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(D4.9) Concept and impact validation for the case-study buildings based on the virtual test-bed
(D4.9) Concept and impact validation for the case-study buildings based on the virtual test-bed
In this report, the performance of the hybridGEOTABS concept is assessed by quantifying the savings obtained by using hybridGEOTABS combined with Rule Based Controls and Model Predictive Controls, as compared to traditional heating/cooling and control strategies. This quantification is done using dynamic building energy simulations of case‑study buildings in a virtual test‑bed. The energy, cost and environmental performance are assessed. The deliverable documents the methodology, analysis and resulting conclusions of this assessment.
This project has received funding from the European Union's Horizon 2020 research and innovation programme under grant agreement No. 723649
- Ghent University Belgium
- KU Leuven Belgium
- Czech Technical University in Prague Czech Republic
Modelica, case-study buildings, H2020, LCC, Dymola, energy performance, hybrid systems, HVAC, GEOTABS, renewable energy, CO2-emission, environmental performance, BES-models, MPC, energy saving, geothermal energy, hybridGEOTABS, EU, control
Modelica, case-study buildings, H2020, LCC, Dymola, energy performance, hybrid systems, HVAC, GEOTABS, renewable energy, CO2-emission, environmental performance, BES-models, MPC, energy saving, geothermal energy, hybridGEOTABS, EU, control
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