2016International Journal of VentilationRequires access

Monitoring Results and Optimization of a Façade Integrated Ventilation Concept for Building Retrofit

Fabien Coydon, Maxime Duran, Arnulf Dinkel, Sebastian Herkel

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Abstract

To simplify the installation of necessary ventilation systems in building energy retrofits, façade integrated ventilation combined with semi-prefabrication of envelope components is a promising solution. By speeding up the mounting time, a significant cost reduction is possible compared to a standard retrofit process.An office building in Freiburg was retrofitted in 2012 applying a demonstrator of this innovative concept. Prefabricated window modules integrating air inlets and outlets, façade integrated air ducts and a heat and moisture recovery ventilation device were implemented. A long term monitoring exercise was set up including energy, temperature, CO2 and humidity measurements. The results of this measurement campaign and an analysis of the system performance are presented, focussing on the influence of façade integrated air ducts on the energy performance of the whole system and on thermal comfort. A new specific definition of the global energy efficiency of façade integrated ventilation systems is proposed and used to evaluate the performance of the system.On the basis of the monitoring results, a simulation model was defined and used to optimize the integration concept for façade ventilation by testing different geometries and materials. The latest developments of the integration system are presented such as the next step of this work which is the implementation of the system on the façades of a multifamily building in Frankfurt.

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To simplify the installation of necessary ventilation systems in building energy retrofits, façade integrated ventilation combined with semi-prefabrication of envelope components is a promising solution. By speeding up the mounting time, a significant cost reduction is possible compared to a standard retrofit process.An office building in Freiburg was retrofitted in 2012 applying a demonstrator of this innovative concept. Prefabricated window modules integrating air inlets and outlets, façade integrated air ducts and a heat and moisture recovery ventilation device were implemented. A long term monitoring exercise was set up including energy, temperature, CO2 and humidity measurements. The results of this measurement campaign and an analysis of the system performance are presented, focussing on the influence of façade integrated air ducts on the energy performance of the whole system and on thermal comfort. A new specific definition of the global energy efficiency of façade integrated ventilation systems is proposed and used to evaluate the performance of the system.On the basis of the monitoring results, a simulation model was defined and used to optimize the integration concept for façade ventilation by testing different geometries and materials. The latest developments of the integration system are presented such as the next step of this work which is the implementation of the system on the façades of a multifamily building in Frankfurt.

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Available abstract

To simplify the installation of necessary ventilation systems in building energy retrofits, façade integrated ventilation combined with semi-prefabrication of envelope components is a promising solution. By speeding up the mounting time, a significant cost reduction is possible compared to a standard retrofit process.An office building in Freiburg was retrofitted in 2012 applying a demonstrator of this innovative concept. Prefabricated window modules integrating air inlets and outlets, façade integrated air ducts and a heat and moisture recovery ventilation device were implemented. A long term monitoring exercise was set up including energy, temperature, CO2 and humidity measurements. The results of this measurement campaign and an analysis of the system performance are presented, focussing on the influence of façade integrated air ducts on the energy performance of the whole system and on thermal comfort. A new specific definition of the global energy efficiency of façade integrated ventilation systems is proposed and used to evaluate the performance of the system.On the basis of the monitoring results, a simulation model was defined and used to optimize the integration concept for façade ventilation by testing different geometries and materials. The latest developments of the integration system are presented such as the next step of this work which is the implementation of the system on the façades of a multifamily building in Frankfurt.

Key concepts: Architectural engineering, Ventilation (architecture), Engineering, Computer science, Environmental science, Mechanical engineering

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