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  4. Energetic performance of a smart neighborhood of existing multifamily buildings with heat pumps, PV and CHP focusing on energy balance and CO2 emissions
 
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2023
Conference Paper
Title

Energetic performance of a smart neighborhood of existing multifamily buildings with heat pumps, PV and CHP focusing on energy balance and CO2 emissions

Abstract
A smart energy concept was designed and implemented for a cluster of 5 existing multi-family houses, which combines heat pumps, photovoltaic (PV) modules and combined heat and power units (CHP) to achieve energy- and cost-efficient operation. Measurement results of the first year of operation show that the local power generation by PV modules and CHP unit has a positive effect on the electrical self-sufficiency by reducing electricity import from the grid. In winter, when the CHP unit operates continuously for long periods, the entire electricity for the heat pump and 91 % of the total electricity demand of the neighborhood are supplied locally. In summer, only 53 % is generated within the neighborhood. The use of a specifically developed energy management system EMS is intended to further increase this share. CO2 emissions for heating and electricity of the neighborhood are evaluated and amount to 18.4 kg/(m<sup>2a</sup>). Compared to the previous energy system consisting of gas boilers (29.1 kg/(m<sup>2a</sup>)), savings of 37 % are achieved with electricity consumption from the grid being reduced by 65 %. In the second construction stage, an additional heat pump, CHP unit and PV modules will be added. The measurement results indicate that the final district energy system is likely to achieve the ambitious CO2 reduction goal of -50% and further increase the self-sufficiency of the district.
Author(s)
Kropp, Michael
Universität Freiburg
Metz, Jakob
Fraunhofer-Institut für Solare Energiesysteme ISE  
Lämmle, Manuel
Fraunhofer-Institut für Solare Energiesysteme ISE  
Mainwork
Journal of Physics Conference Series
Conference
2023 International Conference on the Built Environment in Transition, CISBAT 2023
Open Access
DOI
10.1088/1742-6596/2600/3/032001
Additional link
Full text
Language
English
Fraunhofer-Institut für Solare Energiesysteme ISE  
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