Difference between revisions of "Aluminium Frame With Thermal Bridge Breakage"

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|Operational CostMin=2
 
|Operational CostMin=2
 
|Operational CostMax=4
 
|Operational CostMax=4
|Replacement CostMin=23,3
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|Replacement CostMin=23.3
 
|Replacement CostMax=11,7
 
|Replacement CostMax=11,7
 
|Life ExpectancyMin=30
 
|Life ExpectancyMin=30
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|Area Frame/WindowMin=15
 
|Area Frame/WindowMin=15
 
|Area Frame/WindowMax=64
 
|Area Frame/WindowMax=64
|U-ValueMin=0,9
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|U-ValueMin=0.9
|U-ValueMax=0,9
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|U-ValueMax=0.9
 
|Annual Degradation Rate on U-ValueMin=0
 
|Annual Degradation Rate on U-ValueMin=0
 
|Annual Degradation Rate on U-ValueMax=0
 
|Annual Degradation Rate on U-ValueMax=0

Latest revision as of 18:32, 25 April 2017


[edit]
Description
Advantages
Disadvantages
Application barriers
Information sources
Image
Trade:


Parameter Minimal Value Maximal Value Unit
Dimensions

450/685

1300/3000

mm

Thickness

75

75

mm

Infiltration Rate

3

3

m³/hm²

Sound Insulation

48

48

dBA

Thermal Conductivity

n.a.

n.a.

W/mK

Specific Heat Capacity

n.a.

n.a.

J/kgK

Associated Wall

any

any

Investment Cost

700

350

€/m²

Operational Cost

2

4

€/m²year

Replacement Cost

23.3

11,7

€/m²year

Life Expectancy

30

30

years

Number of Glazing

2

3

U-Value

0.9

0.9

W/m²K

Annual Degradation Rate on U-Value

0

0

%

g-Value (depending on used glass)

36

64

%

Solar Heat Gain Coefficient

n.a.

n.a.

%

Visual Light Transmittance (depending on used glass)

62

82

%

Material

aluminium

aluminium

Area Frame/Window

15

64

%

U-Value

0.9

0.9

W/m²K

Annual Degradation Rate on U-Value

0

0

%

Solar Absorbance

n.a.

n.a.

Deterioration Description
Causes
Parameter
Degradation Rate
Measurement


The Design4Energy project aims to address evolutionary life-cycle evolutionary design methodology able to create energy-efficient buildings

flexibly connected with the neighbourhood energy system.

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