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500m3/H-4500m3/H Forced Draft Counterflow Open Circuit Cooling Tower

Categories Open Circuit Cooling Tower
Model Number: NH Series
Certification: GB7190.2-1997
Place of Origin: Jiangsu, China
MOQ: 1
Product Name: Counter Current Cooling Tower
Flow: 500m3/h-4500m3/h
Machine Parts: Aluminum Alloy Fan/Motor Reducer/Multi-wave Water Collector/Tubular Water Distribution System/S-wave Film filler/Glass Fiber Reinforced Plastic Components
Type: Low Temperature Type/Standard Type/Medium Temperature Type/High Temperature Type
Casing Material: Steel Structure FRP Composite
Application: Industrial Fluids Cooling
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500m3/H-4500m3/H Forced Draft Counterflow Open Circuit Cooling Tower

500m3/H-4500m3/H Forced Draft Counterflow Cooling Tower Open Circuit Cooling Tower


Working Principle:


Hot water enters the cooling tower from the top, usually through pipes.
A fan or other ventilation equipment at the bottom of the tower introduces cooling air to the bottom of the cooling tower.
The hot water flows through the packing layer and exchanges heat with the rising cooling air.
The heat in the hot water is transferred to the air, causing the water temperature to drop, while the air heats up and removes the heat.


Application Areas:


Counterflow open cooling towers are widely used in power plants, chemical plants, refineries and other industrial sites to cool circulating water, coolants or other hot water or fluids generated by the production process.
These cooling towers help maintain the normal operating temperature of industrial equipment and reduce heat emissions from the production process.


Maintenance and Performance Optimization:


Counterflow open cooling towers require regular maintenance, including cleaning the packing, checking the pipes and valves, etc.
Optimizing the performance of the cooling tower can be achieved through proper packing selection, fan adjustment and fluid circulation control to ensure the best heat exchange efficiency.


Product Specification:


typewater capacity m³/hexterior sizefan

water inlet pipe

DN(mm)

water

distribution

pipe height

mm

other sizeweight

standard

spot noise

dB(A)

B(mm)H(mm)

diameter

mm

air volume

x10^4m³

motor power N(KW)

B1LH₁H₂A

dry

t

concret size

m3

wet

t

10NH-50050064009200400032.422350

5200

32001920027006500212115.42491.8≤75
10NH-75075078001037650004830450575039002340032007300235222.129118.275
10NH-1000100090001155560006445500630045002700037007900252628.436148.4≤75
10NH-15001500110001322870009675600715055003300042009200478440.360235.6≤75
10NH-200020001280014500800013092700725064003840045009750518453.977306.9≤75
10NH-2500250014400145508530157110800725072004320045009750503465.7100409.3<75
10NH-30003000158001535085301901329007500790047400470010550553477.6120473.2≤75
10NH-3500350017000154008530218.51609007600425034000500010600558486.5180651≤75
10NH-400040001820016112914025218510007800455036400520011050573499.1200728.5≤75
10NH-4500450019300167129140282220100081004825386005500116506034109220805.1≤75

design condition:

db temp=31.5℃

wb temp=28℃

barometric pressure=1.004x10^5 Pa

inlet water temp=43℃ outlet water temp=33℃

note:

1.The weight of the equipment is calculated in units of a single tower

2.the dry weight is the weight of the delivery product,concrete size is the concrete structure

3.Specific gravity of concrete is calculated at 2.6t/m³,wet weight is the tower operation weight



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