Leveraging Digital Twin for Sustainability Assessment of an Educational Building
Использование цифрового двойника для оценки устойчивости образовательного здания
2021-01-06
SCID: 54.1/gfpz2dhu
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Internet of Thingsdigital twineducational buildingindoor air qualitysustainability assessment
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Abstract (AI)
The EU Green Deal, beginning in 2019, promoted a roadmap for operating the transition to a sustainable EU economy by turning climate issues and environmental challenges into opportunities in all policy areas and making the transition fair and inclusive for all. Focusing on the built environment, the voluntary adoption of rating systems for sustainability assessment is growing, with an increasing market value, and is perceived as a social responsibility both by public administration and by private companies. This paper proposes a framework for shifting from a static sustainability assessment to a digital twin (DT)-based and Internet of Things (IoT)-enabled dynamic approach. This new approach allows for a real-time evaluation and control of a wide range of sustainability criteria with a user-centered point of view. A pilot building, namely, the eLUX lab cognitive building in the University of Brescia, was used to test the framework with some sample applications. The educational building accommodates the daily activities of the engineering students by constantly interacting with the sensorized asset monitoring indoor comfort and air quality conditions as well as the energy behavior of the building in order to optimize the trade-off with renewable energy production. The framework is the cornerstone of a methodology exploiting the digital twin approach to support the decision processes related to sustainability through the whole building’s life cycle.
Key Findings
1
A pilot implementation in the University of Brescia’s eLUX lab monitors indoor comfort, air quality, and building energy behavior.
2
The framework enables real-time evaluation and control of multiple sustainability criteria from a user-centered perspective.
3
The framework is intended to support sustainability-related decisions throughout the building’s entire life cycle.
4
The monitored building supports optimization of the trade-off between energy consumption and renewable energy production.
5
The paper proposes replacing static building sustainability assessments with a dynamic, digital-twin- and IoT-enabled framework.
Research Object
the eLUX lab cognitive educational building at the University of Brescia
Research Subject
dynamic, user-centered sustainability assessment and control across the building life cycle, including indoor comfort, air quality, energy behavior, and its trade-off with renewable energy production
Publication Details
Publication Date
2021-01-06
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