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9

Design & Selection

7.2 Heat Load Calculation

7.2.1 Load Calculation of a Single Floor

Room

Area

Heat Index (W/m

2

)

Heat Load (W)

Master Room

28

82

2296

Bathroom

12

72

900

Total Load

2296+900=3196w

7.2.2 Arrangement Design of the Underfloor System for A Single Floor

Assumed conditions: the floor is cement or ceramics, the normal external diameter of the heating pipe is 

20mm, thickness of the stuffer is 50mm, thickness of PS foam insulation is 20mm, supply water temperature is 
45°C , return water temperature is 35°C , indoor design temperature is 20°C .

Average Temperature of the Heating Pipe=(45+35)/2=40°C 

7.2.3 Arrangement Design of the Underfloor System for the Bath Room

Heat load of the bath room is 900W, heat dissipation per unit area is 75W/m2, tube spacing of the heat pipe 

is 30mm, and heat loss is 25.4 W/m2, then the total heat loss is: 

25.4×12=304.8W

Based on the heat load listed in the table above, the heating load for the bathroom is: 

900+304.8=1204.8W

According to the formula Q=CρGΔT, the flow rate of the heating pipe for the bathroom is:

G=

1.2048kJ/1/3600 h

Q

=0.104m

3

/h

=

If the outer diameter of the heating pipe is 20mm and thickness is 2mm, then the minimum flow for the 

heating pipe is:

G=

=3.14/4*

(

20-2*2

)

2

*10

-6

*0.25*3600 =(0.18m

3

)/h

It can be see that the arranged piping system for the bathroom does not meet the technical requirement and 

must be used in common for the master room.

7.2.4 Arrangement Design of the Underfloor System for the Master and Both Rooms

 According to the calculation results, the total heat load for the master and bath rooms is 3196W, heat 

dissipation per unit area is 82W/m2, tube spacing of the heating pipe is 300mm, and heat loss 25.4 W/m

2

 is, 

then the total heat loss is:

3196+1016=4212W

According to the formula Q= CρGΔT, the flow rate is

G=

4.212kJ/(1/3600h)

Q

=0.3622m

3

/

0.18m

3

/h

=

4.186kJ/(kg·

)*1000kg/m

3

 *(45-35)

Loop quantity is 0.3622/0.18=2.012 and the round-off number is 2.

7.2.5 Check

 

A. Check for the flow rate

0.3622/2

=0.2503m/s

3.14*0.008

2

*3600

Floor rate of each loop is within 0.25~0.5m/s and the system can run stably.

 

B. Check for the tube length 

When the average tube spacing is 30mm, the required length of the heating pipe per square meter is 3.5m, 

length of total coils is 3.5×40=140 and length for each loop is 140/2=70.

It can be seen that the length for each loop is less than 120m and there it meets the design requirement.

 

C. Check for the ground average temperature

tp=tn+9.82×(qx/100) 0.969=20+9.82×(82/100) 0.969=28°C

Upper Limits and Average Floor Temperature

Average Floor Temperature

Area

Average Temperature

Maximum Temperature

Long-term Dwelling Area

24~26

28

Short-term Dwelling Area

28~30

32

Nobody Area

35~40

42

Содержание Versati II Series

Страница 1: ...Change for life GREE ELECTRIC APPLIANCES INC OF ZHUHAI Air to water Heat Pump Monobloc Versati Design and Selection ...

Страница 2: ...oils 4 4 Quantity and Location of the Water Traps and Collectors 5 4 1 Design Requirements on Loop Quantity for Circulation Water 5 4 2 Requirements on Installation of the Water Trap Collector 6 5 Section of FCU 7 5 1 FCU Type Selection 7 5 2 Matching of Capacity 7 6 Selection of the Water Tank 8 6 1 Specifications of the Water Tank 8 6 2 Volume Selection of the Water Tank 8 7 Examples for Model S...

Страница 3: ... of thermostat and specification should be complied with installation of this manual The Bypass valve must be installed to secure enough water flow rate and should be installed at the collector CASE 2 Connecting Sanitary Water Tank Notes In this case three way valve should be installed and should be complied with installation of this manual Sanitary water tank should be equipped with internal elec...

Страница 4: ...Hot water Notes Two way valve is very important to prevent dew condensation on the floor and Radiator while cooling mode 3 Way valve 1 is controlled by user while the pool pump is actived 3 Way valve 1 switches to pool loop while the pool pump is shuted down 3 Way valve 1 switches to under floor FCU loop 3 Way valve 2 is automatic controlled by monobloc unit while running water heating mode 3 Way ...

Страница 5: ...ies and power inputs are based on the following conditions FCU or radiator a Cooling conditions b Heating conditions Indoor Water Temp 12 C 7 C Indoor Water Temp 40 C 45 C Outdoor Air Temp 35 C DB 24 C WB Outdoor Air Temp 7 C DB 6 C WB 2 3 Flowchart of Model Selection Calculate the load Preliminary selection of unit Finish unit selection Actual capacity Load Calculate the load YES NO 2 4 Design Pr...

Страница 6: ...oils Tube spacing of the underfloor coils which will directly affect heat dissipation of the floor depends on the tube material indoor design temperature supply water temperature and floor material Heat Dissipation of Commonly Used Coils Tube material PE X Indoor temperature 18 C Average water temperature 45 C Floor Material Thermal Resistance m2 K W Tube Spacing mm Heat Dissipation W m2 Tube Spac...

Страница 7: ...on Loop Quantity for Circulation Water 1 One water trap collector is allowed for at most eight loops When quantity of loops exceeds 12 then two traps collectors should be used or it will cause uneven water distribution 2 The maximum flow rate of the water trap collector should be less than 0 8m s 3 The inlet and outlet of each loop should be connected to the water trap collector and the inner diam...

Страница 8: ...ap collector should be installed on the wall or inside the special box For housing constructions it is generally installed in the kitchen 2 The valve for the water trap collector should be installed horizontally and keep a distance of at least 300mm to the ground 3 The water supply valve should be installed upstream of the water trap collector and the return valve should be installed downstream of...

Страница 9: ... would start stop frequently which is adverse for oil return When load of the FCU is too large the unit would always run under high frequency which is unhelpful for energy conservation Type Air Volume m3 h Cooling Capacity kW Heating Capacity kW Static Pressure Pa Appearance Wall mounted type 166 1020 2 1 5 4 3 15 8 5 Concealed ceiling type 213 2380 1 85 12 8 3 1 21 12 30 Floor ceiling type 213 20...

Страница 10: ...ction of the Water Tank Selection of the water tank should consider the flow rate of the shower head duration of use per person and daily water consumption Volume of the Water Tank t design temperatuere t entering cold water temperatuere t water tank temperatuere set point t entering cold wa ter temperature consumption t design temperature generally it is 60 C t entering cold water temperature it ...

Страница 11: ...0 18m3 h It can be see that the arranged piping system for the bathroom does not meet the technical requirement and must be used in common for the master room 7 2 4 Arrangement Design of the Underfloor System for the Master and Both Rooms According to the calculation results the total heat load for the master and bath rooms is 3196W heat dissipation per unit area is 82W m2 tube spacing of the heat...

Страница 12: ...n Heat demand for a single layer 3196W Heat loss for a single layer 1016W Total heat load for a single layer 4212W Total heat load of the building 8424W Capacity of the main unit should be larger than 8424W so we can select GRS CQ10Pd NaC K ...

Страница 13: ......

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