Musikschule Velden
Bäckerteichstraße 1
9220
Velden am Wörthersee, Österreich
Architekt
Besitzer
Bewohner
Ansprechpartner
Other Information
Klimazone Dfb
Höhe über dem Meer 455 m ü.d.M.
Heizgradtage 3753
Kühlgradtage 100
Ensembleschutz:
Nein
Stufe der Unterschutzstellung:
DMSG § 2a
Letzte Sanierung:
2015
Vorhergehende Sanierungen:
0
zusätzliche Nutzung:
NA
Gebäudebelegung:
Discontinuous occupancy (i.e. holiday home)
Anzahl der Bewohner/Nutzer:
0
Gebäudetyp:
Detached house
Anzahl der Stockwerke:
5
Keller ja/nein:
Ja
Anzahl der beheizten Stockwerke:
4
Bruttogeschossfläche [m²]:
1099,0
Thermische Gebäudehülle [m²]:
1732,0
Volumen [m³]:
3062,0
NGF Berechnungsmethode:
NGF (de)
Außen:
Rendered
Innen:
Plastered (on substructure)
Dach:
Pitched roof
RENOVIERUNGS-PROZESS
Architektur
BESCHREIBUNG
Erhaltungszustand
DENKMALWERT
Ziel der Sanierung
Market town of Velden am Wörther See
Seecorso 2, A-9021 Klagenfurt/Wörthersee
Director of music school
Bäckerteichstraße 1, A-9220 Velden am Wörthersee
Arch + more ZT GmbH
Dr. Karl-Renner-Weg 14, A-9220 Velden am Wörthersee
Federal Monuments Authority Austria - Department for Carinthia
Alter Platz 30, A-9020 Klagenfurt am Wörthersee
IPJ Ingenieurbüro P. Jung GmbH
Luftbadgasse 3/8, A-1060 Wien-Mariahilf
Anderes Blower-door test
SANIERUNGS-LÖSUNGEN
Außenwände
Außenwand 45
The façade was restored on the outside and adapted to the original colour scheme for reasons of monument protection. On the inside, the thermal renovation was executed with an internal insulation in the form of 8 cm calcium silicate boards, whereby care had to be taken that the existing construction would not suffer any damage in the long term.
The adaptation of the façade to its original condition and the choice of thin insulating panels on the inside of the exterior walls ensured to preserve the original character of the building. Also, Calcium silicate boards were selected as insulation material with regards to protection of historical monuments, ecology and summer overheating protection.
20 mm
400 mm
20 mm
20mm
400 mm
20 mm
80 mm
2 mm
2 mm
Fenster
Gate windows
Box-type windows
The window openings could not be changed. The window joints (also the structural joints) of the historic windows were resealed and window seals were milled in. Due to this an air tightness 0.8 1/h could be achieved. Inner wings were replaced with insulating glass. The outer color of the windows was changed to the original one. On the inside at the level of the internal insulation, thermal insulation glazing was installed.
The U-values could only be approximated, since the windows are historic box-type windows that were reworked (single glazing on the outside, inner wing with doulbe glazing, with sealing plane). U-value existing window (frame and glas) about 2,5 W/m²k. U-value new window (frame and glas) about 0,82 W/m²k.
Fenstertyp Bestand | Box-type window |
Verglasungsart Bestand | Single |
Verschattung Bestand | NA |
Ungefähres Einbaujahr | 1926 |
Neuer Fenstertyp | Box-type window |
Verglasungsart des neuen Fensters | Double |
Verschattung des neuen Fensters | NA |
Neuer Energiedurchlassgrad g [-] | 0,67 |
The window openings could not be changed. The window joints (also the structural joints) of the historic windows were resealed and window seals were milled in. Due to this an air tightness 0.8 1/h could be achieved. Inner wings were replaced with insulating glass. The outer color of the windows was changed to the original one. On the inside at the level of the internal insulation, thermal insulation glazing was installed.
The U-values could only be approximated, since the windows are historic box-type windows that were reworked (single glazing on the outside, inner wing with doulbe glazing, with sealing plane). U-value existing window (frame and glas) about 2,5 W/m²k. U-value new window (frame and glas) about 1,30 W/m²k.
Fenstertyp Bestand | Box-type window |
Verglasungsart Bestand | Single |
Verschattung Bestand | NA |
Ungefähres Einbaujahr | 1926 |
Neuer Fenstertyp | Box-type window |
Verglasungsart des neuen Fensters | Double |
Verschattung des neuen Fensters | NA |
Neuer Energiedurchlassgrad g [-] | 0,54 |
Weitere Maßnahmen
DACH
ERDGESCHOSS
MASSNAHMEN UM DIE LUFTDICHTIGKEIT ZU VERBESSERN
The existing wooden construction doubled to the inside and in order to guarantee the thermal renovation, additional insulation with cellulose was installed on the inside. Furthermore, the existing roof covering was renewed.
The appearance of the roof was kept, but the colour changed to the original. Cellulose was chosen as a insulation material with regards to protection of historical monuments, ecology and summer overheating protection.
5 mm
20 mm
160 mm
5 mm
1 mm
219 mm
300 mm
1 mm
24 mm
25 mm
The existing floor in the event hall without basement and the floor of the existing basement were completely removed and rebuilt with XPS (with Austrian eco-label).
There were no issues with conservation regarding the ground floor.
60 mm
60 mm
120 mm
1 mm
40 mm
20 mm
10 mm
Window joints (including component joints) of the historic windows were resealed and window seals were milled in, and interior sashes were replaced with insulated glass. A possible backflow of the interior insulation was taken into account by completely removing old layers of paint and applying new layers with notched trowel, so that a backflow is kept to a minimum.
HVAC
HEIZUNG
LÜFTUNG
It was the conversion to 100% renewable district heating, for which proof of delivery was requested. The heat delivery system consists of underfloor heating on the ground floor in the area where the floor structure was redone, and radiators on the upper floors. In addition, a comfort ventilation system (2 units, 1x for the hall and 1x for the classrooms) with heat recovery was implemented.
For the comfort ventilation system, the fresh air intake and exhaust air discharge was carried out via the historic chimneys, as this was not possible on the facade.
Heizungssystem nach Sanierung | |
---|---|
Art der Heizung | District heating |
Brennstoff | Industrial heat, biomass and gas |
Wärmeverteilung | Radiating floor, radiators and air |
Nennleistung | 42 kW |
The building was equipped with two central and one decentralized comfort ventilation system. One unit is located in the attic room above the theory room and supplies the classrooms and the theory room on the 1st floor as well as the classrooms on the top floor. The second unit was installed in the existing technical room and supplies the event hall, the assembly hall and the basement. The decentralised ventilation unit operates the sanitary facilities and is located on its flat roof. Outside air and exhaust air are led over the existing chimneys. Linen sacks on the ceilings of the classrooms ensure an extremely gentle air supply. Heat recovery: Room air technology with variable air volume flow, air exchange rate for air tightness test (n50) = 0.8 1/h, additional air exchange rate (nx) = 0.056 1/h, no heating function, no cooling function, own heat recovery system, degree of heat supply = 80 %, own geothermal heat exchanger, degree of utilization EWT = 20 %. Type of ventilation: no night ventilation, bypass system available, no humidifier, limitation of maximum air volume flow, maximum air volume flow = 2970 m3/h.
The fresh air intake and exhaust air discharge was carried out via the historic chimneys, as this was not possible on the historic facade.
Aufbau Bestandsdach | Neues Lüftungssystem |
---|---|
Lüftungstyp | 2 centralised and 1 decentraliced systems |
Type flow regime | Overflow |
Wärmerückgewinnung | Ja |
Feuchterückgewinnung | Nein |
Nennleistung | No information kW |
Elektrische Leistung | kW |
Regelung | Air exchange takes place according to air tightness test (n50) = 0.8 1/h |
ERNEUERBARE ENERGIE
Photovoltaik
The new PV is situated on a part of the buiding with a flat roof. The average yield of the PV system is about 10,000 kWh per year, of which about 40% is consumed in the renovated building and the remaining electricity is passed on to the neighboring doctor's office.
The PV was installed on the part of the building, which is not under conservation.
Photovoltaic System | |
---|---|
Type | NA |
Collector area | 80,0 m² |
Total nominal power | 10,0 kW |
Overall yearly production | 9600,0 kWh |
Energieeffizienz
Freiwillige Zertifikate The klimaactive gold award for competence in climate protection for the renovation of the music school Velden states that his building combines highest energetic and ecological quality with professional execution and thus meets the building standard of klinaaktiv gold.
Berechnungsmethode Calculation according to energy certificate for site climate
Energieverbrauch vor Sanierung 418,05 kWh/m2.y
Energieverbrauch nach Sanierung 27,24 kWh/m2.y
Primärenergie
Berechnungsmethode Calculation according to energy certificate for site climate
Energieverbrauch incl Brauchwarmwasser Ja
Energieverbrauch vor Sanierung 856,2 kWh/m2.y
Energieverbrauch nach Sanierung 247,4 kWh/m2.y
Type_of_monitoring: Continuous
Description: Two classrooms were monitored according to their climate (temperature) during summer.
Außenklima
Type_of_monitoring: Continuous
Raumklima
There is an ongoing exchange with the users in which the building is optimized, also the temperature. This is especially necessary in the case of a high-quality refurbishment, as not everything can work at the start of operation and thus an ongoing evaluation is necessary to achieve user satisfaction.
There were many constructive discussions with the future users of the music school during the planning phase regarding user comfort. Especially the resulting air supply via air bags works very well. The feedback from the users, especially regarding ventilation and sound insulation, is very positive.
The window openings could not be changed, therfore, the lighting system inside was designed to be daylight-dependent.
Since the building is used as a music school , sound decoupling between classrooms and room acoustics through the installation of individual elements (additional Plexiglas suspension, Ecophon tw. on walls) were important.
Kosten
Investment costs applied for: € 1,460,826. Environmentally relevant costs: € 937,001. Funding basis: € 661,584. Subsidies: € 283,858.
€ 1.460.826,00 (total)
Nein
Umwelt
emissions_at_use_stage_before_intervention: NA NA
emissions_at_use_stage_after_intervention: 31.40 kg/m²y per m2
emissions_before_use: 48,.40 kg/m²y