Marley MD Everest Counterflow Cooling Tower

When SPX Cooling Technologies engineers began their quest to design a new counterflow cooling tower, they were challenged to reach new heights in cooling performance. Also required was a tower design that would simplify and speed factory fabrication, delivery and field assembly.

The MD Everest Cooling Tower is uniquely suited for applications with higher cooling demands, including data centers, district energy complexes, health science campuses and industrial complexes. It incorporates robust materials of construction and industrial-grade components, proven to withstand the rigors of harsh environmental exposure. And its unique design comprises preassembled modules with fewer components, delivers to the job site up to 60% sooner and installs up to 80% faster than field-erected cooling towers.

Description

Assembly

Factory Assembled
Brand: Marley

Configuration

Counterflow
Induced Draft
Availability: Worldwide

Capacity

Flow Rate: 1555 – 12602 gpm (1808-2862 m3/hr)
Thermal Capacity: 1227 – 3790 tons (5394-16676 kW)

Certifications

CTI Certified
Eurovent Certified
FM Approved Options
OSHA Compliant

HVAC and Process Cooling Applications:
Compared to other preassembled counterflow cooling towers, the MD Everest Cooling Tower offers monumental advantages for HVAC and Process Cooling applications:

  • Up to 58% more cooling capacity than other preassembled cooling towers
  • Cooling capacities from 1227-3790 tons offer one-to-one matches for large chillers
  • Fewer piping and electrical connections reduce installation costs
  • Low drift rates, down to 0.0005 percent of circulating water flow

Process Cooling Applications:
Compared to field-erected towers, the MD Everest Cooling Tower offers sky-high advantages for Process Cooling applications:

  • Industrial-strength construction and materials to meet the rigors of process cooling applications
  • Maximum flow rate up to 12,602 gpm/cell (2862m3/hr) to meet demands of process cooling
  • Modular design for consistent quality and safer assembly processes and shorter work duration
  • Broad range of heat transfer fill types to accommodate varying water quality
  • Scalable design based on project requirements

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