SPECIFIKĀCIJA. Izolācija. Apdare. Durvis un logi
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- Melvin French
- 5 years ago
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1 Mājas 1+1 Māja 1+1 ir ražotnē pilnībā pabeigta koka paneļu dzīvojamā māja. Māja tiek piegādāta klientam pilnībā pabeigta un ar aprīkotu virtuvi, vannasistabu un elektro ierīcēm pēc klienta vēlēšanās. Māja tiek piegādāta pasūtītājam uz transporta platformas pilnībā pabeigta un droši iepakota pārvešanai. Mājas uzstādīšana uz klienta zemes aizņem vienu dienu, ja ir izvēlēta viena moduļa māja vai trīs dienas, ja pasūtītājs ir lēmis par labu 2 moduļu mājai.
2 SPECIFIKĀCIJA Izolācija Siltinājums Isover KL 32 minerālvate Pro Clima vēja plēve Pro Clima tvaika plēve * Sienu, grīdas un jumta paneļu konstrukcijas apraksts un tehniskā informācija specifikācijas beigās Apdare Āra apdare vertikāli novietots, smalki zāģēts vai ēvelēts egles dēlis, 21x mm, krāsots (Teknos, Tikkurila) Iekšējā apdare Horizontāli vai vertikāli novietots dēlis, smalki zāģēts vai ēvelēts, 14x80x145 mm, krāsots ar krāsu uz ūdens bāzes (Remers, Adler) Forestia sienu paneļi ( Grīdas segums Lamināts, 32 izturības klase Tarkett ozola parkets Priedes dēlis Flīzes Durvis un logi Eiropas profila PVC logi un ārdurvis ar trīs stiklu paketi Eiropas vai skandināvu profila koka logi un ārdurvis durvis ar trīs stiklu paketi
3 Jumta segums Ruukki Classic C 50+ metāla jumts *iespējams izvēlēties arī citus jumta seguma veidus Ūdens apgāde un kanalizācija Pilnībā sagatvoti ārējie pieslēgumi. Ienākošā ūdens caurule ar apsildi (Uponor Ecoflex Supra PLUS), kas pasargā cauruli no sasalšanas Pilnībā pabeigti iekšējie ūdensapgādes tīkli. Uponor sistēma ar sadales skapi Pilnībā pabeigti iekšējie kanalizācijas tīkli Piegādātāji - Uponor, LK systems, Oras, Purus Elektroinstalācija Piegādātāji - Schneider electric, ABB, Draka, Devi Apgaismojums: 3 LED āra lampas LED iekštelpu apgaismojums ar dimmera funkciju dzīvojamajā zonā un guļamistabā Apsilde Sistēmas gaiss ūdens siltumsūknis Daikin 4 kw ar karstā ūdens tvertni 180l un iebūvētu sildelementu 3 kw Vannasistaba 1. MIRA System 2 -elastīgā hidroizolācija mitrajām telpām 2. Grīdas- ar flīzēm (33x33) klāta siltā grīda 3. Sienas: flīzes 15x30 Fibo Trespo sienas paneļi (
4 4. Santehnika: pods Ifo jaucējkrāns - Grohe dušas sistēma Grohe 5. Vannas istabas mēbeles un aprīkojums: izlietnes skapītis ( spoguļskapis dvieļu žāvētājs veļas mazgājamā mašīna - Electrolux ar vai bez žāvētāja Virtuve Pēc pasūtijuma izgatavota virtuve, 3,4 m, materiāli no EGGER. Virtuves tehnika (Electrolux, AEG): ledusskapis 175cm brīvi stāvošs vai iebūvēts cepeškrāsns trauku mazgājamā mašīna indukcijas plīts virsma ar 4 rinķiem tvaiku nosūcējs *Klients izvēlas mājas apdares materiālus un aprīkojumu pirms ražošanas uzsākšanas.
5 Arsienas panelis 1+1 KL32 Exterior wall Thermal protection U = 0,17 W/(m²K) EnEV Bestand*: U<0,24 W/(m²K) Moisture proofing No condensate Heat protection Temperature amplitude damping: 5,0 phase shift: 6,3 h Thermal capacity inside: 13,2 kj/m²k spruce (21x120) spruce (25x50) spruce (28x50) spruce (170x45) 555 pro clima INTELLO mineral wool 032 (45 mm) 355 spruce (45x45) mineral wool 032 (170 mm) Plasterboard (9,5 mm) SOLITEX FRONTA PWEWR Walls 2paint (13 mm) , outside 312, inside 1 Walls 2paint (13 mm) 2 mineral wool 032 (45 mm) 3 pro clima INTELLO mineral wool 032 (170 mm) 5 Plasterboard (9,5 mm) 6 SOLITEX FRONTA PWEWR 7 Rear ventilated level (25 mm) 8 Installation level (28 mm) 9 spruce (21x120) <-> Layers marked by arrows are perpendicular to the main axis. Inside air : 20,0 C / 50% Outside air: -5,0 C / 80% Surface temperature.: 18,8 C / -4,8 C sd-value: 6,3 m Thickness: 31,2 cm Weight: 39 kg/m² Heat capacity: 27 kj/m²k EnEV Bestand EnEV16 Neubau EnEV14 Neubau EnEV Bestand (Nichtwohngeb.) *Comparison of the U-value with den Höchstwerten aus EnEV 2014 Anlage 3 Tabelle 1 (EnEV Bestand); den Höchstwerten aus EnEV 2014 Anlage 3 Tabelle 1 (EnEV Bestand, niedrige InnenTemp.); 80% des U-Werts der Referenzausführung aus EnEV 2014 Anlage 1 Tabelle 1 (EnEV16 Neubau); der Referenzausführung aus EnEV 2014 Anlage 1 Tabelle 1 (EnEV14 Neubau) Page 1
6 Arsienas panelis 1+1 KL32, U=0,17 W/(m²K) Yearly heat loss Heat loss due to this component: 13,0 kwh per m² and heating period (approx. 1,29 liter of heating oil per m²) Calculated for the location DIN V 18599, heating period from Mid of October to End of April. The calculation is based on monthly average temperatures. Source: DIN V : Note: The climate and energy data underlying this calculation vary and may deviate considerably from the actual value in some cases. Page 2
7 Arsienas panelis 1+1 KL32, U=0,17 W/(m²K) Temperature profile outside -5 C 0 C 5 C 10 C 15 C inside outside -5 C 0 C 5 C 10 C 15 C inside Top left: Temperature profile in the blue section (see right illustration). Bottom left: Temperature profile in the green section. Layers (from inside to outside) # Material λ R Temperatur [ C] Weight [W/mK] [m²k/w] min max [kg/m²] Thermal contact resistance* 0,130 18,8 20,0 1 1,3 cm Walls 2paint 0,250 0,052 18,5 19,1 8,8 2 4,5 cm mineral wool 032 0,032 1,406 10,7 18,9 0,8 4,5 cm spruce (11%) 0,130 0,346 2,4 3 0,025 cm pro clima INTELLO 0,170 0,001 10,7 13,9 0, cm mineral wool 032 0,032 5,313-4,7 13,9 3,1 17 cm spruce (7,5%) 0,130 1,308-4,4 10,7 5,7 5 0,95 cm Plasterboard 0,250 0,038-4,9-4,4 6,5 6 0,045 cm SOLITEX FRONTA PWEWR 0,170 0,003-4,9-4,7 0,1 Thermal contact resistance* 0,130-5,0-4,7 7 2,5 cm Rear ventilated level (outside air) -5,0-5,0 0,0 8 2,8 cm Installation level -5,0-5,0 0,0 9 2,1 cm Rear ventilated level (outside air) -5,0-5,0 0,0 31,22 cm Whole component 5,991 38,6 *Thermal contact resistances according to DIN 6946 for the U-value calculation. Rsi=0,25 and Rse=0,04 according to DIN were used for moisture proofing and temperature profile. Surface temperature inside (min / average / max): 18,8 C 19,0 C 19,1 C Surface temperature outside (min / average / max): -4,9 C -4,8 C -4,7 C Page 3
8 Arsienas panelis 1+1 KL32, U=0,17 W/(m²K) Moisture proofing This component is free of condensate under the given climate conditions. # Material sd-value Condensate Weight [m] [kg/m²] [Gew.-%] [kg/m²] 1 1,3 cm Walls 2paint 0,05-8,8 2 4,5 cm mineral wool 032 0,05-0,8 4,5 cm spruce (11%) - - 2,4 3 0,025 cm pro clima INTELLO 5,92-0, cm mineral wool 032 0,17-3,1 17 cm spruce (7,5%) 8, ,7 5 0,95 cm Plasterboard 0,10-6,5 6 0,045 cm SOLITEX FRONTA PWEWR 0,01-0,1 31,22 cm Whole component 6,33 38,6 Humidity The temperature of the inside surface is 18,8 C leading to a relative humidity on the surface of 54%.Mould formation is not expected under these conditions. The following figure show the relative humidity inside the component. Relative humidity (%) Relative humidity (%) saturation point outside Inside 0 C [mm] Outside inside 1 Walls 2paint (13 mm) 2 mineral wool 032 (45 mm) 3 pro clima INTELLO 4 mineral wool 032 (170 mm) 5 Plasterboard (9,5 mm) 6 SOLITEX FRONTA PWEWR 7 Rear ventilated level (25 mm) 8 Installation level (28 mm) 9 Rear ventilated level (21 mm) Please note: DIN is not applicable to this construction. In order to investigate the moisture proofing, a proprietary calculation procedure based on DIN was used. Further information in the input form under 'Moisture protection'. Layers marked with <-> run parallel to the illustrated cutting plane and were not taken into account in the moisture protection calculation. Page 4
9 Powered by TCPDF ( Fabrika Rauna 1+1 Arsienas panelis 1+1 KL32, U=0,17 W/(m²K) Heat protection For the analysis of the heat protection, the temperature changes within the component were simulated during a hot summer day: Temperature [ C] Temperature profile Inside [mm] Outside 1 Walls 2paint (13 mm) 2 mineral wool 032 (45 mm) 3 pro clima INTELLO 4 mineral wool 032 (170 mm) 5 Plasterboard (9,5 mm) 6 SOLITEX FRONTA PWEWR 7 Rear ventilated level (25 mm) 8 Installation level (28 mm) 9 spruce (21 mm) Temperature at 3pm, 11am and 7am Temperature at 7pm, 11pm and 3am [ C] The surface temperature during the day Phase shift: 6.3h [time of day] Outside Top:Temperature profile within the component at different times. From top to bottom, brown lines: at 3 pm, 11 am and 7 am and red lines at 7 pm, 11 pm and 3 am. Bottom:Temperature on the outer ( red ) and inner ( blue ) surface in the course of a day. The arrows indicate the location of the temperature maximum values. The maximum of the inner surface temperature should preferably occur during the second half of the night. Inside Phase shift* 6,3 h Time of maximum interior temperature 21:30 Amplitude attenuation ** 5,0 Thermal fluctuation on exterior surface: 19,5 C TAV *** 0,200 Temperature fluctuation on interior surface 3,9 C * The phase shift is the time in hours after which the temperature peak of the afternoon reaches the component interior. ** The amplitude attenuation describes the attenuation of the temperature wave when passing through the component. A value of 10 means that the temperature on the outside varies 10x stronger than on the inside, e.g. outside C, inside C. ***The temperature amplitude ratio TAV is the reciprocal of the attenuation: TAV = 1 / amplitude attenuation The calculations presented above have been created for a 1-dimensional cross-section of the component. Page 5
10 Floor panel Thermal protection U = 0,13 W/(m²K) EnEV Bestand*: U<0,24 W/(m²K) Moisture proofing No condensate Heat protection Temperature amplitude damping: 25 phase shift: 8,3 h Thermal capacity inside: 43 kj/m²k Floor OSB/3 (22 mm) mineral wool 032 (45 mm) pro clima INTELLO spruce (45x45) cement-bonded particleboard (9 mm) 3-layer panel (15 mm) mineral wool 032 (245 mm) spruce (245x70) , layer panel (15 mm) 3 mineral wool 032 (45 mm) 5 mineral wool 032 (245 mm) 2 OSB/3 (22 mm) 4 pro clima INTELLO 6 cement-bonded particleboard (9 mm) <-> Layers marked by arrows are perpendicular to the main axis. Inside air : 20,0 C / 50% Outside air: -15,0 C / 80% Surface temperature.: 18,6 C / -14,8 C sd-value: 14,1 m Thickness: 33,6 cm Weight: 51 kg/m² Heat capacity: 75 kj/m²k EnEV Bestand EnEV16 Neubau EnEV14 Neubau EnEV Bestand (Nichtwohngeb.) *Comparison of the U-value with den Höchstwerten aus EnEV 2014 Anlage 3 Tabelle 1 (EnEV Bestand); den Höchstwerten aus EnEV 2014 Anlage 3 Tabelle 1 (EnEV Bestand, niedrige InnenTemp.); 80% des U-Werts der Referenzausführung aus EnEV 2014 Anlage 1 Tabelle 1 (EnEV16 Neubau); der Referenzausführung aus EnEV 2014 Anlage 1 Tabelle 1 (EnEV14 Neubau) Page 1
11 Floor panel , U=0,13 W/(m²K) Yearly heat loss Heat loss due to this component: 10,1 kwh per m² and heating period (approx. 1,00 liter of heating oil per m²) Calculated for the location DIN V 18599, heating period from Mid of October to End of April. The calculation is based on monthly average temperatures. Source: DIN V : Note: The climate and energy data underlying this calculation vary and may deviate considerably from the actual value in some cases. Page 2
12 Floor panel , U=0,13 W/(m²K) Temperature profile 15 C 10 C 5 C 0 C -5 C -10 C -15 C C 10 C 5 C 0 C -5 C -10 C -15 C Top left: Temperature profile in the blue section (see right illustration). Bottom left: Temperature profile in the green section. Layers (from inside to outside) # Material λ R Temperatur [ C] Weight [W/mK] [m²k/w] min max [kg/m²] Thermal contact resistance* 0,170 18,6 20,0 1 1,5 cm 3-layer panel 0,130 0,115 17,9 19,1 7,1 2 2,2 cm OSB/3 0,130 0,169 16,9 18,6 13,6 3 4,5 cm mineral wool 032 0,032 1,406 7,5 18,0 0,8 4,5 cm spruce (7,5%) 0,130 0,346 1,5 4 0,025 cm pro clima INTELLO 0,170 0,001 7,5 12,7 0,1 5 24,5 cm mineral wool 032 0,032 7,656-14,7 12,7 4,4 24,5 cm spruce (11%) 0,130 1,885-14,2 8,3 12,3 6 0,9 cm cement-bonded particleboard 0,230 0,039-14,9-14,1 10,8 Thermal contact resistance* 0,040-15,0-14,6 33,625 cm Whole component 7,738 50,6 *Thermal contact resistances according to DIN 6946 for the U-value calculation. Rsi=0,25 and Rse=0,04 according to DIN were used for moisture proofing and temperature profile. Surface temperature inside (min / average / max): 18,6 C 18,9 C 19,1 C Surface temperature outside (min / average / max): -14,9 C -14,8 C -14,6 C Page 3
13 Floor panel , U=0,13 W/(m²K) Moisture proofing This calculation was carried out with a user-defined climate for the winter period, which deviates from DIN This calculation: inside: 20 C 50% outside: -15 C 80% Requested by DIN : inside: 20 C 50% outside: -5 C 80% This component is free of condensate under the given climate conditions. # Material sd-value Condensate Weight [m] [kg/m²] [Gew.-%] [kg/m²] 1 1,5 cm 3-layer panel 1, ,1 2 2,2 cm OSB/3 3, ,6 3 4,5 cm mineral wool 032 0,05-0,8 4,5 cm spruce (7,5%) - - 1,5 4 0,025 cm pro clima INTELLO 8,13-0,1 5 24,5 cm mineral wool 032 0,25-4,4 24,5 cm spruce (11%) 12, ,3 6 0,9 cm cement-bonded particleboard 0, ,8 33,625 cm Whole component 14,11 50,6 Humidity The temperature of the inside surface is 18,6 C leading to a relative humidity on the surface of 55%.Mould formation is not expected under these conditions. The following figure show the relative humidity inside the component. Relative humidity (%) Inside 0 C [mm] Outside Relative humidity (%) saturation point layer panel (15 mm) 2 OSB/3 (22 mm) 3 mineral wool 032 (45 mm) 4 pro clima INTELLO 5 mineral wool 032 (245 mm) 6 cement-bonded particleboard (9 mm) Please note: DIN is not applicable to this construction. In order to investigate the moisture proofing, a proprietary calculation procedure based on DIN was used. Further information in the input form under 'Moisture protection'. Layers marked with <-> run parallel to the illustrated cutting plane and were not taken into account in the moisture protection calculation. Page 4
14 Powered by TCPDF ( Fabrika Rauna 1+1 Floor panel , U=0,13 W/(m²K) Heat protection For the analysis of the heat protection, the temperature changes within the component were simulated during a hot summer day: Temperature [ C] Temperature profile Inside [mm] Outside Temperature at 3pm, 11am and 7am Temperature at 7pm, 11pm and 3am 1 3-layer panel (15 mm) 2 OSB/3 (22 mm) 3 mineral wool 032 (45 mm) 4 pro clima INTELLO 5 mineral wool 032 (245 mm) 6 cement-bonded particleboard (9 mm) [ C] The surface temperature during the day Phase shift: 8.3h [time of day] Outside Top:Temperature profile within the component at different times. From top to bottom, brown lines: at 3 pm, 11 am and 7 am and red lines at 7 pm, 11 pm and 3 am. Bottom:Temperature on the outer ( red ) and inner ( blue ) surface in the course of a day. The arrows indicate the location of the temperature maximum values. The maximum of the inner surface temperature should preferably occur during the second half of the night. Inside Phase shift* 8,3 h Time of maximum interior temperature 23:30 Amplitude attenuation ** 25,1 Thermal fluctuation on exterior surface: 19,9 C TAV *** 0,040 Temperature fluctuation on interior surface 0,8 C * The phase shift is the time in hours after which the temperature peak of the afternoon reaches the component interior. ** The amplitude attenuation describes the attenuation of the temperature wave when passing through the component. A value of 10 means that the temperature on the outside varies 10x stronger than on the inside, e.g. outside C, inside C. ***The temperature amplitude ratio TAV is the reciprocal of the attenuation: TAV = 1 / amplitude attenuation The calculations presented above have been created for a 1-dimensional cross-section of the component. Page 5
15 Jumta panelis 1+1 KL32 Roof construction Thermal protection U = 0,13 W/(m²K) EnEV Bestand*: U<0,24 W/(m²K) Moisture proofing No condensate Heat protection Temperature amplitude damping: 6,9 phase shift: 7,3 h Thermal capacity inside: 15,6 kj/m²k Ruukki Clasic C 50+ (0,05 mm) spruce (45x45) pro clima SOLITEX MENTO 1000 spruce (35x100) 300 pro clima INTELLO mineral wool 032 (45 mm) 555 walls 2paint (12,5 mm) 555 mineral wool 032 (245 mm) spruce (45x45) spruce (245x45) , , walls 2paint (12,5 mm) 2 mineral wool 032 (45 mm) 3 pro clima INTELLO mineral wool 032 (245 mm) 5 pro clima SOLITEX MENTO Rear ventilated level (45 mm) 7 Installation level (35 mm) 8 Ruukki Clasic C 50+ (0,05 mm) <-> Layers marked by arrows are perpendicular to the main axis. Inside air : 20,0 C / 50% Outside air: -5,0 C / 80% Surface temperature.: 19,0 C / -4,9 C sd-value: 7,7 m Thickness: 38,3 cm Weight: 30 kg/m² Heat capacity: 26 kj/m²k EnEV Bestand EnEV16 Neubau EnEV14 Neubau EnEV Bestand (Nichtwohngeb.) *Comparison of the U-value with den Höchstwerten aus EnEV 2014 Anlage 3 Tabelle 1 (EnEV Bestand); den Höchstwerten aus EnEV 2014 Anlage 3 Tabelle 1 (EnEV Bestand, niedrige InnenTemp.); 80% des U-Werts der Referenzausführung aus EnEV 2014 Anlage 1 Tabelle 1 (EnEV16 Neubau); der Referenzausführung aus EnEV 2014 Anlage 1 Tabelle 1 (EnEV14 Neubau) Page 1
16 Jumta panelis 1+1 KL32, U=0,13 W/(m²K) Yearly heat loss Heat loss due to this component: 9,8 kwh per m² and heating period (approx. 0,98 liter of heating oil per m²) Calculated for the location DIN V 18599, heating period from Mid of October to End of April. The calculation is based on monthly average temperatures. Source: DIN V : Note: The climate and energy data underlying this calculation vary and may deviate considerably from the actual value in some cases. Page 2
17 Jumta panelis 1+1 KL32, U=0,13 W/(m²K) Temperature profile -5 C 0 C 5 C 10 C 15 C C 0 C 5 C 10 C 15 C Top left: Temperature profile in the blue section (see right illustration). Bottom left: Temperature profile in the green section. Layers (from inside to outside) # Material λ R Temperatur [ C] Weight [W/mK] [m²k/w] min max [kg/m²] Thermal contact resistance* 0,100 19,0 20,0 1 1,25 cm walls 2paint 0,250 0,050 18,8 19,3 8,5 2 4,5 cm mineral wool 032 0,032 1,406 12,4 19,2 0,8 4,5 cm spruce (7,5%) 0,130 0,346 1,5 3 0,025 cm pro clima INTELLO 0,170 0,001 12,4 15,4 0,1 4 24,5 cm mineral wool 032 0,032 7,656-4,9 15,4 4,5 24,5 cm spruce (7,5%) 0,130 1,885-4,6 12,7 8,3 5 0,04 cm pro clima SOLITEX MENTO 1000 (connect) 0,170 0,002-4,9-4,6 0,1 Thermal contact resistance* 0,100-5,0-4,7 6 4,5 cm Rear ventilated level (outside air) -5,0-5,0 0,0 7 3,5 cm Installation level -5,0-5,0 0,0 8 0,005 cm Ruukki Clasic C ,0-5,0 0,4 38,32 cm Whole component 7,907 29,7 *Thermal contact resistances according to DIN 6946 for the U-value calculation. Rsi=0,25 and Rse=0,04 according to DIN were used for moisture proofing and temperature profile. Surface temperature inside (min / average / max): 19,0 C 19,2 C 19,3 C Surface temperature outside (min / average / max): -4,9 C -4,9 C -4,7 C Page 3
18 Jumta panelis 1+1 KL32, U=0,13 W/(m²K) Moisture proofing This component is free of condensate under the given climate conditions. # Material sd-value Condensate Weight [m] [kg/m²] [Gew.-%] [kg/m²] 1 1,25 cm walls 2paint 0,05-8,5 2 4,5 cm mineral wool 032 0,05-0,8 4,5 cm spruce (7,5%) - - 1,5 3 0,025 cm pro clima INTELLO 6,85-0,1 4 24,5 cm mineral wool 032 0,25-4,5 24,5 cm spruce (7,5%) 12, ,3 5 0,04 cm pro clima SOLITEX MENTO 1000 (connect) 0,05-0,1 38,32 cm Whole component 7,65 29,7 Humidity The temperature of the inside surface is 19,0 C leading to a relative humidity on the surface of 53%.Mould formation is not expected under these conditions. The following figure show the relative humidity inside the component. Relative humidity (%) Inside 0 C [mm] Outside Relative humidity (%) saturation point walls 2paint (12,5 mm) 2 mineral wool 032 (45 mm) 3 pro clima INTELLO 4 mineral wool 032 (245 mm) 5 pro clima SOLITEX MENTO Rear ventilated level (45 mm) 7 Installation level (35 mm) 8 Ruukki Clasic C 50+ (0,05 mm) Please note: DIN is not applicable to this construction. In order to investigate the moisture proofing, a proprietary calculation procedure based on DIN was used. Further information in the input form under 'Moisture protection'. Layers marked with <-> run parallel to the illustrated cutting plane and were not taken into account in the moisture protection calculation. Page 4
19 Powered by TCPDF ( Fabrika Rauna 1+1 Jumta panelis 1+1 KL32, U=0,13 W/(m²K) Heat protection For the analysis of the heat protection, the temperature changes within the component were simulated during a hot summer day: Temperature [ C] Temperature profile Inside [mm] Outside Temperature at 3pm, 11am and 7am Temperature at 7pm, 11pm and 3am 1 walls 2paint (12,5 mm) 2 mineral wool 032 (45 mm) 3 pro clima INTELLO 4 mineral wool 032 (245 mm) 5 pro clima SOLITEX MENTO Rear ventilated level (45 mm) 7 Installation level (35 mm) 8 Ruukki Clasic C 50+ (0,05 mm) [ C] The surface temperature during the day Phase shift: 7.3h [time of day] Outside Top:Temperature profile within the component at different times. From top to bottom, brown lines: at 3 pm, 11 am and 7 am and red lines at 7 pm, 11 pm and 3 am. Bottom:Temperature on the outer ( red ) and inner ( blue ) surface in the course of a day. The arrows indicate the location of the temperature maximum values. The maximum of the inner surface temperature should preferably occur during the second half of the night. Inside Phase shift* 7,3 h Time of maximum interior temperature 22:15 Amplitude attenuation ** 6,9 Thermal fluctuation on exterior surface: 19,7 C TAV *** 0,145 Temperature fluctuation on interior surface 2,9 C * The phase shift is the time in hours after which the temperature peak of the afternoon reaches the component interior. ** The amplitude attenuation describes the attenuation of the temperature wave when passing through the component. A value of 10 means that the temperature on the outside varies 10x stronger than on the inside, e.g. outside C, inside C. ***The temperature amplitude ratio TAV is the reciprocal of the attenuation: TAV = 1 / amplitude attenuation The calculations presented above have been created for a 1-dimensional cross-section of the component. Page 5
20 Powered by TCPDF ( Fabrika Rauna 1+1 starpsienas 95+apdare Exterior wall Thermal protection Heat protection U = 0,48 W/(m²K) EnEV Bestand*: U<0,24 W/(m²K) Temperature amplitude damping: 1,9 phase shift: 4,1 h Thermal capacity inside: 11 kj/m²k 555 spruce (95x45) mineral wool 040 (95 mm) spruce (95x45) walls 2paint (13 mm) 555 Walls 2paint (13 mm) 13 3 outside Walls 2paint (13 mm) 2 mineral wool 040 (95 mm) 3 walls 2paint (13 mm) <-> Layers marked by arrows are perpendicular to the main axis. inside Inside air : 20,0 C / 50% Outside air: -5,0 C / 80% Surface temperature.: 16,0 C / -4,6 C Thickness: 12,1 cm Weight: 25 kg/m² Heat capacity: 24 kj/m²k EnEV Bestand EnEV16 Neubau EnEV14 Neubau EnEV Bestand (Nichtwohngeb.) *Comparison of the U-value with den Höchstwerten aus EnEV 2014 Anlage 3 Tabelle 1 (EnEV Bestand); den Höchstwerten aus EnEV 2014 Anlage 3 Tabelle 1 (EnEV Bestand, niedrige InnenTemp.); 80% des U-Werts der Referenzausführung aus EnEV 2014 Anlage 1 Tabelle 1 (EnEV16 Neubau); der Referenzausführung aus EnEV 2014 Anlage 1 Tabelle 1 (EnEV14 Neubau) Page 1
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