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  MIHIR ENGINEERS LTD.
Mumbai
 
 
 
 
Fm Series Cooling Towers

For every requirement of cooling tower there can be several economical solutions.

Our experienced technical team not only looks for economical solution but looks for optimal solution as well which satisfies the fan power, pump head, space requirement and other evaluation parameters contained in your specification.

Salient Features

Induced-draft counter flow
Highly efficient honeycomb PVC fill
Self supporting design in FRP material
Minimum usage of MSHDG components
Aerofoil shape energy efficient hollow FRP Fan Blades
Low operating weight

 
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Frm Series Cooling Towers

Mihir RCC Cooling Towers per cell have been a huge success in Power Plants and Process Industries

Design Advantage

Motor and Gearbox are directly coupled on a common mounting frame supported on a center RCC column thereby avoiding any vibrations commonly caused by misalignment of transmission shaft between motor and gearbox.
This unique concept of center RCC column allows Casing and FRP fan section to be kept independent of rotating parts like gearbox, motor and fan.

Cost Advantage

The operating costs of these towers are comparatively low as the power consumption is reduced by providing extra quantity of fills which increases the wetted surface area.
Fan Stack could be made in FRP to reduce onsite RCC activity and increase work productivity and faster execution.

Salient Features

Hurricane and Cyclone resistant by virtue of mass which increases the life of the tower.
RCC being a natural material defies the detrimental effects of heat and ultra violet rays making it immune to rot and decay.
Fan Stack/Section canbe supplied in FRP.
Entire load of PVC fills rests on RCC structure.
For contaminated water and water with suspended particles PVC fills of flute size 19mm can be used.
MOTOR: 1500 RPM, 415V TEFC, IP65 Weather proof, horizontally foot mounted.
Make: Siemens /Crompton/ equivalent
FAN: Axial flow fan with FRP blades and dynamically/ statically balanced, hub rotating below 288 RPM.

 
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Rcm Series Cooling Towers

Design Advantage

Motor and Gearbox are directly coupled on a common mounting frame supported on a center RCC column thereby avoiding any vibrations commonly caused by misalignment of transmission shaft between motor and gearbox.
This unique concept of center RCC column allows Casing and FRP fan section to be kept independent of rotating parts like gearbox, motor and fan.

Cost Advantage

The operating costs of these towers are comparatively low as the power consumption is reduced by providing extra quantity of fills which increases the wetted surface area.
Fan Stack could be made in FRP to reduce onsite RCC activity and increase work productivity and faster execution.

Salient Features

Hurricane and Cyclone resistant by virtue of mass which increases the life of the tower.
RCC being a natural material defies the detrimental effects of heat and ultra violet rays making it immune to rot and decay.
Fan Stack/Section canbe supplied in FRP.
Entire load of PVC fills rests on RCC structure.
For contaminated water and water with suspended particles PVC fills of flute size 19mm can be used.
MOTOR: 1500 RPM, 415V TEFC, IP65 Weather proof, horizontally foot mounted.
Make: Siemens /Crompton/ equivalent
FAN: Axial flow fan with FRP blades and dynamically/ statically balanced, hub rotating below 288 RPM.

 
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Pm Series Cooling Towers

Mihir, Continuing the grand tradition of continuous and constant innovation, it gives us immense pride in introducing our new range of complete FRP Counter Flow type Cooling Towers with Pultruded FRP Structure, the PM Series.

Our pultruded structure would be manufactured at our own state of the art in house pultrution manufacturing facility, making us the only cooling tower manufacturer in India to have such capabilities. This gives us complete control over design, manufacturing and quality control for these components. As a result we are also the only company in India who can offer pultruded FRP Cooling Towers for all sizes and applications very economically.

All our pultruded profiles are tested and certified by the prestigious Indian Institute of Technology, Madras.

These cooling towers would offer our customers great advantages, especially for highly corrosive applications where customers today have to opt for either RCC Cooling Towers or Cooling Towers with stainless steel structure. In comparison to these, pultruded FRP cooling towers would offer greater execution speed than the RCC Cooling Towers and would also be economical than stainless steel structures.

Design Advantage

FRP structural products are corrosion resistant to a broad range of chemicals. Pultruded Structures are not only light in weight but also have long life and high strength. Construction and Installation time is very less compared to RCC Cooling Tower.

Salient features

Structural Supports are of Pultruded FRP.
Hardware are of MSHDG which withstands corrosion, however Stainless Steel can also be provided.
Casing is also Pultruded FRP, giving a smooth finish on both the sides.
MOTOR: 1500 RPM, 415V TEFC, IP65 Weather proof, flange / horizontally foot mounted. Make: Siemens /Crompton/ equivalent.
FAN: Axial flow fan with FRP blades and dynamically / statically balanced, hub rotating below 288 RPM.

 

 
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Cm Series Cooling Towers

Mihir Polacel CM cooling tower operates according to the counterflow principle. The water to be cooled is fed into the tower at the top and is distributed by full cone nozzles with a low pressure drop, and flows down, in the form of a thin water film and small droplets, over the largest possible fill surface for the heat transfer.
The water falls through the fill and is collected in a FRP/RCC basin at the bottom of the tower. The atmospheric air is sucked in through the opening for air inlet on all sides at the lower portion of the tower and moves up through the PVC fill. The air moving up cools the falling water. Here the transfer of heat takes place by evaporation and direct contact. The air inlet is covered by HDG steel mesh or plastic louvers if air inlet height is less then one meter. In case of air inlet height above one meter, air entry is kept open for free flow of air.

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Selection of materials

The selection of materials for the Mihir Polacel CM cooling towers is based on the requirement that they must be completely resistant to corrosion and chemicals. This has been achieved through the exclusive use of PVC, polypropylene, fiberglass reinforced polyester (FRP) and hot dipped galvanized steel for supports.

Salient features

  • Casing, Basin, Fan deck and Fan stack in corrosion-resistant and fire-retardant FRP
  • Hot dip galvanized supporting structural.
  • Fill material of PVC (max. temp. 50 Degree C).
  • High efficient axial Fan with FRP blades and cast aluminum alloy hub.
  • Drift eliminators of PVC (drift percentage shall not exceed 0.05 of circulating water flow).
  • Water distribution system with GI/PVC pipe and PP nozzles.

Why Mihir Polacel CM cooling towers?

Energy efficient – use of high efficient fill, and nozzles with a low pressure drop.
Durable – use of high quality materials.
Guaranteed performance – use of PVC fill.
Attractive looks – use of FRP panels

 
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Rb Series Cooling Towers

IN 1976 MIHIR ENGINEERS gave India it’s First Round Bottle Shaped Counter Flow FRP Cooling Tower -RB Series

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The RB Series (Round bottle Shape)

Mihir FRP towers are modular in construction and embody many features of proven practical importance not available in other cooling towers.
Each unit effectively combines aesthetic appeal, functional efficiency, while at the same time reflecting the highest quality in design, engineering and workmanship.

You can safely rely on your MIHIR towers to provide dependable, trouble-free and satisfactory long-term service.
MIHIR towers of equal capacity may be cascaded and operated in tandem where system demand exceeds 300 TR.

 
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Xe Series Cooling Towers

The XE Series (Crossflow type)

The Mihir Polacel XE cooling tower operates according to the crossflow principle. The hot water to be cooled is fed into a closed FRP distribution pan, having holes in the bottom to equally distribute water over the cooling tower PVC fill. By evaporation and direct contact the water transfers heat to the air which is sucked in by an axial fan. The cold water is collected in a FRP basin at the bottom of the tower for recirculation.

Selection of construction materials:

Mihir Polacel has based the selection of construction materials for the towers on the requirement of complete corrosion and chemical resistance. This has been achieved through the exclusive use of PVC, glassfibre reinforced polyester and hot dipped glavanised steel.

The casing, water distribution system and air inlet Louver:

They are made of glassfibre polyester. It ensures long life and easy maintenance.

Fan unit:

A fan hood of glassfibre reinforced polyester ensures a smooth flow of the water-vapour saturated air towards the fan. The axial fan itself is made of cast aluminium and mounted directly to a low speed electrical motor, specially developed for use in very humid environments (IP 55).

Fill:

The cooling tower fill is made of PVC sheets which are suitable for a maximum water temperature of 50 Degree C . The low pressure drop of the crossflow packing causes low energy costs.

Low noise Level :

The axial fans on the XE cooling towers provide, in combination with a direct driving system and the low pressure drop of the fill, a low noise level.

Low energy consumption:

The gravity water distribution system saves pump energy.

Factory assembled:

Avoids assembly at site.

Easy to transport in a standard container:

A special feature of the XE series towers is thier size. They are designed to fit the size of the containers for transport. This saves costs of seaworthy packing for export.

 
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P.V.C. Fills

Stronglite offers a wide range of edge folded PVC fill products to meet specific applications. Our standard fill products meet the requirements used in counterflow cooling towers. Our fills are with both edges folded and achieve high surface area for given volume.

Stronglite PVC Fills are made by continuous forming and offer minimum resistance to airflow, providing more cooling by lower power consumption. They have uniform thickness throughout.

Durable folded edges provide strength at critical locations on the fill. The fills are easy to glue at site thus saving on transportation costs.

 
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Pultruded Profiles

A Pultruded composite profile is a combination of two or more materials, where the resultant material is superior to the individual component parts. STRONGLITE COMPOSITES’S product utilise these enhanced properties to the full.

Designed by an experience and talented team who know and understand composites, and manufactured by most advance techniques. Our products offer durable, long solutions at competitive price.

Pultruded Profiles have a wide range of application usage i.e. Cooling Towers, Work Platform / Pultruded grating, Bridge Decking, Ladders, Staircase, Cable Trays, Hand Rails, Structural Beams, Scaffolding, Tank Support, Fencing, Racking, etc.

Major Features and Mechanical Properties are shown below;

High Strength to Weight ratio.
Light in weight (approx. 25% of the weight of steel & 70% of the weight of Aluminium)
Easy to carry & transport.
Easy & fast installation.
High Corrosion resistant.
Low electrical & Thermal conductivity.
Ease of fabrication & User friendly (i.e. can be fabricated on field using simple carpenter tools, no torches or welding required).
Reduces life cycle maintenance cost.

The tables below enlist the properties of Pultruded FRP structures v/s other structural material that are commonly used in cooling towers today.

 
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  CONTACT US AT
MIHIR ENGINEERS LTD.
ADDRESS : 4b, Kakad House, A-wing, 11, Sir.v.thakersey Marg, (New Marine Lines)
Churchgate, Mumbai-400020 (Maharashtra)


Contact : Joy Trivedi,

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WEBSITE : www.goldenpages.in/mihirengineers
Contact Person :
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Cm Series Cooling Towers, Cooling Towers, Fm Series Cooling Towers, Frm Series Cooling Towers, Frp Cooling Towers, P. V. C. Fills, Pm Series Cooling Towers, Pultruded Profiles, Rb Series Cooling Towers, Rcm Series Cooling Towers, Xe Series Cooling Towers