TX-C Series is an induced draft cross-flow, film filled, FRP
multi-cell rectangular cooling tower designed for the equipment
cooling, industrial process cooling and air conditioning
applications. The TX-C Series Cooling Tower is designed to meet maximum performance,
reliability and minimum maintenance. The thermal performance of TX-C Series is backed by
full written guarantee. Field performance test to CTI standards can
be carried out and witnessed by the owners appointed inspection
engineer to ensure the supplied cooling tower meets the thermal
performance.
TX-C Series Cooling Tower are designed and provided with high quality v-belt
& pulley drive
system or right-angle gear reducer drive system for trouble free operation.
TX-C Series Counterflow Tower Specification
1.0 General
The cooling tower shall be induced-draft vertical discharge type, crossflow, rectangular, film filled, FRP Cooling Tower. It shall be designed with high efficiency drift eliminators to meet current environmental standards and guidelines for microbial control.
2.0 CAPACITY
Cooling Tower shall be capable of providing the thermal performance scheduled.
3.0 PERFORMANCE WARRANTY
The Cooling Tower manufacturer shall guarantee that the tower supplied will meet the specified
performance conditions when the tower is installed according to plans.
4.0 CONSTRUCTION
The cooling tower main frame structure shall be hot dip galvanized steel (HDG). The casing shall
be made of fiberglass reinforced polyester FRP.
5.0 MECHANICAL EQUIPMENT
5.1 Fan(s) shall be propeller-type, incorporating heavy-duty blades of aluminum alloy. Blades
shall be individually adjustable.
5.2 The V-belts shall be of rubber with fabric impregnated able to withstand the adverse
ambient conditions of 50°C and 100% R.H. The pulleys shall be cast iron with the grooves
of standard dimensions. The entire V-belt pulley set must be fully enclosed in a FRP
molded case to protect the v-belts from in contact with the humid discharge air.
5.3 Motor(s) shall be TEFC, weatherproof sq. caged induction type suitable for
3ph/50Hz/415V power supply and with 1450 rpm. Motor shall be installed outside the
discharge air stream.
6.0 INFILL
6.1 Fill shall be high efficiency hanging film-type, rigid, corrugated PVC sheets with
integral
louver and drift eliminator that are conducive to cooling tower and UV protected. Fills
shall be suspended from structural tubing supported from the upper tower structure, and shall be elevated at least 50mm above the floor of the cold water basin to facilitate
cleaning.
6.2 Drift eliminators shall be efficient enough to effectively limit drift loss to 0.005% of the designed flow rate.
7.0 HOT WATER DISTRIBUTION SYSTEM
An open basin above the fill bank shall receive hot water piped to each cell of the tower. Water
shall enter basin through a removable splash box. Removable and replaceable polypropylene
nozzles installed in the floor of the basin shall provide full coverage of the fill by gravity flow.
8.0 COLD WATER BASIN
The cold water basin shall be of FRP and supported on HDG steel framework. The basin shall be
designed with sufficient water capacity to avoid air entrainment in the outlet during operating
conditions. The basin shall be equipped with suction strainer, make-up ball valve, overflow and drain. For multiple tower arrangement, equalizing pipes between basins shall be provided to maintain the same level of water in each basin.
9.0 ACCESS AND SAFETY
Ladder shall be provided for inspection & maintenance purposes. HDG steel fan guard shall be
provided over each fan cylinder.