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CounterFlow cooling tower packing features:
*1. Good performance and high cooling efficiency. The filler is
film type, and the protruding fine corrugations make the water
contact surface larger. The filler is placed in 3~4 layers, and
there is a redistribution process of hot water between the layers.
*2. Good hydrophilicity and small ventilation resistance The filler
with a rough and smoother surface has good hydrophilicity, and the
water absorption rate is less than 0.015%, so that more water flow
can form a film without splashing, so that water and air are more
fully contacted At the same time, the surface disturbance of water
and air is large when flowing.
*3. The heat dissipation of the packing accounts for more than 85%
of the entire temperature drop in the cross-flow tower. The heat
dissipation process of the cooling tower is mainly carried out on
the surface of the heat dissipation packing plate. The water film
on the surface of the packing slowly flows down, and the inner
water film is the high enthalpy humid air with a humidity of 100%,
and the water molecules run from the high enthalpy area to the low
enthalpy value. In the fresh air entering the tower, the enthalpy
value of the air exiting the tower increases. As the concentration
of water molecules decreases, the water molecules in the
circulating hot water continuously evaporate from liquid to gaseous
state, thereby taking away the latent heat of vapor. According to
the above principles, the quality of the filler is the key to the
cooling effect.
Specifications:
Tech Date | |
Sheet Width(mm) | 305/610mm |
Sheet Length | 1220/1830/2440mm/customized |
Thickness | 0.32-0.6mm/customized |
Sheet Spacing | 12/15/19/30mm |
Color | grey/white/black |
Material | PP/PVC/CPVC |
*Cooling towers reject heat from water-cooled systems to the atmosphere. Hot water from the system enters the cooling tower and is distributed over the fill (heat transfer surface). Air is induced or forced through the fill, causing a small portion of the water to evaporate. This evaporation removes heat from the remaining water, which is collected in the cold water basin and returned to the system to absorb more heat. Each cooling tower line, although operating under the same basic principle of operation, is arranged a little differently.
*There are two main configurations of factory assembled cooling towers: crossflow and counterflow. In crossflow cooling towers, the water flows vertically down the fill as air flows horizontally across. In counterflow cooling towers, the water flows vertically down the fill as air flows vertically up.
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