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Categories | Cooling Tower Fill Material |
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Brand Name: | XL |
Model Number: | XL-610-VF |
Certification: | SGS |
Place of Origin: | Jiangsu, China |
MOQ: | 10 square meters |
Price: | $1.2-2/square meters |
Payment Terms: | Western Union, T/T, MoneyGram, D/P, D/A, L/C |
Supply Ability: | 1000m2/per pay |
Delivery Time: | 10 working days |
Packaging Details: | Wooden,cartons,custom package |
Name: | 19mm Sheet Space 610mm Counter Flow Cooling Tower PVC Fills for Cooling Tower |
Condition: | New |
Cooling Type: | Cooling Tower Parts |
Material: | PVC,PP,CPVC |
Warranty: | 1 Year |
Width: | 305/610mm |
Length: | 1220/1830/2440/customized |
Usage: | Cooing Tower |
MOQ: | 10 square meters |
Thickness: | 0.32-0.6mm |
Wave Height: | 12/15/19/30mm |
Company Info. |
Wuxi Xianglong Plastic Technology Co., Ltd. |
Verified Supplier |
View Contact Details |
Product List |
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.
Supply in industry
Cooling towers reject heat from water-cooled system 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 iscollected 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.
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