26
CHAPTER 3
●
General Technical Considerations
3. Calculation of Lossnay Economical Effects
The following is a sample questionnaire from which it is possible to assess the economical benefits of using the Lossnay in
particular applications.
(1)
Setting of conditions
●
Return air volume (RA)
= m
3
/Hr
●
Outdoor air volume (OA) = m
3
/Hr
●
Air volume ratio (RA/OA) =
●
Air conditions
●
Operation time: Heating =
hours/day
×
days/month
×
months/year = hours/year
Cooling =
hours/day
×
days/month
×
months/year = hours/year
●
Energy:
Heating = Type: Electricity
Cost:
¥/kWh
Cooling = Type: Electricity
Cost:
¥/kWh
Power rates: Winter:
¥/kWh
Summer:
¥/kWh
(2)
Selection of Lossnay model (select from treatment air volume catalog)
●
Model name:
●
Processing air volume per unit RA = m
3
/Hr, OA = m
3
/Hr, Air volume ratio (RA/OA) =
●
Heat recovery efficiency : Heat recovery efficiency
=
%,
Enthalpy recovery efficiency (cooling)
=
%,
Enthalpy recovery efficiency (heating) =
%
(3)
State of indoor blow air
Season
Winter heating
Summer cooling
Dry bulb Wet bulb Relative Absolute Enthalpy
Dry bulb Wet bulb Relative Absolute Enthalpy
Item
temp.
temp.
humidity
humidity
i
temp.
temp.
humidity
humidity
i
DB [°C]
WB [°C]
RH [%]
×
[kg/kg’]
[kJ/kg]
DB [°C]
WB [°C]
RH [%]
×
[kg/kg’]
[kJ/kg]
Outdoors
Indoors
Heating
Cooling
= (Indoor temperature – outdoor air temperature)
×
= Outdoor air temperature – (outdoor air
Temperature [°C]
heat recovery effi outdoor air
temperature – indoor temperature)
×
temperature
heat recovery efficiency
=
=
= (Indoor enthalpy – outdoor air enthalpy)
×
= Outdoor air enthalpy – (outdoor air
Enthalpy [kJ/kg]
enthalpy recovery effi outdoor air
enthalpy – indoor enthalpy)
×
enthalpy
enthalpy recovery efficiency
=
=
Numerical value
●
Dry-bulb temperature
= °C
●
Dry-bulb temperature
= °C
obtained from above
●
Wet-bulb temperature
= °C
●
Wet-bulb temperature
= °C
equation and
●
Relative humidity
= %
●
Relative humidity
= %
psychometric chart
●
Absolute humidity
= kg/kg’
●
Absolute humidity
= kg/kg’
●
Enthalpy
= kJ/kg
●
Enthalpy
= kJ/kg
Summary of Contents for Lossnay PZ-41SLB-E
Page 4: ...CHAPTER 1 Ventilation for Healthy Living Lossnay Unit ...
Page 17: ......
Page 18: ...CHAPTER 2 Lossnay Construction and Principle ...
Page 24: ...CHAPTER 3 General Technical Considerations ...
Page 41: ......
Page 42: ...CHAPTER 4 Characteristics ...
Page 56: ...53 CHAPTER 4 Characteristics ...
Page 57: ...54 CHAPTER 4 Characteristics ...
Page 59: ......
Page 60: ...CHAPTER 5 System Design Recommendations ...
Page 68: ...CHAPTER 6 Examples of Lossnay Applications ...
Page 83: ......
Page 84: ...CHAPTER 7 Installation Considerations ...
Page 88: ...CHAPTER 8 Filtering for Freshness ...
Page 96: ...CHAPTER 9 Service Life and Maintenance ...
Page 98: ...CHAPTER 10 Ventilation Standards in Each Country ...
Page 101: ......
Page 102: ...CHAPTER 11 Lossnay Q and A ...
Page 108: ...Lossnay Remote Controller ...
Page 109: ......
Page 197: ...MEMO ...
Page 198: ...Y04 002 Jul 2004 MEE ...