LIGNUM – Holzwirtschaft Schweiz | Economie suisse du bois | Economia svizzera del legno
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Values of airborne sound insulation | |
---|---|
Rw | 40 dB |
C | dB |
C50-3150 | dB |
Layer | Product | Manufacturer | Thickness [mm] | Weight | Width (b) | Axial distance (e) | KBOB ID-№ Production | KBOB ID-№ Disposal |
---|---|---|---|---|---|---|---|---|
Surface leftside | Smoothed joints | Knauf, Rigips | - | - | - | - | 04.017 | 91.139 |
Sheathed leftside 1st layer | Rigidur H-Gipsfaserplatte | Rigips | 12.5 mm | 15 kg/m2 | - | - | 03.007 | 91.063 |
Bond | Stiff, execution of the prior art. | - | - | - | - | - | - | - |
Support | SWISS KRONO MAGNUMBOARD OSB | Willisauerstrasse 37, Wittstocker Chaussee 1 | 100 mm | 66 kg/m2 | 1000 mm | 1000 mm | 07.013 | 91.145 |
Bond | Stiff, execution of the prior art. | - | - | - | - | - | - | - |
Sheathed rightside 1st layer | Rigidur H-Gipsfaserplatte | Rigips | 12.5 mm | 15 kg/m2 | - | - | 03.007 | 91.063 |
Surface rightside | Smoothed joints | Knauf, Rigips | - | - | - | - | 04.017 | 91.139 |
Color | Type | 25 | 32 | 40 | 50 | 63 | 80 | 100 | 125 | 160 | 200 | 250 | 315 | 400 | 500 | 630 | 800 | 1000 | 1250 | 1600 | 2000 | 2500 | 3150 | 4000 | 5000 | |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Airborne sound (R) | Calculation | Lignum/Kühn and Blickle | 24 | 26 | 29 | 32 | 34 | 37 | 39 | 38 | 35 | 37 | 34 | 37 | 39 | 42 | 42 | 42 | 43 | 52 | 60 | 67 | 77 | 85 |
bSDD Properties | ||||||||
---|---|---|---|---|---|---|---|---|
mm | Indicators | Modules | ||||||
Values / m2 | ||||||||
+
|
Environmental impact points (UBP)
|
94170
|
UBP'21/m2
|
A1-A3 + C1-C4
|
||||
|
┣
|
Environmental impact points from production (UBP_pro)
|
84882
|
UBP'21/m2
|
A1-A3
|
|||
|
┗
|
Environmental impact points from disposal (UBP_dis)
|
9141
|
UBP'21/m2
|
C1-C4
|
|||
+
|
Total primary energy (PE_T)
|
803.1
|
kWh oil-eq/m2
|
A1-A3 + C1-C4
|
||||
|
┣
|
Primary energy from production (PE_pro)
|
794.1
|
kWh oil-eq/m2
|
A1-A3
|
|||
|
┃
|
┣
|
Primary energy production, energetically consumed (PE_E_pro)
|
419.9
|
kWh oil-eq/m2
|
A1-A3
|
||
|
┃
|
┗
|
Primary energy production, materially bound (PE_M_pro)
|
371.6
|
kWh oil-eq/m2
|
A1-A3
|
||
|
┗
|
Primary energy from disposal (PE_dis)
|
9.3
|
kWh oil-eq/m2
|
C1-C4
|
|||
+
|
Renewable primary energy (PE_RT)
|
548.1
|
kWh oil-eq/m2
|
A1-A3 + C1-C4
|
||||
|
┣
|
Renewable primary energy from production (PE_RT_pro)
|
547.3
|
kWh oil-eq/m2
|
A1-A3
|
|||
|
┃
|
┣
|
Renewable primary energy from generation, energetically consumed (PE_RE_pro)
|
211.4
|
kWh oil-eq/m2
|
A1-A3
|
||
|
┃
|
┗
|
Renewable primary energy from production, materially bound (PE_RM_pro)
|
335.9
|
kWh oil-eq/m2
|
A1-A3
|
||
|
┗
|
Renewable primary energy from disposal (PE_RT_dis)
|
0.5
|
kWh oil-eq/m2
|
C1-C4
|
|||
+
|
Total use of non- renewable primary energy resources (PE_NRT)
|
253
|
kWh oil-eq/m2
|
A1-A3 + C1-C4
|
||||
|
┣
|
Primary energy not renewable from manufacturing (PE_NRT_pro)
|
244
|
kWh oil-eq/m2
|
A1-A3
|
|||
|
┃
|
┣
|
Primary energy not renewable from production, energetically consumed (PE_NRE_pro)
|
209
|
kWh oil-eq/m2
|
A1-A3
|
||
|
┃
|
┗
|
Primary energy not renewable from production, materially bound (PE_NRM_pro)
|
35.3
|
kWh oil-eq/m2
|
A1-A3
|
||
|
┗
|
Primary energy not renewable from disposal (PE_NRT_dis)
|
8.8
|
kWh oil-eq/m2
|
C1-C4
|
|||
+
|
Total greenhouse gas emissions (GWP_total)
|
53.7
|
kg CO2/m2
|
A1-A3 + C1-C4
|
||||
|
┣
|
Greenhouse gas emissions from manufacturing (GWP_pro)
|
47.9
|
kg CO2/m2
|
A1-A3
|
|||
|
┗
|
Greenhouse gas emissions from waste disposal (GWP_dis)
|
5.8
|
kg CO2/m2
|
C1-C4
|
|||
|
Biogenic carbon dioxide storage (bio-C x 44/12 = bio-CO2) (Not included in GWP)
|
0
|
kg CO2/m2
|
B1-B7
|
||||
|
Biogenic carbon storage (bio-C) (Not included in GWP)
|
30.7
|
kg C/m2
|
B1-B7
|
||||
⇒ Advantages of the life cycle assessment outside the system boundary (module D) |