SPX Cooling Technologies manual Recold / JW Series Fluid Cooler / Freeze Protection, Unit Model

Page 6

Recold / JW Series Fluid Cooler / Freeze Protection

6

For the most part, evaporative closed circuit coolers will be installed for operation on a year-round basis. Units installed in a cold climate must be provided with adequate freeze protection for both the recirculating water and the heat exchange coil for proper equipment operation and maintenance.

RECIRCULATING WATER

The operation of evaporative cooled equipment under approximately full load conditions will prevent freezing of the recirculated water. However, during periods of very little or no heat load when fans and pumps are shut down, some form of freeze protection must be used.

A simple form of freeze protection commonly used is a remote sump tank inside a heated building below the evaporative cooled equipment. The water circulation pump is located at the remote tank circulating water through the evaporative cooler during load conditions. When the unit is shut down, the water drains down into the remote sump tank which is in a heated atmosphere.

The remote sump installation may be unacceptable in some cases due to unit location or space limitations. For these applications, pan water freeze protection may be attained by means of an optional electric heater located inside the unit pan. Electric pan heaters are designed to prevent pan water freezing during unit shut down with fans and pumps idle.

Water lines to and from the unit, pump, pump discharge and drain lines must be wrapped with a heat-tracing element and insulated to protect them from freezing.

Table 1 Glycol Flow Correction Factors

Unit Model

Ethylene

 

 

 

Design Flow GPM

 

 

 

Glycol

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

JW/JWL

 

 

 

 

 

 

 

 

 

By Volume

40

50

70

90

100

125

150

175

Above

 

 

 

 

 

 

 

 

 

 

 

 

 

20%

1.07

1.05

1.02

1.00

1.00

1.00

1.00

1.00

1.00

10A thru 35C

30%

1.10

1.07

1.02

1.01

1.00

1.00

1.00

1.00

1.00

40%

1.14

1.11

1.05

1.01

1.00

1.00

1.00

1.00

1.00

 

 

50%

1.16

1.13

1.06

1.01

1.00

1.00

1.00

1.00

1.00

 

20%

1.12

1.09

1.05

1.03

1.02

1.00

1.00

1.00

1.00

50A thru 50C

30%

1.16

1.12

1.07

1.04

1.02

1.00

1.00

1.00

1.00

40%

1.19

1.16

1.11

1.06

1.04

1.01

1.00

1.00

1.00

 

 

50%

1.23

1.21

1.14

1.08

1.05

1.01

1.00

1.00

1.00

 

20%

1.15

1.11

1.09

1.06

1.04

1.03

1.01

1.00

1.00

70B thru 130C

30%

1.18

1.11

1.07

1.05

1.03

1.01

1.00

1.00

40%

1.20

1.15

1.10

1.07

1.05

1.03

1.00

1.00

 

 

50%

1.23

1.20

1.11

1.11

1.07

1.04

1.00

1.00

HEAT EXCHANGE COIL PROTECTION

The best means of heat exchanger coil freeze protection is to circulate an ethylene glycol water solution. The solution freeze points with respective ethylene glycol by volume are given in Table 11 below. This method will allow freeze protection irrespective of heat load or unit shut down.

Some applications will not permit the use of an ethylene glycol solution. Under these circumstances, other means of freeze protections must be used and the following rules strictly adhered to.

1.Maintain full flow through the coil

2.Maintain heat load on the coil at all time so that the leaving water temperature does not drop below +50°F

Full flow alone will not protect the coil. Temperature of +50°F must also be maintained.

Methods of maintaining the recommended fluid temperature may vary with system design and operation. A simple means of preventing heat loss may be to locate the unit indoors allowing a heated atmosphere. Adequate space and ductwork must be provided for proper operation.

Units operating in low ambient conditions with a heat load which becomes very low or drops off completely may require the addition of an artificial load to maintain safe fluid temperature. The amount of artificial load required may be reduced by means of discharge positive closure dampers. The addition of the dampers will prevent induced air circulation or the chimney effect which may occur during unit shut down.

The above methods of coil freeze protection, when properly applied and maintained will provide good equipment protection. All methods, other than those using an adequate antifreeze solution, should provide a means of emergency coil draining. It is recommended that automatic drain valves and air vents with vacuum breakers be installed on each coil circuit. Adequately size drains with heat-tracing tape and insulation should be provided for free drainage. Should the circulating pump fail or the water temperature leaving the coil drop below 50°F for any reason, the coil will automatically drain preventing freeze damage.

Freeze

 

Ethylene Glycol (by volume)

 

 

 

 

 

20%

30%

40%

50%

Point °F

14

3

-14

-38

 

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Contents Recold JW Series Fluid Cooler Recold / JW Series Fluid Cooler / Contents Nomenclature JW L 50 BRecold / JW Series Fluid Cooler / Construction Model Dimensions Far Side Near Side Drain Supply Recold / JW Series Fluid Cooler / SchematicAccess Doors TopRecold / JW Series Fluid Cooler / Engineering Data Air Volume FanPump Motor Spray Water Sump Heater Approximate Weight lb ModelRecold / JW Series Fluid Cooler / Freeze Protection Glycol Flow Correction FactorsUnit Model Recold / JW Series Fluid Cooler / Selection Procedure Load Btuh =Recold / JW Series Fluid Cooler / Load Factors Table no 72 WET Bulb Model No Recold / JW Series Fluid Cooler / RatingsTable no Selection Parameters Min-MaxTable no Ethylene Glycol Flow conversion Recold / JW Series Fluid Cooler / Pressure DropTable no Pressure Drop in PSI 100B 100C 115B 115CRecold / JW Series Fluid Cooler / Accessories Capacity Controls

JW Series specifications

The SPX Cooling Technologies JW Series represents a significant advancement in industrial cooling solutions, designed for maximum efficiency and performance in various applications. Engineered to meet the demanding requirements of modern facilities, the JW Series cooling towers combine innovative technologies with a focus on reliability and ease of maintenance.

One of the primary features of the JW Series is its robust construction, utilizing high-quality materials that ensure longevity and durability even in harsh environmental conditions. The towers are designed with a modular configuration, allowing for flexible installation and scalability to meet changing cooling needs. This adaptability makes the JW Series ideal for industries ranging from petrochemical and power generation to HVAC systems and manufacturing.

The JW Series is highlighted by its advanced heat transfer technology, which optimizes thermal performance while minimizing water consumption. The innovative fill packing is engineered to enhance the absorption of heat, allowing for more efficient cooling performance and reduced operational costs. This design not only improves efficacy but also contributes to lower environmental impact by conserving water.

In terms of energy efficiency, the JW Series is equipped with variable speed fans that adjust airflow based on real-time cooling requirements. This intelligent fan control system reduces energy consumption during periods of lower demand, translating to significant cost savings over time. Coupled with a state-of-the-art control system, operators can monitor and manage cooling operations remotely, ensuring optimal performance while minimizing personnel involvement.

Maintenance is simplified with the JW Series, which features access panels that provide easy entry to critical components for inspection and repair. The modular design of the components allows for quick replacement, reducing downtime and maintenance costs.

Another notable characteristic of the JW Series is its acoustic optimization. The cooling towers are designed to operate quietly, minimizing noise pollution in surrounding areas, which is particularly important for urban installations or facilities near residential neighborhoods.

In conclusion, the SPX Cooling Technologies JW Series stands out for its combination of durability, efficiency, and user-friendly design. With advanced technologies tailored to meet the challenges of today’s industrial cooling needs, it offers a reliable solution that can enhance operational performance and contribute to sustainable practices. These features combined make the JW Series an excellent choice for a wide range of cooling applications.