SPX Cooling Technologies 1000, 1200 specifications Fill, Louvers and Drift Eliminators

Page 19

Marley / Sigma 1000/1200 CoolingTower / Specifications: Base

Specifications

Specification Value

6.0Fill, Louvers and Drift Eliminators:

19

6.1

Fill shall be film-type, 15 mil thick,

Louvers integral with the fill

 

thermoformed PVC, with louvers

keep the flowing water within

 

formed as part of each fill sheet. Fill

the confines of the fill. The sep-

 

shall be suspended from stainless

arate external louvers used by

 

steel structural tubing supported from

others permit water to escape

 

the upper tower structure, and shall

the fill and form ice or produce

 

be elevated above the floor of the cold

an unsightly situation adjacent

 

water basin to facilitate cleaning. Air

to the tower. If you plan to use

 

inlet faces of the tower shall be free of

your tower in the wintertime,

 

water splash-out.

particularly for free cooling,

 

 

integral louvers will put your

6.2

Drift eliminators shall be PVC, triple-

operating concerns to rest.

 

pass, and shall limit drift losses to no

Vertical blade-type eliminators, as

 

more than 0.010% of the design GPM

 

flow rate.

well as misdirected cellular types, cause

 

 

much of the fan power to be wasted in turn-

 

 

ing the horizontal flow of air vertical for its exit through the fan

 

 

cylinder. This power is, of course, not available for contribution to

 

 

thermal performance.

 

 

Drift rate varies with design water loading and air rate, as well

 

 

as drift eliminator depth and number of directional changes. The

 

 

indicated rate of 0.010% or less is easily achievable without pre-

 

 

mium cost. If a lower rate is required, please discuss with your

 

 

Marley sales representative.

Louver

Section

Fill Section

Drift Eliminator Section

Image 19
Contents Marley Sigma 1000/1200 Cooling Tower Marley / Sigma 1000/1200 CoolingTower / Table of Contents Marley / Sigma 1000/1200 CoolingTower Height Maximum Static Model Endwall ElevationTower WidthPlan Dimensions ModelMarley / Sigma 1000 CoolingTower / Engineering Data Support Operating Weigt lb Model Flat Basin SectionWidth Length Height Maximum Static Model Endwall HElevationEndwall Elevation G Dimensions Model Per CellMarley / Sigma 1200 CoolingTower / Engineering Data Support Operating Weight lb Model Single Cell Each Cell Add Variable Speed Control Two-Speed MotorsEnclosures System CleanlinessSound Control Base Marley / Sigma 1000/1200 CoolingTower / Specifications BaseUnder no circumstances should you allow the manufacturer to Thermal PerformanceAlty on the manufacturer Indicated below and following ConstructionWood Even in aggressive water conditions, the heavy construction Fan Deck and Fan CylinderFan guard normally precludes the need for stainless steel Unitized support normally precludes the need for stainless Mechanical EquipmentSteel Fill, Louvers and Drift Eliminators Hot Water Distribution System AccessCasing Scope of Work Cold Water Collection BasinSpecifications Specification Value Basin Heater Marley Premium VFD System Vibration Limit Switch Ladder Extension Convenience and Safety Options StairwayLadder Safety Cage Plenum WalkwayHot Water Basin Covers Oil Level Sight GlassMiscellaneous Options Wood Cold Water Basin Redwood ComponentsLow Noise Tower Watertight Partitions Between Cells Fire Safety OptionsPage Page West 129 Street Overland PARK, Kansas 66213 United States
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1000, 1200 specifications

SPX Cooling Technologies, a prominent player in the cooling solutions market, is known for its cutting-edge designs and innovations in the field of cooling systems. Among its notable offerings are the SPX Cooling Technologies 1200 and 1000 series, which are engineered to meet the demands of various industrial applications.

The SPX Cooling Technologies 1200 series is renowned for its efficiency and robust construction. One of its main features is its modular design, allowing for easy installation and maintenance. This series is equipped with advanced cooling technology, enhancing energy efficiency while minimizing operating costs. The 1200 series utilizes a counterflow design, promoting improved heat exchange and a more direct airflow pattern. This results in higher thermal performance and reduced energy consumption, making it an ideal choice for operations that prioritize sustainability and cost-effectiveness.

On the other hand, the SPX Cooling Technologies 1000 series is tailored for versatility and reliability. This series boasts a design that accommodates a range of capacities and configurations, making it suitable for diverse applications, including HVAC, industrial processes, and power generation. One of the standout characteristics of the 1000 series is its handling of large thermal loads with minimal pressure drop, which ensures optimal performance in challenging conditions. Its corrosion-resistant materials enhance durability, making it resilient in harsh environments.

Both series incorporate advanced fan technology, which is designed to maximize airflow while minimizing noise levels. The fans are individually controllable, allowing for precise adjustments to meet specific cooling demands. Furthermore, these cooling towers are designed with user-friendly accessibility, simplifying maintenance and inspection processes, thereby reducing downtime.

SPX Cooling Technologies also places a significant emphasis on innovation. Both the 1200 and 1000 series are built with predictive maintenance capabilities, leveraging IoT technologies to monitor performance metrics in real time. This proactive approach enables facility managers to anticipate maintenance needs and address issues before they escalate into costly failures.

In summary, the SPX Cooling Technologies 1200 and 1000 series represent a substantial advancement in cooling technology, providing efficient, reliable, and modular solutions for various industrial applications. Their design, efficiency, and advanced features position them as leaders in the market, responding to the evolving needs of industries worldwide.