildings and cities.

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Cite This Study

Pinto et al. (2026) studied this question.

synapsesocial.com/papers/69c37b11b34aaaeb1a67d2e7https://doi.org/10.3390/smartcities9030054
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