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Water Cooling Tower

250 Ton Square Type Water Cooling Tower Supplier
  • 250 Ton Square Type Water Cooling Tower Supplier
  • 250 Ton Square Type Water Cooling Tower Supplier

250 Ton Square Type Water Cooling Tower Supplier

This 250 Ton Square Type Water Cooling Tower is widely used in refineries, petrochemical and other chemical plants, thermal power stations, nuclear power plants and HVAC systems used to cool buildings.

 Model:                    TW-250T

Cooling Capacity:    250 Ton 

Flow:                        195.1M3/H

Power Supply:         380V/50HZ /3PH (Standard)
                                208-480V/60HZ/3PH(Customized)

Motor:                     5.5 KW
    Content

    1.What is A Water Cooling tower ?
    A water cooling tower is a device that rejects waste heat to the atmosphere by cooling it to a lower temperature with a flow of coolant, usually water. A cooling tower can use the evaporation of water to remove process heat and cool the working fluid to near wet-bulb air temperature, or, in the case of a dry cooling tower, rely solely on air using a radiator to cool the working fluid to near dry-bulb air temperature.
    Common applications include the cooling of circulating water in refineries, petrochemical and other chemical plants, thermal power stations, nuclear power plants and HVAC systems used to cool buildings. Classification according to the type of air entering the tower: The main types of cooling towers are natural draft cooling towers and induced draft cooling towers.

    Square Type Water Cooling Tower

    2.What is The Purpose of A Cooling Tower?
    A water cooling tower is used to cool water and is a giant heat exchanger that removes building heat to the atmosphere and returns cooler water to the cooler. Water cooling towers receive warm water from the chiller.
    This warm water is called condenser water because it gains heat in the condenser of the chiller. The cooler is usually on a lower level, such as a basement. The purpose of the cooling tower is to cool the water so that it can return to the chiller to absorb more heat.

    3.How Does a Water Cooling Tower Work?
    Air conditioning equipment and industrial processes generate large amounts of hot water that need to be cooled. This is where industrial cooling towers come in. The superheated water passes through a cooling tower where it is recirculated and exposed to cool, dry air. Heat leaves the circulating cooling tower water through evaporation.
    This is called evaporative cooling. The cooler water then re-enters the air conditioning unit or process to cool the unit, and the cooling cycle repeats over and over again. When the hot condenser enters the cooling tower, the water passes through some nozzles that spray the water into small droplets, which increases the surface area of ​​the water and allows for better heat loss through greater evaporation.
    The function of the fan at the top of the water-cooling tower is to bring in the air at the bottom of the tower and move it upward in the opposite direction to the warm condensation water at the top of the unit. The air will carry heat through the evaporation of water from the cooling tower into the atmosphere.

    4.Why Does Need An Industrial Cooling Tower?
    Industrial cooling towers are a key component of many refrigeration systems and can be found in industries such as power plants, chemical processing, steel mills, and many manufacturing companies that require process cooling. Additionally, commercial cooling towers can be used to provide comfort cooling to large commercial buildings such as airports, schools, hospitals, or hotels.

    Industrial cooling towers can be larger than HVAC systems and are used to remove heat absorbed by circulating cooling water systems used in power plants, refineries, petrochemical plants, natural gas processing plants, food processing plants and other industrial facilities.
    As the world‘s population has grown, the world‘s demand and requirements for manufactured goods have also grown tremendously. This forces the industrial sector to produce more and more products every day, thereby generating more manufacturing process heat.
    Industrial machines and processes that generate large amounts of heat must be constantly cooled so that these machines can continue to operate efficiently. The most effective, efficient and cheapest solution to remove this heat is to install an industrial cooling tower.

    5.Components of a Cooling Tower

    The Frame and Casing: This is the tower’s structure, usually made of robust material like metal or fiberglass.

    The Fill: This is where the action happens. The fill increases the contact area between the air and the water.

    The Cold Water Basin: This collects the cooled water at the bottom of the tower, where it’s sent back to cool the industrial process.

    The Drift Eliminators: These guys capture water droplets that could be carried away with the escaping air.

    The Fans: They draw air through the tower, aiding the evaporation process.

    6.Types of Water Cooling Towers

    Not all towers are suitable for all applications. Water cooling towers are designed and manufactured in several types and are available in many sizes. When determining the right tower for a project, it is important to understand the various types and their advantages and limitations. Under certain water treatment conditions, the cooling effect is one of the important performances of the cooling tower. When selecting a water cooling tower, the main consideration is whether there are special requirements for cooling degree, cooling water volume, and wet bulb temperature. It is usually installed in a place with good ventilation.


    According to the flow direction of hot water and air, there are cross-flow (AC) cooling towers and counter-flow cooling towers.
         Crossflow Cooling Towers
    In crossflow cooling towers the water flows vertically through the fill while the air flows horizontally, across the flow of the falling water.
    It is commonly used in residential areas with strict noise requirements, and is the most commonly used cooling circulation tower in the air conditioning industry.
    Energy saving, low water pressure, small wind resistance, low-speed motor, no dripping noise and wind noise, easy maintenance of filling and water distribution system.
    It should be noted that the frame needs 40% more filler volume when exchanging heat. The filler is easy to age, the water distribution holes are easy to be blocked, the anti-icing is not good, and the moisture backflow is large. The advantages of cross-flow towers are exactly the disadvantages of counter-flow towers.
           
           
    Counterflow Cooling Towers
    Counterflow cooling towers are designed so that air flows vertically upward, opposing the flow of water descending through the fill.
    Because of this vertical air flow, it is not possible to use the open gravity flow basins typical of cross-flow designs. In contrast, counterflow towers use a pressurized, pipe-type spray system to spray water onto the top of the packing.
    Since air must be able to pass through the spray system, the distance between the ducts and nozzles must be further apart to avoid restricting airflow.

    Round Tyoe Counterflow Cooling Towers

    According to circulating water circuit, there are open type water cooling tower and closed type water cooling tower
               Open Type Cooling Tower
    By spraying circulating water onto the glass fiber filler, heat exchange is achieved through the contact between water and air, and then a fan drives the air flow in the tower to circulate, taking out the hot air flow after exchanging heat with the water, thereby achieving cool down.

              Closed Type Cooling Tower
       ▷ The closed cooling tower has a fully closed circulation of cooling medium, which can prevent debris from entering the cooling pipeline system and evaporation loss of the cooling medium.
       ▷ Use soft water as the cooling medium, no scaling, no clogging of pipelines, and fewer failurs.
       ▷ Adopting dual cooling methods of air cooling and spray water evaporation and heat absorption, the cooling efficiency is high.
        The device is small in size, takes up little space, is easy to move and place, and does not require the construction of a pool.
       ▷ Using automated intelligent control, the cooling mode can be automatically changed according to working conditions, and the operation is simple and reliable.
       ▷ It has a wide range of uses and can directly cool quenching liquid, oil, alcohol and other media that have no corrosive effect on the heat exchanger. The medium has no loss and has stable composition.

    7.Cooling Tower Efficiency and Maintenance

    Proper maintenance is key to optimizing cooling tower efficiency and extending cooling tower life. This includes routine inspections, repairs and preventive measures to detect and resolve potential problems early. Here is an overview of the various steps involved in cooling tower maintenance.
    Regular cleaning
    Keeping your cooling tower clean is critical to its optimal operation. This includes cleaning the pool to remove any sediment and prevent algae growth, which can block water flow and reduce cooling efficiency. Additionally, the filling media within the tower should be kept clean to ensure maximum air-water contact.

    Water treatment
    The quality of cooling tower water directly affects the performance of the cooling tower. Regular water treatment, including the use of biocides, algicides, and antiscalants, can prevent problems such as corrosion, scaling, and biological growth that can damage cooling towers and reduce their efficiency.

    Mechanical component inspection
    The mechanical parts of the cooling tower, such as fans, motors, belts, etc., need to be checked regularly for signs of wear. Prompt replacement or repair of these components can prevent failures and maintain tower performance.

    Monitor cooling tower performance
    Regular performance monitoring is critical to ensuring your cooling tower is operating as efficiently as possible. This includes tracking key parameters such as water flow rate, air flow rate and cooling capacity. Any significant changes in these parameters may indicate a problem that requires immediate attention.

    Seasonal preparations
    Because cooling towers are exposed to the elements, they need to be prepared for different seasons. For example, it is crucial to properly winterize cooling towers before winter sets in. Instead, preparing for summer involves ensuring cooling towers can handle the higher loads associated with warmer weather.

    8.Contact Us to Learn More About Our Water Cooling Tower

    Don’t delay in making the best decision for your manufacturing business and your future by increasing your production capabilities with ooling tower. 
    Our probessional team will help you with any questions you have on our different kinds of cooling tower We look forward to hearing from you!



               250 Ton Square Type Closed Water cooling Tower
       
                      Technical Specifications Model:TW-250T
    Data
    Model
    Ton
    TW-250T
    flow
    M3/h
    195
    Air volume
    cmm
    1750
    Fan motor
    kw
    5.5
    drive
    direct
    noise
    dba
    55
    Net weight
    kg
    1080
    Running weight
    kg
    2800
    Pipe
    Water inlet
    mm
    200
    Water outlet
    mm
    200
    overflow
    mm
    80
    drain
    mm
    80
    Flow valve
    mm
    40
    Height
    Tower body
    mm
    3580
    cell
    mm
    2060
    Air in
    mm
     620
    Water basin
    mm
    900
    Water in
    mm
     280
    Water out
    mm
    280
    foundation
    mm
    300
    Diameter
    fan
    mm
    2135
    Water basin
    mm
    4120
    foundation
    mm
    4300
    screws
    mm
    16*12
    Material
    fan
      F.R.P./aluminum alloy
    Fan guard
      Galvanized steel
    motor
      T.E.F.C 380V 50HZ 3PH
    Motor support
      Galvanized steel
    casing
      Fiberglass reinforced polyester(FR.P.)
    Water basin
    Sprinkler system
      Alum.alloy/PVC pipe
    eliminator
      Fiberglass reinforced polyester
    Tension bar
      Galvanized steel
    Air inlet support
      Alum.alloy/PVC pipe
    Tower support
       
    ladder
      Galvanized steel
    piping
      PVC pipe
    In-fill support
      Polycarbonate&galvanized steel
    In-fill
      PVC film
     

    Remark:

    Design condition:water in temperature T1=37℃,water out temperature T2=32℃,wet ball

    temperature WBT=28
    ℃,water in/out  temperature TS=5℃,air pressure P=99400pA
     

    Please submit your basic information, we will contact you as soon as possible!

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