Cooling Tower Parts
The cooling tower is generally composed of filler (also known as cooling material) water distribution system, ventilation equipment, air distribution device, water drift eliminator, water collecting tank, water inlet and outlet pipes, etc. different combinations of the above structures can be constructed into different types of the cooling tower.
As a mature cooling tower manufacturer, we not only provide different types of cooling towers, but also various cooling tower spare parts.
You can choose from the following products according to your needs.
We are independent cooling tower engineers providing parts and services for all market sectors who are users of Water Cooling Towers, Evaporative Condensers and Dry Air Coolers. LATINO is a professional B2B portal based on our own manufacturing factory, has an experienced team in quality and project implement to support the purchasing activities of overseas customers in China; Our business involve in Germany, Australia, UK, Indonesia, Thailand, Belgium, France, Poland, India, Malaysia, Singapore and New Zealand, etc... The companyâ?²s main products are cooling tower parts, such as Film Fill, drift eliminator and spray system, UPVC distribution pipes, FPR winding splash pipe, FRP profile parts, FRP gratings, Fan stack, band & clamp, etc.; And based on customer requirements to provide more customized service products. Our factory has the largest capacity and have been working with the recognized brands of cooling tower in around the world, our team have rich experience in oversea projects, we were your colleague, knowing your care, your culture and your requirements. So we make it easy for you to purchase high quality and good value internal plastic parts of cooling tower in China. Our flexible ISO certified facility specializes in international projects - you can rely on us to deliver a successful project while reducing your total project costs!
Cooling tower motor is a new type of energy-saving and environmental protection improved motor, with protection grade of IP55, insulation grade of B, and power supply voltage of 380V and 50Hz. Generally, a closed waterproof motor is used in the cooling tower, which can operate for a long time in outdoor humid and high temperature environments. The cooling tower motor material is cast iron and aluminum shell. we also provide direct drive fan motors at good prices. You can select what you need from the different types of cooling tower motors Advantages of Cooling Tower Motor a. Cooling tower motor has soft start function. The cooling tower motor adopts professional soft start inverter, which reduces the influence of starting current on the frequency of cooling tower motor and prolongs the service life of cooling tower motor. b. More energy efficient. The overall design of the cooling tower motor is optimized, and the high-quality copper wire winding and silicon steel plate are selected to reduce various losses of the cooling tower motor, and improve the working efficiency and service life of the cooling tower motor. c. Be able to adapt to frequent speed changes in different situations. The cooling tower motor improves the efficiency coefficient, load rate and loss rate. d. The cooling tower motor uses electromagnetic design to reduce the resistance of the motor stator and rotor. Its electromagnetic design makes it improve work efficiency, reduce the motor low wear and noise advantages.
A 500-ton cooling tower is a type of cooling tower that is designed to remove up to 500 tons of heat per hour from water used in industrial processes or HVAC systems. A 500-ton cooling tower would typically be appropriate for large industrial applications, such as power plants, chemical manufacturing facilities, or large commercial buildings. The capacity of a cooling tower is determined by several factors, including the design of the tower, the temperature of the water to be cooled, and the humidity of the surrounding air. Cooling towers are essential components of many industrial processes and HVAC systems, as they help to maintain the desired temperature of water used in cooling applications. Proper maintenance and operation of cooling towers are important to ensure optimal efficiency and prevent the growth of harmful bacteria like Legionella. Cooling tower Features Large capacity: A 500-ton cooling tower is designed to handle a high volume of water flow and remove a significant amount of heat from the water. High efficiency: Many cooling towers are designed to be highly efficient, using advanced technology and innovative design features to optimize cooling performance and minimize energy consumption. Durable construction: Cooling towers are often constructed of materials such as fiberglass, stainless steel, or galvanized steel to ensure durability and resistance to corrosion and environmental factors. Fan and motor assembly: The fan and motor assembly is a critical component of the cooling tower, as it provides the necessary air flow to remove heat from the water. The motor and fan assembly is typically designed to be highly reliable and energy-efficient. Water distribution system: The water distribution system in a cooling tower is responsible for evenly distributing the water over the fill material to ensure maximum contact with the air flow. Fill material: The fill material is an important component of the cooling tower, as it provides a large surface area for water to be exposed to the air flow, facilitating heat transfer and evaporation. Drift eliminators: Drift eliminators are designed to capture and remove water droplets that are carried out of the cooling tower by the air flow, preventing water loss and reducing the risk of environmental impact. 500 Ton Cooling Tower Application A 500-ton cooling tower is typically used in industrial or commercial applications where large amounts of heat need to be removed from water. Some common applications of a 500-ton cooling tower include: Power plants: A 500-ton cooling tower can be used to remove heat from the water used to cool steam in power plants. This helps to maintain the efficiency of the plant by ensuring that the steam is cooled sufficiently before it is reused.
The cooling tower air inlet louver is also called air inlet grille, which is used to replace the air inlet shutter of the old cooling tower. The cooling tower air inlet louver is used by many cooling tower manufacturers because of its anti splash and anti sunlight. The cooling tower air inlet louvers can be used for cooling tower air inlets or other air inlets to block floating water. 300 Ton Cooling Tower vs 400 Ton Cooling Tower: A Comprehensive Comparison Introduction Cooling towers play a crucial role in industrial and commercial settings, maintaining optimal temperatures and ensuring efficient operations. Among the popular options are the 300 ton and 400 ton cooling towers. This article aims to compare these two types, helping you make an informed decision based on your specific needs.
Closed Circuit Cooling Tower Closed circuit cooling tower (also known as an evaporative air cooler or closed cooling tower) is the tubular heat exchanger placed in the tower, through the circulation of air, spray water and circulating water heat exchange to ensure the cooling effect. AUVC not only provides different shapes of cooling towers used in industries, such as round shape cooling towers and square cooling towers, but also offers closed cooling towers and open circuit cooling towers as well. The type of closed circuit cooling tower is widely used in iron and steel metallurgy, power electronics, machining, air conditioning system and other industries. How do closed circuit cooling towers work? Closed-circuit cooling towers make it possible to separate the evaporative circuit from the process circuit (customer circuit). A stainless-steel plate heat exchanger attached to the cooling tower, in its dedicated room, allows a glycol-free operation, and a simplified and unequalled ease of maintenance. The closed circuit cooling tower works as follows On the process side to be cooled (customer loop), the water to be cooled enters a plate heat exchanger connected to the tower and is cooled and discharged. The primary loop is closed and never comes into contact with air. On the secondary side of the cooling tower, the water is sucked out of the pool by a pump and circulated through a stainless steel plate heat exchanger. The water leaving the exchanger is piped to the top of the unit. This water is graded and evenly dispersed over the exchange surfaces by dispersers (also known as water distribution nozzles). Air driven by fans (axial or centrifugal) enters from the lower part of the cooling tower, is heated and saturated with water and exits from the upper part, passing between the exchange surfaces. Under the effect of the surface tension of the filler ladder, the water spreads uniformly and flows away over the entire height of the tower. The exchange surface is thus increased. The water cooled by forced ventilation falls freely into an inclined pool located at the bottom of the unit. Three reasons to choose a closed cooling tower No contamination in the primary circuit. Many civil and industrial processes require that process fluids be kept free from external environmental contamination: this is true, for example, of most food production processes. Closed-circuit cooling towers fulfil this need: in effect, the coils separate the process fluid from the ambient air drawn in by the fan, keeping it clean and contamination-free in a closed loop.
The cooling tower fan is located at the top of the cooling tower, which is directly connected with the motor or indirectly connected with the gearbox and pulley. The fan draws the hot air in the cooling tower after heat exchange from the top and guides the low-temperature air to enter from the air inlet of the bottom cooling tower. As a professional cooling tower manufacturer, we also provide plastic or FRP (fiberglass) cooling tower fans or fan blades at good prices. You can surely pick out what you need from the different types of industrial cooling tower fans below.
Closed Circuit Cooling Tower Closed circuit cooling tower (also known as an evaporative air cooler or closed cooling tower) is the tubular heat exchanger placed in the tower, through the circulation of air, spray water and circulating water heat exchange to ensure the cooling effect. AUVC not only provides different shapes of cooling towers used in industries, such as round shape cooling towers and square cooling towers, but also offers closed cooling towers and open circuit cooling towers as well. The type of closed circuit cooling tower is widely used in iron and steel metallurgy, power electronics, machining, air conditioning system and other industries. How do closed circuit cooling towers work? Closed-circuit cooling towers make it possible to separate the evaporative circuit from the process circuit (customer circuit). A stainless-steel plate heat exchanger attached to the cooling tower, in its dedicated room, allows a glycol-free operation, and a simplified and unequalled ease of maintenance. The closed circuit cooling tower works as follows On the process side to be cooled (customer loop), the water to be cooled enters a plate heat exchanger connected to the tower and is cooled and discharged. The primary loop is closed and never comes into contact with air. On the secondary side of the cooling tower, the water is sucked out of the pool by a pump and circulated through a stainless steel plate heat exchanger. The water leaving the exchanger is piped to the top of the unit. This water is graded and evenly dispersed over the exchange surfaces by dispersers (also known as water distribution nozzles). Air driven by fans (axial or centrifugal) enters from the lower part of the cooling tower, is heated and saturated with water and exits from the upper part, passing between the exchange surfaces. Under the effect of the surface tension of the filler ladder, the water spreads uniformly and flows away over the entire height of the tower. The exchange surface is thus increased. The water cooled by forced ventilation falls freely into an inclined pool located at the bottom of the unit. Types of Closed Type Cooling Tower
Cooling Tower Motors Cooling tower motor is a new type of energy-saving and environmental protection improved motor, with protection grade of IP55, insulation grade of B, and power supply voltage of 380V and 50Hz. Generally, a closed waterproof motor is used in the cooling tower, which can operate for a long time in outdoor humid and high temperature environments. The cooling tower motor material is cast iron and aluminum shell. Derived from one of the most rugged motor platforms used in the most demanding industrial applications, direct drive motors are the right solution for operation in hot and humid environments in towers. Direct drives are ideally suited for cooling towers, air-cooled condensers and air-cooled heat exchangers.
Cooling Tower Gearbox The gear reducer is designed as a kind of reduction equipment of a cooling tower, which is generally used for transmission equipment with low speed and large torque. It uses all levels of gear transmission to achieve the purpose of speed reduction. The gear is made of high strength low carbon alloy steel by carburizing and quenching, and it is widely used in metallurgy, mining, lifting, transportation, cement, construction, chemical industry, textile, printing, dyeing, pharmaceutical, and other fields. Advantages Low noise emission due to torsionally rigid housing Variable output bearing sizes for different ventilator types (depending on the ventilation track) Highest operational reliability due to one-piece housing, reinforced bearings and centrifugal disk on the ventilator shaft Additional cooling by means of a fan cooler on the input shaft Long service life due to optimized gearbox selection and use of high-grade materials Complete drive system from a single source As one of the professional cooling tower spare parts suppliers and cooling tower gearbox manufacturer, we provide different types of cooling tower parts, such as gearboxes. You can select what you need from the different types of cooling tower gearbox below.