LEO AGRO HT50

Flowair




CHARACTERISTIC:

The fan heater is dedicated for use inside buildings.

The device has a special dust-proof and water-proof fan –protection class IP 66
and a heat exchanger with a anti corrosion layer. The extra thick, durable lamellas in the exchanger can be cleaned with compressed air or water (low pressure)
Casing can be opened for easy service and cleaning access thanks to the clamps connecting the exchanger with the confusor. This solution makes it easy to keep the device clean and to ensure optimal operation parameters.

Application:

LEO AGRO HT is designated for agricultural facilities chicken coops, dryers.

Control:

LEO AGRO HT fan heaters can be controlled with Flowair standard automatics (details in operation and maintenance documentation) or with a microclimate controller

Technology /Innovation/Benefits

  • Dust-proof and water-proof fan –protection class IP 66
  • Casing can be opened - easy service and cleaning access
  • Cleaning with Pressure Washer
Specifications of LEO AGRO HT50
Sku
LA-HT50


Technical data LEO AGRO HT

LEO AGRO HT50 LEO AGRO HT75
Max. air flow [m3/h] 10 000
Max. air flow range [m]* 54
Power supply [V/Hz] 3x400/50
Max. current consumption [A] 1,4
Max. power consumption [W] 560W
IP / Insulation class 66 / F
Max. acoustic pressure level [dB(A)]** 66
Max. heating water temperature [oC] 95
Max. operating pressure [MPa] 1,6
Hydraulic connection ["] 1”
Max. operating temperature [oC] 60
Weight [kg] 76  88
Weight of unit filled with water [kg] 86  104

* Range of horizontal, isothermal air stream at 0,5 m/s speed limit.
** Acoustic pressure level at a distance of 5 m from the unit, in the room of medium capabillity of sound absorption and 1500 m3 of cubic measure.

Main dimensions LEO AGRO HT

LEO AGRO HT wymiary

Heating capacities LEO AGRO HT

LEO AGRO HT 50
Tp1 PT Qw ∆pw Tp2 PT Qw ∆pw Tp2 PT Qw ∆pw Tp2 PT Qw ∆pw Tp2 PT Qw ∆pw Tp2
°C kW l/h kPa °C kW l/h kPa °C kW l/h kPa °C kW l/h kPa °C kW l/h kPa °C
Tw1/Tw2 = 90/70oC Tw1/Tw2 = 80/60oC Tw1/Tw2 = 70/50oC Tw1/Tw2 = 60/40oC Tw1/Tw2 = 50/40oC
V = 10 000m3/h
0 116 5099 46,9 32 100 4394 36,7 27,8 84,8 3699 27,5 23,5 69,4 3010 19,4 19,2 64,2 5556 60,6 17,8
5 107 4722 40,7 35,2 91,9 4027 31,2 30,9 76,6 3340 22,8 26,6 61,3 2660 15,4 22,3 56,2 4865 47,5 20,8
10 98,7 4352 35 38,3 83,7 3667 26,3 34 68,5 2988 18,6 29,7 53,4 2316 12 25,3 48,4 4189 36,1 23,9
15 90,5 3990 29,8 41,4 75,6 3313 21,8 37,1 60,6 2643 14,8 32,7 45,6 1977 9 28,3 40,7 3525 26,3 26,9
20 82,4 3634 25,1 44,5 67,7 2966 17,8 40,1 52,8 2303 11,5 35,7 37,8 1642 6,4 31,2 33,2 2873 18 29,8
25 74,5 3285 20,9 47,5 59,9 2625 14,2 43,1 45,2 1969 8,6 38,6 30,2 1309 4,2 34,1 25,8 2232 11,3 32,8
30 66,7 2942 17 50,5 52,2 2289 11,1 46 37,6 1638 6,2 41,5 22,5 974 2,5 36,9 18,4 1596 6,2 35,6
35 59,1 2605 13,6 53,4 44,7 1958 8,3 48,9 30 1308 4,1 44,3 14,4 623 1,1 39,5 11 953 2,4 38,4
LEO AGRO HT 75
Tp1 PT Qw ∆pw Tp2 PT Qw ∆pw Tp2 PT Qw ∆pw Tp2 PT Qw ∆pw Tp2 PT Qw ∆pw Tp2
°C kW l/h kPa °C kW l/h kPa °C kW l/h kPa °C kW l/h kPa °C kW l/h kPa °C
Tw1/Tw2 = 90/70oC Tw1/Tw2 = 80/60oC Tw1/Tw2 = 70/50oC Tw1/Tw2 = 60/40oC Tw1/Tw2 = 50/40oC
V = 10 000m3/h
0 170 7515 138 47,2 149 6510 110 41,1 127 5517 83,4 35 105 4534 60 28,9 94,7 8200 180 26,2
5 158 6962 120 49,5 136 5971 93,5 43,4 115 4992 69,3 37,3 92,7 4021 48,2 31,1 83,1 7195 142 28,4
10 146 6421 104 51,8 124 5444 79 45,6 103 4478 56,9 39,5 81,1 3518 37,8 33,3 71,8 6212 109 30,6
15 134 5892 88,6 54 112 4929 65,9 47,8 91,2 3974 45,8 41,6 69,7 3024 28,7 35,3 60,7 5253 79,8 32,7
20 122 5375 74,9 56,2 101 4424 54 49,9 79,8 3489 35,9 43,7 58,4 2535 20,8 37,3 49,8 4311 55,6 34,8
25 110 4868 62,5 58,3 89,6 3929 43,5 52 68,7 2994 27,3 45,7 47,2 2050 14,1 39,2 39,1 3384 35,7 36,8
30 99,1 4371 51,3 60,4 78,5 3442 34,2 54,1 57,6 2513 19,8 47,7 35,9 1559 8,5 41 28,5 2464 20 38,7
35 88,1 3883 41,3 62,4 67,6 2963 26 56 46,7 2035 13,5 49,5 24 1041 4,1 42,5 17,7 1530 8,4 40,5
 

V – air flow
PT – heating capacity
Tp1 – inlet air temperature
Tp2 – outlet air temperature
Tw1 – inlet water temperature
Tw2 – outlet water temperature
Qw – water stream flow in the heat exchanger
Δpw – water pressure drop in heat exchanger

LEO AGRO HT devices can be assembled using a rotary console at 180 * - flow of any desired angle and easy access to the device.

 consola rotativa

A console ensures easy and quick flow mounting ideal for the surrounding device.

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