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Horizontal Package Fresh Air Handling Unit 4/6 rows cooling Coil
Specifications
Unit Model | EKSW 020H | EKSW 030H | EKSW 040H | EKSW 050H | EKSW 060H | EKSW 070H | EKSW 080H | EKSW 090H | EKSW 100H | EKSW 120H | EKSW 135H | EKSW 150H | ||
Nominal air flow (m3/h) | 2000 | 3000 | 4000 | 5000 | 6000 | 7000 | 8000 | 9000 | 10000 | 12000 | 13500 | 15000 | ||
External total pressure (Pa) | I | 80 | 80 | 80 | 80 | 80 | 80 | 80 | 80 | - | - | - | - | |
II | 150 | 150 | 150 | 150 | 150 | 150 | 150 | 150 | 150 | 150 | 150 | 150 | ||
III | 220 | 220 | 220 | 220 | 220 | 220 | 220 | 220 | 220 | 220 | 220 | 220 | ||
IV | 300 | 300 | 300 | 300 | 300 | 300 | 300 | 300 | 300 | 300 | 300 | 300 | ||
Nominal cooling capacity (kW) | Four rows of coils (in air return condition) | 12.0 | 18.8 | 25.9 | 31.9 | 36.9 | 43.9 | 50.0 | 55.4 | 61.6 | 76.2 | 80.6 | 90.9 | |
Four rows of coils (in fresh air condition) | 28.7 | 40.8 | 56.1 | 72.0 | 85.2 | 97.3 | 110.0 | 125.4 | 139.3 | 164.8 | 174.8 | 200.1 | ||
Six rows of coils (in air return condition) | 15.9 | 23.7 | 32.7 | 40.1 | 49.8 | 55.8 | 63.5 | 72.4 | 78.0 | 94.7 | 107.9 | 115.5 | ||
Six rows of coils (in fresh air condition) | 35.5 | 54.4 | 70.0 | 90.5 | 109.9 | 126.9 | 136.6 | 155.4 | 176.6 | 211.9 | 235.8 | 258.9 | ||
Nominal heating capacity (kW) | Four rows of coils (in air return condition) | 18.5 | 28.8 | 38.8 | 47.9 | 56.9 | 67.1 | 81.3 | 91.5 | 101.6 | 122.0 | 135.7 | 150.7 | |
Four rows of coils (in fresh air condition) | 30.6 | 44.8 | 60.5 | 76.4 | 92.8 | 109.4 | 127.9 | 145.5 | 161.6 | 194.0 | 211.2 | 237.2 | ||
Six rows of coils (in air return condition) | 23.0 | 34.3 | 46.4 | 57.7 | 69.9 | 80.7 | 96.4 | 109.0 | 119.9 | 144.0 | 162.7 | 178.1 | ||
Six rows of coils (in fresh air condition) | 36.4 | 54.9 | 72.4 | 91.4 | 110.7 | 129.2 | 150.3 | 170.0 | 189.8 | 227.8 | 257.4 | 287.2 | ||
Nominal cold water flow (L/S) | Four rows of coils (in air return condition) | 0.57 | 0.89 | 1.24 | 1.52 | 1.76 | 2.09 | 2.38 | 2.64 | 2.94 | 3.63 | 3.84 | 4.33 | |
Four rows of coils (in fresh air condition) | 1.36 | 1.94 | 2.67 | 3.43 | 4.06 | 4.64 | 5.24 | 5.97 | 6.63 | 7.85 | 8.32 | 9.53 | ||
Six rows of coils (in air return condition) | 0.76 | 1.13 | 1.56 | 1.91 | 2.37 | 2.66 | 3.03 | 3.45 | 3.71 | 4.51 | 5.14 | 5.50 | ||
Six rows of coils (in fresh air condition) | 1.69 | 2.59 | 3.34 | 4.31 | 5.24 | 6.04 | 6.50 | 7.40 | 8.41 | 10.09 | 11.23 | 12.33 | ||
Nominal hot water flow (L/S) | Four rows of coils (in air return condition) | 0.44 | 0.69 | 0.92 | 1.14 | 1.35 | 1.60 | 1.94 | 2.18 | 2.42 | 2.90 | 3.23 | 3.59 | |
Four rows of coils (in fresh air condition) | 0.73 | 1.07 | 1.45 | 1.82 | 2.21 | 2.61 | 3.05 | 3.46 | 3.85 | 4.62 | 5.03 | 5.65 | ||
Six rows of coils (in air return condition) | 0.55 | 0.82 | 1.10 | 1.37 | 1.66 | 1.92 | 2.30 | 2.59 | 2.85 | 3.43 | 3.87 | 4.24 | ||
Six rows of coils (in fresh air condition) | 0.87 | 1.31 | 1.72 | 2.18 | 2.64 | 3.08 | 3.58 | 4.05 | 4.52 | 5.42 | 6.13 | 6.84 | ||
Fins/inch | Model | High-quality air conditioner copper tubes are connected to hyperbolic aluminum plate-fins through mechanical expanding. | ||||||||||||
Heat exchanger | 12 | |||||||||||||
Working pressure (MPa) | 1.6 | |||||||||||||
Inlet/outlet pipe connector size | R1-1/2 | R1-1/2 | R1-1/2 | R2 | R2 | R2 | R2 | R2 | R2 | R2-1/2 | R2-1/2 | R2-1/2 | ||
Condensed water pipe connector size | R1-1/4 | |||||||||||||
Fan | Type/material | Efficient centrifugal forward curved fan/galvanized steel plate | ||||||||||||
Transmission mode | Efficient V-belt transmission | |||||||||||||
Air supply direction of the fan | Downward horizontal | |||||||||||||
Motor | Power supply | 380V/3~/50H | ||||||||||||
Model | Tri-phase asynchronous motor, F-rate insulation, and IP54 protection | |||||||||||||
Rated power of motor (kW) | I | 0.37 (0.37) | 0.55 (0.55) | 0.55 (0.75) | 1.1 (1.1) | 1.1 (1.1) | 1.1 (1.5) | 1.1 (1.1) | 1.1 (1.5) | - | - | - | - | |
II | 0.37 (0.55) | 0.55 (0.55) | 0.75 (0.75) | 1.1 (1.1) | 1.1 (1.5) | 1.5 (1.5) | 1.1 (1.5) | 1.5 (1.5) | 2.2 (2.2) | 2.2 (2.2) | 2.2 (3.0) | 3.0 (3.0) | ||
III | 0.55 (0.55) | 0.55 (0.75) | 0.75 (1.1) | 1.1 (1.5) | 1.5 (1.5) | 1.5 (2.2) | 1.5 (2.2) | 1.5 (2.2) | 2.2 (2.2) | 2.2 (3.0) | 3.0 (3.0) | 3.0 (3.0) | ||
IV | 0.55 (0.55) | 0.75 (0.75) | 1.1 (1.1) | 1.5 (1.5) | 1.5 (2.2) | 2.2 (2.2) | 2.2 (2.2) | 2.2 (2.2) | 2.2 (3.0) | 3.0 (3.0) | 3.0 (3.0) | 3.0 (4.0) | ||
Unit noise (dB(A)) | I | 52 | 55 | 57 | 59 | 60 | 62 | 62 | 62 | - | - | - | - | |
II | 53 | 56 | 58 | 60 | 61 | 63 | 63 | 63 | 63 | 62 | 63 | 65 | ||
III | 54 | 57 | 59 | 61 | 62 | 64 | 64 | 64 | 64 | 63 | 64 | 66 | ||
IV | 55 | 58 | 60 | 62 | 63 | 65 | 65 | 65 | 65 | 64 | 65 | 67 | ||
Filter | Model | Primary nylon filter (connected through 8 mm hook) | ||||||||||||
Box | Model | The galvanized steel plate applies static spraying and the internal
is attached with efficient insulation sound-proof PE material. | ||||||||||||
Unit Outer Dimensions | Length (mm) | 1090 | 1090 | 1181 | 1381 | 1581 | 1781 | 1671 | 1771 | 1921 | 2037 | 2237 | 2447 | |
Width (mm) | 831 | 1051 | 1090 | 1090 | 1090 | 1090 | 1185 | 1185 | 1185 | 1235 | 1235 | 1235 | ||
Height (mm) | 505 | 505 | 570 | 570 | 570 | 570 | 670 | 670 | 670 | 742 | 742 | 742 | ||
Unit weight (kg) | Four rows of coils | 79 | 98 | 118 | 130 | 152 | 163 | 194 | 198 | 217 | 262 | 287 | 300 | |
Six rows of coils | 82 | 102 | 124 | 136 | 160 | 172 | 207 | 212 | 232 | 280 | 307 | 322 |
Note:
■ The preceding parameters apply to the standard model. EK provides
customized design to meet special requirements.
■ Nominal air return cooling condition: 27°C (dry bulb)/19.5°C (wet
bulb). Nominal fresh air cooling condition: 34°C (dry bulb)/28°C
(wet bulb). Nominal cooling water inlet/outlet temperature: inlet
7°C; outlet 12°C.
■ Nominal air return heating condition: 21°C (dry bulb). Nominal
fresh air heating condition: 0°C (dry bulb). Nominal heating water
inlet/outlet temperature: inlet 60°C; outlet 50°C.
■ The unit weight listed in the table is net weight. The operating
weight increases by about 20%.
■ The value in brackets in the table indicates the motor power for
a unit with 6 rows of coils.
■ The noise values in the preceding table are measured at a
distance of 1 m from the unit in a state certified standard
semi-anechoic room according to the GBT 9068-1988 standard.
■ If the external total pressure value of the unit used in model
selection is large, the air flow will be large, leading to noise
and water spray. Therefore, carefully determine the air duct
resistance.
■ The coil loop form varies from a full air-return unit to a full
fresh air unit. Mark the air inlet condition at purchase. Specify R
for a full air-return unit and F for a full fresh air unit. EK
provides model
selection software for special requirements. For specific
parameters, see the model selection result.
Design
Complete design parameters of the standard unit such as water flow
and water pressure drop
Comprehensive secondary design software
Comprehensive non-standard design flow and wide application scope
The proprietary integrated computer-based model selection software
is specifically designed
for EKSW units for model selection and matching. This software can
flexibly and conveniently
select proper units according to customer requirements and provide
specific model selection
results for customers.
Purifying and sterilizing device (optional)
Aluminum filter
■ It can filter out large granular dust such as lampblack.
■ The aluminum frame structure reduces the maintenance cost.
■ The precise aluminum mesh structure is easy to install and
clean.Electric purifier
■ Using high-voltage static cleaning technology, it effectively
eliminates dust, germs,virus, and harmful gases.
■ It provides multiple layers of protection by using multiple
levels of filtering.
■ The modular combination design helps determine reasonable
configuration according to the air flow.
Photo catalyst ultraviolet lamp for sterilization
■ It effectively prevents germs and moulds on coils and eliminates
smells that are thereby generated.
■ The photo catalyst does not suffer change or loss, and lasts
long.
■ It can effectively decompose pollutants such as methanol,
methylbenzene, and ammonia. It is not toxic or harmful, and does
not produce pollution.
Wet-film humidifier
Clean running water that passes through the electromagnetic valve
is sent to a water distributor at the top of the wet film over a
water pipe. The water flows downwardly at the surface of the wet
film under gravity to wet the surface of the wet film. The water
that arrives at the water tray is discharged to the drainage pipe
through a bent water drainage pipe. That is, the water is not
recycled. When hot air passes through the humid wet film, its
humidity increases and its temperature drops. This humidification
process is called isoenthalpic humidification process. During this
process, certain water on the wet film is evaporated, which does
not consume extra energy. The working principle of wet-film direct
drainage humidifier is shown in the figure on the right.