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Vitosol 100-F Technical Data

3

5354 729 - 01

Product Information

3

 Specification

Vitosol 200-F

SV1B

SH1B

Total surface area

ft

2

 (m

2

)

27.0 (2.51)

27.0 (2.51)

Absorber surface area

ft

2

 (m

2

)

25.0 (2.32)

25.0 (2.32)

Aperture*

1

ft

2

 (m

2

)

25.1 (2.33)

25.1 (2.33)

Dimensions*

2

Width

Height

Depth

in. (mm)

in. (mm) 

in. (mm)

41¾ (1056)

93¾ (2380)

2¾ (72)

93¾ (2380)

41¾ (1056)

2¾ (72)

Optical efficiency*

3

%

75.4

75.4

Heat loss coefficient U1

Heat loss coefficient U2

W/(m

2

.K)

W/(m

2

.K

2

)

4.15

0.0114

4.15

0.0114

Thermal capacity

kJ(m

2

.K)

4.5

4.5

Weight

lb. (kg)

96.8 (43.9)

96.8 (43.9)

Fluid capacity

(heat transfer medium)

USG 

(L)

0.44 

(1.67)

0.62 

(2.33)

Maximum working pressure*

4

psig (bar)

87 (6)

87 (6)

Maximum stagnation temperature*

5

°F (°C)

395 (196)

395 (196)

Connection

in. (mm)

¾ (22)

¾ (22)

Requirements for installation surface and

anchorage

Roof construction with adequate load capacity 

for prevailing wind forces

*

1

 Important for system design considerations.

*

2

 Dimensions rounded to the nearest ¼ inch.

*

3

 Based on absorber surface area.

*

4

 In sealed systems, operating pressure of at least 15 psig + 0.45 psig x static head (ft.) 

 

(1.0 bar + 0.1 bar x static head (m) must be present in the collectors in cold condition.

*

5

 The stagnation temperature is the temperature which applies to the hottest point of the collector at a global  

 

 

radiation intensity of

3412 Btu/h / 1000 W when no heat is conducted by the heat transfer medium.

Model SV1B

 (Vertical mounting)

Model SH1B

 (Horizontal mounting)

Legend

CR  Collector return (inlet)

CS  Collector supply (outlet)

Содержание VITOSOL 100-F SV1B

Страница 1: ...vertical or horizontal installation on sloped and flat roofs To produce domestic hot water or to supplement low temperature heating systems or swimming pools via a heat exchanger VITOSOLr 100 F Product may not be exactly as shown Flat plate solar collectors for the harnessing of solar energy Panels with 25 ft 2 2 32 m2 absorber surface RAL UZ 73 ...

Страница 2: ...radiation and low emission of thermal radiation A meander shaped copper pipe through which the heat transfer medium flows is permanently embedded into the absorber The heat transfer medium channels the absorber heat through the copper pipe The absorber is encased in a highly insulated collector housing which minimizes collector heat losses The high quality thermal insulation provides temperature s...

Страница 3: ...7 6 Maximum stagnation temperature 5 F C 395 196 395 196 Connection in mm 22 22 Requirements for installation surface and anchorage Roof construction with adequate load capacity for prevailing wind forces 1 Important for system design considerations 2 Dimensions rounded to the nearest inch 3 Based on absorber surface area 4 In sealed systems operating pressure of at least 15 psig 0 45 psig x stati...

Страница 4: ...tor to system piping One set required per collector array max 269 ft2 25 m2 Pipe connection set Required to connect multiple solar collectors Sloped roof hardware Required for mounting collector directly onto shingled roof Raises collector 3 889 mm above the roof Flat roof hardware Required for freestanding flat roof installations Solar Divicon Preassembled pumping station for solar collector circ...

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