Daikin SB.LBWWHD030AV3196 [9/56] Daikin refrigeration product portfolio and ecodesign directive

Daikin SB.LBWWHD050AV3096 [9/56] Daikin refrigeration product portfolio and ecodesign directive
9
Temperature application Medium Low
Ambient temperature
32°C 32°C
Evaporation temperature -10°C -35°C
Suction gas side 10 K superheat OR 20°C suction gas temperature
Subcooling degree of the liquid Depending on the condenser coil used in the refrigeration system
Ecodesign EN 13215:
Definition of the nominal operating conditions
(capacity, COP and power consumption)
To define the efficiency of a condensing unit the Ecodesign Directive used the EN13215 regulation.
Both methodologies are allowed to define delivered cooling capacity and efficiency of a unit.
This has also an impact on the SEPR AND COP value.
Model
MONOBLOCKS
BIBLOCKS
WINEBLOCKS
JEHCCU
JEHSCU
MINI ZEAS ZEAS MULTI ZEAS CONVENI-PACK BOOSTER
OTHER RANGES
Refrigerating
capacity <20kw
Refrigerating
capacity <50kw
Refrigerating
Capacity >50kW
Medium
temperature
(Te = -10°C)
out of scope in scope in scope in scope
out of
scope
(1)
out of
scope
(2)
- in scope in scope out of scope
Low
temperature
(Te = -35°C)
out of scope in scope in scope in scope
out of
scope
(1)
- out of scope
(3)
in scope out of scope out of scope
() Delivered capacity of the multi Zeas units in medium and low temperature application are higher than the upper boundary (MT: Q >  kW; LT: Q >  kW) mentioned in the Ecodesign
Directive
() The CVP can only operates when also Daikin indoor units are connected. This means that the CVP can be seen as a condensing unit with multiple condensers which is considered out of
scope of the Ecodesign Directive ENTR LOT
() The booster unit is not seen as a condensing unit, because the heat extracted from the evaporator side is (LT –side) discharge in the MT refrigerant line of a CVP or Zeas unit and not to
the surrounding air as described in the Ecodesign Directive ENTR LOT
Daikin refrigeration product portfolio and Ecodesign Directive
COP methodology:
If the medium temperature cooling capacity is
lower thаn 5 kW and low temperature cooling
capacity is lower than 2 KW
COP given on 25°C ambient temperature
COP given on 32°C ambient temperature
COP given on 43°C: mandatory if ambient
temperature design is higher or equal to 35°C
Two methodologies to evaluate the unit performance
Minimum eciency (COP):
Medium temperature:
Capacity lower or equal 1 kW = 1.2
Capacity lower or equal 5 kW = 1.4
Low temperature:
Capacity lower or equal 1 kW = 0.75
Capacity lower or equal 2 kW = 0.85
SEPR methodology:
If the medium temperature cooling capacity is
higher than 5 kW and low temperature cooling
capacity is higher than 2 KW
SEPR given on the reference climate zone of
Strasbourg
COP given on 43°C: mandatory if ambient
temperature design is higher or equal to 35°C
Minimum eciency (SEPR):
Medium temperature:
Capacity lower or equal 20 kW = 2.25
Capacity lower or equal 50 kW = 2.35
Low temperature:
Capacity lower or equal 8 kW = 1.5
Capacity lower or equal 20 kW = 1.6
Low capacities
Condensing unit installed indoor
Higher capacities
Condensing unit installed outdoors
(climate depending)

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