COOLING TOWER FILTERING

COOLING TOWER FILTERING
The most suitable VORTISAND® cooling tower filtering system will be chosen according to the tonnage of the refrigeration system, the circulation flow and/or the volume of water in the system. Other parameters such as temperature and maximum inlet pressure will also be considered.
  • cooling tower filtering

  • industrial HVAC towers water filtration

  • sidestream filtration

  • side stream filtration
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  • Easily installed high-efficiency filtration system for the removal of suspended solids in cooling towers or chilled/hot water loops, down to 0.45 micron. Unique design provides high-performance results using a concept that combines centrifugal separation and sand filtration. Side-stream installation handles flow rates and cleans automatically without interruption of the system flow.  Continuous cooling tower filtering will provide clean, clear water when used in conjunction with chemical treatment programs that alone, cannot guarantee.  Greater benefits will result from very fine particles removal.  Our proven technology will maximize chiller performance and provide very short energy payback. Also can be use for pretreatment for RO/DI, wastewater treatment or reuse to remove SS to meet discharge limits. Chemical treatment alone will not solve the problem. Particles must be removed in order to prevent corrosion, slime formation, and bacterial contamination. Ultrafine filtration, in conjunction with the chemical treatment program will improve the efficiency of heat exchangers, and reduce the regular cleaning of the cooling tower sump and pipes. The VORTISAND system will eliminate most of the very fine suspended solids and airborne contaminants from the recirculation water. The VORTISAND filter is suitable for both hot water heating and chilled water applications (cooling tower filtering or closed loops).
    High efficiency at low turnover rates allows us to reduce the size of the cooling tower filtering compared to traditional sand filters which require a minimum of 24 turnovers/day to be efficient.
    Reducing the flow rate of the cooling tower filtering means less HP for the pump for electricity savings and less space requirement.

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