ODE Membran Planning Details
1. WATERPROOFING AT FLAT ROOFS
Advantages:
- Flat roofs having low gradient constitute especially useable roof spaces and offer roof solutions which aren't seen frontally.
- By constituting continuous waterproofing especially at big roof spaces, it can be used easily in the details of the graded roof applications like tile, shingle that are difficult, costly and bringing additional altitude to the structure.
- Provides performance during the life of structure at all thermal insulated, with access, without access and garden flat roofs.
A.Thermal Insulated Flat Roofs With Access Application and Advantages
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B. Thermal Insulated Flat Roofs Without Access Applications and Advantages
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C. Garden Flat Roofs Advantages and Application
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Thermal Insulation Thickness Calculation Table at Counter Flat Roofs (visitable, non-visitable, garden roof)
| U Heat Transmission Coefficient Recommended by ODE at Flat Roofs and Minimum XPS Thicknesses Required to be Used | ||||
|---|---|---|---|---|
| Degree Day Region | I |
II |
III |
IV |
| Sample Province | Izmir |
Istanbul |
Ankara |
Erzurum |
| U (W/m2K) | 0,50 |
0,40 |
0,30 |
0,25 |
| XPS Thickness to be Used (mm) | 50 |
70 |
90 |
12 |
- Reinforced concrete roof flooring thickness is taken as 15 cm.
- For certain thermal insulation thicknesses, the structure is required to be solved as a whole in accordance with the calculation method which is present at TS 825.
Filter Tables According to Different Amounts Rainfall at Flat Roofs
The area which a single filter that doesn't have leaf gripper can make drainage (m2)
| Diameter of Pipe ø (mm) |
Rainfall Density (Litre /m2 sec) | |||||
|---|---|---|---|---|---|---|
0,010 |
0,012 |
0,014 |
0,018 |
0,020 |
0,022 |
|
| 50 | 138 |
115 |
99 |
77 |
69 |
63 |
| 65 | 179 |
150 |
128 |
100 |
90 |
82 |
| 75 | 222 |
185 |
158 |
123 |
111 |
101 |
| 100 | 394 |
329 |
282 |
219 |
197 |
179 |
| 150 | 887 |
740 |
634 |
493 |
444 |
403 |
The area which a single filter with leaf gripper can make drainage (m2)
| Diameter of Pipe ø (mm)) |
Rainfall Density (Litre /m2 sec) | |||||
|---|---|---|---|---|---|---|
0,010 |
0,012 |
0,014 |
0,018 |
0,020 |
0,022 |
|
| 50 | 69 |
58 |
49 |
77 |
69 |
63 |
| 65 | 90 |
75 |
64 |
100 |
90 |
82 |
| 75 | 111 |
92 |
79 |
123 |
111 |
101 |
| 100 | 197 |
164 |
141 |
219 |
197 |
179 |
| 150 | 444 |
370 |
317 |
493 |
444 |
403 |
Liter / sec - mm/hour conversion table for unit (m2)
Liter / sec |
mm / hour |
|---|---|
0,010 |
36 |
0,012 |
43 |
0,014 |
50 |
0,016 |
58 |
0,018 |
65 |
0,020 |
72 |
0,022 |
79 |
2- WATERPROOFING AT FOUNDATIONS
A) Waterproofing and Thermal Insulation Applications at Basement Floors Exposed to Ground
Advantages and ApplicationFor the protection of the structure's components that are exposed to soil from water and moisture, providing the comfort conditions at underground locations, preventing the corrosion of steel reinforcement inside the concrete and maintaining its resistance, waterproofing should be done at foundations settling on impermeable ground. |
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Curtain Walls;
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B) Floorings Settling On Soil
Advantages and ApplicationFor the protection of the structure's components that are contacting with the soil from water and moisture, providing the comfort conditions at underground locations, preventing the corrosion of steel reinforcement inside the concrete and maintaining its resistance, waterproofing should be done at floorings settling on impermeable ground. |
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| U Heat Transmission Coefficients Recommended by ODE at Soil-Exposed Walls and Floorings and Minimum XPS Thicknesses Required to be Used | ||||
|---|---|---|---|---|
| Degree Day Region | I |
II |
III |
IV |
| Sample Province | Izmir |
Istanbul |
Ankara |
Erzurum |
| U (W/m2K) | 0,80 |
0,60 |
0,45 |
0,40 |
| XPS Thickness To Be Used (mm) | 30 |
40 |
60 |
70 |
- Reinforced concrete roof flooring thickness is taken as 15 cm.
- For certain thermal insulation thicknesses, the entire structure is required to be solved in accordance with the calculation method which is present at TS 825.






