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Page 1: PLA TE FRAMEbombasysistemas.com.mx/web/pdf/Superchanger.pdf · 2014-01-20 · 5 The large SUPERCHANGER units shown here cool closed-loop water which is used in cooling automatic welding

SC-9

P L A T E&

F R A M E

Page 2: PLA TE FRAMEbombasysistemas.com.mx/web/pdf/Superchanger.pdf · 2014-01-20 · 5 The large SUPERCHANGER units shown here cool closed-loop water which is used in cooling automatic welding

Engineered Heat Transfer SolutionsFor Typical Applications Around The World▲ District Chilled Water Coolers

▲ Heating and Cooling Plating Solutions

▲ Waste Heat Recovery from Condenser Water

▲ Solar Collector Fluid Isolation

▲ Heat Recovery from De-inking Effluent

▲ Preheat Make-up Water in Photo Processing

▲ Welder Water Coolers

▲ Cooling Anodizing Solutions

▲ Heat Recovery in Co-generation Facilities

▲ Cooling Machine Oil

▲ Cooling Quench Oil

▲ Cooling Grinder Coolant

▲ Turbine Cooling in Power Plants

▲ Geothermal Water Isolation

▲ Lube Oil Cooling

▲ Cooling Engine Jacket Water

▲ Heating Ship Service Water

▲ Cooling Electronic Equipment

▲ Heating or Cooling Jacket Fluid for Chemical Reactors

▲ Heating of Electrolyte Solution in Copper Mills

▲ Jacket Water Cooling in Black Liquor Recovery Process

▲ Heating White Water in Paper Mills

▲ Hydraulic Oil Coolers

▲ Cooling Ammonia Liquor at Coke Plants

▲ Isolation and “Free Cooling” in HVAC

▲ Heating and Cooling Chemical Solutions

▲ Cooling Bleach Solutions

▲ Heat Recovery from Lean to Rich Amine Solutions

▲ Paint Coolers

▲ Heating Phosphatizing Solutions

▲ Acid Coolers

▲ Heat Recovery from Boiler Blowdown

▲ Heating and Cooling Kaolin Slurries

▲ Heating Wash Water

▲ Heating and Cooling Sugar Solutions

▲ Ethanol Distillation

P L A T E&

F R A M E

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I S O 9 0 0 1 C E R T I F I E D

At the forefront of heat exchangertechnology for over 60 years.

Tranter PHE is a global heat transfer company with representatives around the world. We havebeen at the forefront of plate heat exchanger technology for over 60 years and are a part of Dover

Corporation—a multibillion dollar, NYSE-traded, Fortune 200 diversified team of companies—offeringproprietary products and components for industrial and commercial applications around the world.

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Tranter’s commitment to superior plate-type heat exchanger design has establishedit as a leader in the selection and specifi-cation of a plate and frame heat exchangerfor maximum performance and economy.

Tranter, inc. has been in the forefront ofheat transfer technology, and has solvedthousands of heat transfer problems in a variety of industries. Our completeengineering and manufacturing expertisebrings you equipment that meets thehighest standards of design excellenceand quality workmanship.

Our specialists stand ready to showyou how Tranter heat transfertechnology canprovide efficient,cost-effective solutions to problemsarising from increased pro-duction and budget demands.

Sizing and specifying aheat exchanger to efficientlyand economically satisfy aspecific duty is somewhat morecomplicated than commonlyenvisioned. Many variables—design pressure, flow rate,pressure drop, nozzlevelocity and materialcompatibility, amongothers—must be con-sidered before the optimal unit for the specific requirement can be determined.

Optimum performance is a promiseTranter technical specialists have beenfulfilling for many decades with SUPERCHANGER plate and frameheat exchangers.

Plate & Frame ForMaximum EfficiencyThe SUPERCHANGER heat exchangeris designed to provide maximum efficiencyin transferring heat from one liquid toanother, or from steam to liquid.

It consists of a series of gasketed,embossed metal plates arranged alternatelyand bolted together between end framesto form channels through which hot andcold media flow. The hot fluid flows onone side of the plate while the cold fluidflows on the other, with the plate itself

providing the most effective

means totransfer heat from

one fluid to the other. Gasketsmounted on the plates seal the

channels and provide flow direction.

As liquids flow counter-currentlythrough the channels between the plates,the cold liquid becomes warmer and thehot liquid cooler. Most units are designedfor a one pass/one pass flow arrangementresulting in all nozzles being installed onthe stationary end frame, which facilitatessimpler piping arrangements and easier disassembly.

Due to its high efficiency, the SUPERCHANGER unit can handletemperature approaches of less than 2°F. It also offers “U” values significantlygreater (> 1500 Btu/hr ft2 °F) than otherexchangers, due to the unique turbulencecreated by its corrugated plates, whicheliminates stagnant areas in liquid flowand promotes maximum heat transfer.This translates to a less expensive andmore compact heat exchanger, occupyingmuch less space.

The unit’s velocity profile and inducedturbulence causes dirty product depositsto be continually removed from the heattransfer surface during operation, thereby

reducing fouling.

Effective use of theplate’s turbulencecan be made within-place cleaningwhich allows back-flushing water orpumping cleaningsolutions into the unit without disas-sembling. Units can

also be taken apart forcleaning the plate surfaces. Plates

can be electropolished to make cleaningeasier, either manually or in-place.

Plate & Frame Heat Exchanger Technology

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Several sizes and styles of SUPERCHANGER units.

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Efficiency, cost effectiveness, high perform-ance, minimal maintenance and serviceare demanded by every industry and com-mercial or governmental entity in today’shighly competitive, technological world.

Plate and frame heat exchangers havedemonstrated their superiority in satisfy-ing these demanding needs over other types of heat exchangers—and the best of plate and frame are Tranter’s SUPERCHANGER units.

SUPERCHANGER heat exchangers aredaily performing critical duties in a widevariety of applications around the world.

Stainless steel and high alloy plates inSUPERCHANGER units are performingextensive duties in chemical and petrochem-ical plants. Titanium plates on space savingshipboard units are being utilized in avariety of seawater cooling duties.

SUPERCHANGER units are effectivelybeing used for electrolyte heating andcooling rolling mill coolants in a basicmetals operation. Giant units are deliveringefficient district cooling for office buildingsin major metropolitan areas.

Heating, cooling and heat recovery applica-tions in a wide array of industries include,

but are not limited to:

• automotive production

• chemical processing

• food processing• HVAC operations• offshore oil and

gas production• oil and gas

processing• onboard marine

vessels• power generation• steel and other

metal production• pulp and

paper mills• textile plants• pharmaceutical• mining• grain distilling

Efficient Heat Transfer For Every Industry

Thousands of SUPERCHANGER heat exchangersare in HVAC service for free cooling and isolationpurposes. Free cooling payback is typically less than one year.

Pictured here is a SUPERCHANGER heat exchanger performing one ofhundreds of duties in the food processing industry, which include processheating or cooling (many with viscous fluids), basic water heating and heat recovery from waste streams.

SUPERCHANGER heat exchangers recover heat very efficiently because of their high heattransfer rates and close temperature approach capabilities.

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The large SUPERCHANGER units shown herecool closed-loop water which is used in cooling automatic welding machines. Other major automotiveapplications are heating wash, phosphate and rinse solutions, and temperature control of paint, plating solutions, etc.

Two SUPERCHANGER units—installed in a bypass circuit so that the chillers can be shut down whenever outside temperatures drop below45°F—have reduced energy consumption up to57% in a major Southeastern high-rise complex.Included in the complex are one hotel, two towers,three condominium buildings, one large mall and a number of small buildings.

Primary power applications involve cooling of condensate, turbine bearing oil, ash handling systems, oil sumps, etc. Many duties include secondary exchangers to a central cooling unit.

Cooling bleach solutions, digester heat recovery,cooling white water and heat recovery from boilerblow down are some of the numerous applicationsin the pulp and paper industry.

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GFP-Wide-Gap PlatesWide-Gap plates are most effective inapplications which involve viscous fluidsor solids and slurries. These normallycause extensive clogging and downtimefor cleaning with standard plate andframe or shell and tube heat exchangers.Our plates have a draw depth two to fivetimes greater than conventional plates,permitting unrestricted passage of coarseparticles and fibers.

Plates can be arranged in a wide/narrowconfiguration when only one fluid withlarge particulates requires a wide gap, orplaced in a medium/medium positionwhen both fluids need the additional

flow area. Both configurations are accom-plished with a single plate geometry.

Wide-Gap plates are excellent for steamapplications as well.

GFP WashboardWashboard plates, with corrugations in awashboard pattern, are used in numerousapplications involving viscous liquidsand solutions containing solid particles.They handle larger particle sizes thanherringbone plates and are less prone toparticulate fouling because of fewer metal-to-metal contact points and a widerinterspace clearance.

GCP-Series PlatesThe latest GCP High NTU, and LowNTU, plates feature an innovativeredesign of the flow distribution area,and are very suitable for both steam andviscous fluid applications requiring highheat transfer rates, at low pressure drops.

Precise Plate Selection

GFPWide-Gap Series

GFPWashboard

GCP-High NTUSeries

GCP-Low NTUSeries

UXP-SeriesHerringbone High NTU

Wide/Narrow

Medium/Medium

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7UXP-Series

Herringbone Low NTU

SXP-SeriesHerringbone High NTU

SXP-SeriesHerringbone Low NTU

GXD-SeriesHigh NTU

GXD-Series Low NTU

UXP-Series PlatesUXP-Series plates have corrugations in a traditional herringbone or chevron pattern, offering a variety of thermallengths. They are used in a multitude of applications, and are generally moreefficient with relatively clean solutionsdue to greater induced turbulence within the flow stream.

SXP-Series PlatesSXP-Series plates complement UXPplates. Their tighter pitch and smallerinterspace clearance generate greater “U”values and higher pressure ratings.

Mixed PlatesIn many applications, better heat transferperformance can be achieved by unitswith mixed High and Low NTU plateshaving varying angles. In these duties,fewer plates are required because thermaland hydraulic requirements can bealmost exactly matched.

GXD-Series PlatesEspecially when flows are unbalanced andthe allowable pressure drops are reasonablyclose, Tranter utilizes its GXD-Series platedesigns. Better accommodation of unequalflow rates, which optimizes pressure dropand heat transfer rates for both fluids,

furnishes the best overall system efficiencyand results in a lower cost unit.

GXD plate technology utilizes two assymetrical plate patterns to create six different flow channel configurations.And, with more than one hundred available plate combinations, we can better fit your specific heat transfer needs.

A Variety of SizesThe plate data chart on page 8 illustratesthe multitude of sizes available in each series.

Illustrations shown here are not drawn to scale. NTU = thermal length.

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Plates are available in three models–designated GFP-050, GFP-100 andGFP-180, with heat transfer areas of5.3, 9.0 and 16.8 sq. ft., respectively.

A SUPERCHANGER heat exchangerutilizing Wide-Gap plates economical-ly recovers heat from hard-to-handlewaste streams in a variety of indus-tries, including pulp and paper, sugarprocessing, alcohol production, grainprocessing, chemicals, textiles andethanol distilling.

The plate design is also excellent forlow pressure steam since the wide gapwill more readily accommodate thehigh volumetric flows typical of lowpressure steam applications.

Plate MaterialsStandard materials are 304SS,316SS and titanium. Customrequirements for Hastelloy C-276,254SMO or other alloys which canbe cold formed can also be accom-modated.

Standard plate thicknessis .8mm, with a 1mmoption available.

Gasket MaterialsNBR or EPDM gasketsare offered as standard.Maximum temperaturewith NBR or EPDMgaskets is 250°F.

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GFP-Wide-Gap Plates DefeatClogging and Downtime

Wide-Gap Plate Specifications

Model No.Heat Transfer Plate Plate Design Nozzle Area, sq. ft. Height, in. Width,in. Pressure, psig Size, in.

GFP-050 5.3 54 27.75 150 8

GFP-100 9.0 72 27.75 150 8

GFP-180 16.8 110 27.75 150 8

Maximum Particle Size

GapMaximum Particle, in.

Narrow 0.14

Medium 0.28

Wide 0.40

GFP-057

GFP-097

GFP-187

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Tranter PHE’s new GXD plate technol-ogy provides SUPERCHANGER PHEswith features that now surpass conven-tional design barriers. Offering thebroadest selection of plate patterns andsizes in the heat exchanger market,SUPERCHANGER units provide moreplate combinations for maximum systemefficiency. This means more options tomeet all of your HVAC heat transferrequirements through:

• Lower operating costs realized throughmaximum thermal efficiency, reducedfouling and less frequent cleaning;

• Closer temperature approaches;

• Reduced cooling media volume, sinceflow characteristics for both fluids canbe optimized; and

• Better accommodation of unequal flowrates that optimize pressure drop andheat transfer rates for both fluids, fur-nishing the best overall system efficiency.

The GXD plate technology utilizes twoplate patterns to achieve six differentflow channel configurations. Why is thistechnology better? Having the option tocreate six different configurations withjust two plate styles allows us to moreclosely optimize the pressure drop to theheat transfer requirement—a better

match to your needs as you go beyondconventional design to stay ahead ofyour competition.

Partial List of ApplicationsCooling

Cooling Tower Water Circuit Isolation

“Free Cooling” During Moderate Temperatures

Isolation and “Free Cooling” Combination

Isolation of River, Lake, Waste or Seawater Coolants

Static Head Isolation in Tall Buildings

Thermal Storage—Isolation of Storage Tank

Water Source Heat Pump Precooler with Isolation

Heating and Heat Recovery

Waste Heat Recovery from Condenser Water

Water Source Heat Pump Isolation

Waste Heat Recovery from Condensate or Boiler Blow-down

Solar Collector Fluid Isolation

Waste Heat Recovery from Overheated Areas

Geothermal Heating Isolation

District or Zone Heating Building Isolation

Heating Water/Glycol Fluids for Space Heating

HS HD MS LS MD LD

Two Plates Achieve Six Combinations

Key: H = High-NTU plates S = Same direction M = Mixed high- and low-NTU plates D = Different directions L = Low-NTU plates

High-NTU Plate Low-NTU Plate

1 2

GXD-serieshigh

NTU plate.

GXD Plate Technology OffersUnparalleled Plate Selection

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GC-205GC-206GC-207

GC-505GC-506GC-507

GC-605GC-606GC-707

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GCP-Series PlatesApplications where low pressure dropis required or unit sizing is limited bypressure drop are a perfect match forthe GCP-Series plate.

Tranter PHE’s GCP-Series plates—GCP-026, GCP-051 and GCP-060—are designed with a conventional her-ringbone pattern, with the gasketgroove in the bottom plane. The platedesign is similar to Tranter PHE’sUXP and SXP -Series in that flowdirection is parallel (or vertical) incontrast to the GXD-Series, whichfeatures diagonal flow across theplate. Due to the deeper draw depthand the “chocolate” pattern in theflow distribution area, the GCP-Series plates yield a significantlylower pressure drop than the corre-sponding GXD-Series plates. Bothhigh and low NTU version are avail-able in all three GCP-Series lates.This allows the flexibility to satisfy awide rang of applications.

The GCP-Series frame dimensions are identical to their GXD-Series counterparts:

GCP-026 = GXD-026

GCP-051 = GXD-051

GCP-060 = GXD-060

Applications suitable for the GCP-Series plates are those where low pressure drop is critical, or where unit sizing tends to be limited bypressure drop (low NTU).

Typical examples are:

Steam-to-liquid

District Heating

Engine Jacket Water Cooler

Heating/Cooling Viscous Materials

Tranter PHE has already providedmany GCP-Series units in the auto-motive (phosphate, paint, etc.) andbasic metals industries.

Standard plate materials are 304SS,316SS and titanium, but require-ments for Hastelloy C-276, 254SMOor other cold-formed alloys can beaccommodated. Standard gasketmaterials are NBR, EPDM andFluoroelastomer.

GCP-Series Plates UtilizeInnovative Flow Design

Heat Transfer Area, ft2 2.8 5.92 5.92

Plate Width in.

15.2 19.9 27.75

Plate Lengthin.

37.1 53.4 47.1

Maximum ASME CodePressure Stainless (PSI)

0.5 mm = 1850.6 mm = 2300.7 mm = 300

185230300

185230300

Maximum ASME CodePressure Titanium (PSI)

0.5 mm = 1000.6 mm = 1750.7 mm = 230

100175230

100175230

Plate Model

Specification

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Tranter PHE GW-Series plates are themost efficient semi-welded plates avail-able in the market. Semi-welded platesoffer the same advantages as standardplate and frame units, yet overcomepressure limitations and avoid chemicalresistance to gaskets.

Semi-welded plates are formed fromtwo cassettes that are laser-weldedtogether. The cassettes are separated bystandard gaskets such as EPDM, NBR,or Viton. The welded pairs allow foraggressive fluids or refrigerants betweenplates, while the other media flowsacross gasketed channels.

Double-Wall Plates (GD)The double-wall plate heat exchangeris intended for use where the two fluids on each side of the plates shouldnot mix—due to possible contamina-tion or an undesirable reaction.

If a leak through one of the plates oraround one of the gaskets shouldoccur, the fluid is vented to the out-side of the heat exchanger before anyintermixing can occur. The leak isimmediately evident even before disassembly of the heat exchanger.

Some popular industries and applications that utilize GD-Seriesplates include:

• pharmaceutical industry• food industry• district heating • cooling of transformer oil• deionized water

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A Closer Look at Double-Walland GW-Series Plates

Gaskets

Fluid 1

Fluid 2

The possibility of intermixing is virtually elimi-nated by nesting two plates together and weldingthe port holes.

GW PlateGasketLaser Weld

The nested plates are gasketed and assembled toform the plate pack.

GW-Series Plates

Conventional PlateGasket

Heat Transfer Area, ft2 (m2)

1.72 (0.16) 9.69 (0.90) 9.26 (0.86) 19.58 (1.82)

Plate Width in. (mm)

9.84 (250) 26.45 (672) 26.22 (666) 41.10 (1044)

Plate Lengthin. (mm)

37.40 (950) 68.86 (1749) 71.46 (1815) 89.65 (2277)

MaximumConnection Size

2"* 8" 8" 14"

GW-80 GW-400 GW-500 GW-900

MaximumNumber of Plates

212 400 400 Not fixed

* Can use 3" if one side is elbowed 90˚.

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A Wide Range of Choices

The broad range of materials currentlyavailable for SUPERCHANGER plateand frame heat exchangers provides adiverse selection for meeting an excep-tionally wide variety of individual needs.

Plate ChoicesSUPERCHANGER plates are pressed in Wichita Falls, Texas, and produced invirtually any metal that can be cold-formed, including stainless steels (304,316, 317, etc.), titanium, Monel®,

nickel, alloys 825, 20Cb-3, B-2, C-276,and a variety of other materials.

Plates are available in sizes ranging from.34 sq. ft. to 36.27 sq. ft., and in thick-nesses from 0.5mm (0.020 in.) to1.0mm (0.039 in.).

Frame ChoicesTranter offers both solid and reinforced end frames which can be ASME Code stamped up to a design pressure of 400 psig. Standard frames are constructed with baked epoxyenamel painted carbon steel, zinc plated tightening bolts andaluminum shrouds. Compact versions with no support columnare available on some units. Stainless steel tightening bolts andconnecting frames are optional.

Table 1 Plate Data

TRIAL UNITS — SUPERCHANGER units are available on a 90-day, no-charge basis for customer in-plant testing and evaluation. Contact your Tranterrepresentative for information on the SUPERCHANGER trial unit policy.

Model

Heat Transfer Area Per Plate(ft2)

GCD-12

.34

UXP-005

.64

GXD-006

.75

GXD-007

.75

GCP-028

.86

GCP-030

.91

UXP-010

.94

GXD-012

1.29

GLD-013

1.29

GCD-016

1.45

GCD-010

1.46

Model

Heat Transfer Area Per Plate(ft2)

GWP-080

1.73

GXD-018

1.94

UXP-100

2.15

GCP-026

2.80

GXD-026

2.91

GFP-030

3.38

GXD-037

3.98

UXP-200

4.04

GXD-042

4.74

GFP-050

5.32

GCP-051

5.81

GWP-400

9.69

SXP-400

9.69

GXD-085

9.80

GXD-091

9.80

GXD-100

10.87

UXP-110

11.79

GXD-118

12.70

SXP-140

13.69

GXD-140

15.72

GXD-145

16.47

GFP-180

16.80

Model

Heat Transfer Area Per Plate(ft2)

Model

Heat Transfer Area Per Plate(ft2)

GXD-051

5.92

GCP-060

5.92

GXD-060

6.03

UXP-060

6.10

GXD-064

6.89

SXP-070

7.24

GFP-080

7.64

UXP-400

8.18

GFP-100

8.96

GCD-010

8.97

GWP-500

9.26

UXP-800

18.30

GWP-900

19.58

GXD-180

20.56

GXD-205

23.04

GLP-230

25.50

UXP-960

28.74

GXD-265

29.71

GLP-330

35.19

GXD-325

36.27

GLP-430

44.90

Model

Heat Transfer Area Per Plate(ft2)

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No Cross-contamination With Gasket/Bleed Port DesignDue to the gasket/bleed port design, fluidswill not intermix (other than a through-plate failure) when the plates are properlygasketed and the unit is assembled inaccordance with prescribed instructionsand design specifications. Liquid flowingon the surface of each plate flows on theinside of the boundary gasket. Shouldone of the liquids leak beyond a boundarygasket, it will flow to the outside of the unit through the bleed ports, preventing intermixing.

Gasket ChoicesSUPERCHANGER plate gaskets arespecially molded elastomers to assuresuperior performance.

Numerous gasket materials —NBR,EPDM, Viton, Neoprene, Butyl,Hypalon, Teflon-encapsulated NBRand others—are available to match yourprocess conditions, to maximum operating temperatures of 366°F.

Gaskets on GXD-Seriesplates are located in

the neutral axis.

Gaskets on all other plates are located in

tapered grooves.

Fully glued or SPOTGLUED® gaskets,which require less downtime to install,remove or clean, can be specified for mostunits. SUPERLOCK® glueless gaskets are available on several models.

Nozzle ChoicesTranter offers ASA loose flange type nozzles as standard on reinforced endframes, and studded port connections as standard on solid end frames.

In addition, threaded pipe, sanitary and Victaulic connections are available.

Flanged

SPOTGLUED gaskets SUPERLOCK gaskets

Threaded pipe

Victaulic

Sanitary

Studded port

Loose LapJoint Flange

ContinuousPressureWeld

Seal Plate

Tack Welds

End Frame

MSS Stub End

Flanged Nozzle Cross Section

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ISO 9001 CertificationTranter–Texas Division is ISO certified,adhering to the highest standards indesigning, manufacturing and testingSUPERCHANGER plate and frameheat exchangers.

SUPERCHANGER heat exchangers are computer designed and analyzed by technical specialists who generate a complete proposal providing optimumdesigns and alternatives. Quotations areprepared on a timely basis with all tech-nical information required for evaluation.

SUPERCHANGER unit componentsare manufactured by state of the art production technology, and assembled by the most knowledgeable, experiencedcraftsmen using the best equipment andfabrication techniques available.

Tranter can custom-design a unit withthe specific number, size, material andconfiguration of plates to meet yourexact needs. If your needs change, theunit can be easily modified by simplyadding or removing plates.

Each Unit is ThoroughlyTestedAfter assembly, each SUPERCHANGERunit is hydrostatically tested, both singleand double sides, at the required test pressures.

A number of additional tests, includingprocess simulation and fatigue tests, canbe performed to guarantee a unit fills yourstrict operational requirements.

World-class Manufacturing, Superior Testing and Servicing

A modern, fully equipped lab offers a wide range of tests.

Draw depths ofplate chevrons are meticulouslymonitored.

Many high precision tools are manufactured in-house.

GTAW and GMAW welding processes are utilized onnozzles and end frame reinforcing bars, respectively.

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Tranter plates are formed in a one-hitprocess on a 22,000-ton press.

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SUPERCHANGER heat exchangerstransfer heat more efficiently than shelland tube units in most applications, due in large measure to the turbulentflow created by the corrugated patterns of their plates.

They can pack greater than 22,000 sq. ft.of super efficient heat transfer surface in a single unit with flow rates up to 25,400 gpm.

They use only 10% to 50% of spacerequired by shell and tube units, and are much lighter in weight.

And, they cost less.

• “U” values several times greater than shell and tube

• Can be designed for less than a 2°F temperature approach

• Opens for access within its own footprint

• Easy disassembly—simply loosen bolts and roll movable frame back to the support column to remove plates

• Low fouling due to corrugations and inherent turbulence

• Intermix between fluids virtually impossible due to gasket design

• Practically no heat loss—no insulation required

How SUPERCHANGER PHEsOutperform Shell and Tube Units

Side-by-Side Comparison:

SUPERCHANGERVs.

Shell and Tube

• Low efficiency• Typically designed for greater than a

5°F to 10°F temperature approach • Requires twice its length to pull

tube bundle• Complex disassembly—tube bundle

must be pulled• 3 to 10 times greater fouling due to

circular cross-section and channeling• Fluids can intermix, both at welds

and at tube sheet• Great amount of heat loss—

insulation required

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Plate Heat Exchanger Accessories

Clean in Place SystemsClean in Place (CIP) systems are avail-able in standard and custom sizes.

ShroudsPersonnel or unit protection in anaggressive environment.

Port StrainersA strainer makes cleaning and inspectionpossible without dismantling the pipes.The length is adapted to the number of plates.

Instruments and GaugesSpecial flanges are available with outlets for drainage and ventilation,pressure gauges and sensors.

Hydraulic Opening DevicesMakes assemble and reassemble of theheat exchangers fast, easy and secure.

Drip PansPreventing water and other liquidsfrom floating on to the floor whendismantling the heat exchanger.

Other Accessories Include:

▲ Backflush Valves

▲ Wrenches

▲ Grounding Lugs

▲ Molybdenum Bolt Coatings

▲ Tie-rod Protectors

▲ HexWrap Insullation

▲ Insulated Shrouds

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Other Tranter Plate Heat ExchangerProducts & Services

If prime application considerations include a vari-ety of connection locations, space, and single-material design, these unique, all-welded plateexchangers are extremely versatile. They can beused in many duties where shell and tube unitstypically cool mechanical and electrical equip-ment—liquid-to-liquid, steam-to-liquid, gas-to-liq-uid, gas-to-gas and refrigerant applications(including ammonia).

Standard models are designed for 500°F maxi-mum operating temperature and 150 psig stan-dard working pressure, but custom models up to1000°F and 975 psig are available.

MAXCHANGER®

The ULTRAMAX all-welded heat exchanger incorporates the efficiencies ofa plate and frame heat exchanger without gaskets. It can operate at veryhigh pressures (maximum design pressure 1,400 psig) and at low and hightemperatures (-320˚F to 650˚F). It canhandle liquids, gases and mixtures ofthe two. Special alloy constructionis available, allowing it to be usedwith aggressive media. Various platechevron angles offer flexibility in optimization.

ULTRAMAX™

The SUPERMAX all-welded plate heatexchanger handles liquids, gases andtwo phase mixtures at pressures to600-plus psig and at very low and high temperatures. Nozzle sizes up to 6"can be accommodated on the shell side of the exchanger, offering highersteam and liquid flow rates. It can be fabricated from dissimilar metalswhen only one side will be exposed to corrosive conditions.

SUPERMAX™

These versatile, highly efficient primesurface heat exchangers replacecostly, unwieldy pipecoil, steamsparging or expensive resistanceheating elements. High internal flowvelocities of these exchangers gen-erate effective heat transfer rates.

Tranter’s exclusive Multi-Zone con-figuration—designed to uniformlydeliver steam to all levels of the unitthrough zoned headers—and twoSerpentine configurations are avail-able in over 300 standard sizes, orcan be custom designed. Single-and double-embossed styles maybe flat, bent or rolled as immersionheaters, banked for tanks, used inmixers, cryogenic shrouds, jacketedvessels, clamp-on panels, and awide variety of other configurations.

PLATECOIL®

SERVICECENTERSAt Tranter authorized service cen-ters, we safely clean and regasketyour heat exchanger plates, return-ing them to peak efficiency, andguarantee our work with our ownwritten warranties covering materi-als and workmanship.

With Tranter PHE and its authorizedservice facilities, you can always besure that you get the right gaskets,the right plates, the friendliest service and our OEM Guarantee.Give us a call at 1-800-414-6908.

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Superchanger Fax Form

Customer

Address

City, St, Zip

Contact

Email

Phone

Fax

Project

Number of Units

ASME Code Stamp: ❑ Yes ❑ No

For an estimate, complete and fax this form to Tranter at (940) 723-1131. Items in bold should be completed for best estimate.

Design ConditionsFluid

Flow Rate Gpm

Specific Heat Btu/(lb)˚F

Specific Gravity

Thermal Conductivity Btu/(hr)(ft)˚F

Viscosity: 1st Temperature

2nd Temperature

Temperature In ˚F

Temperature Out ˚F

Pressure Drop Psi

Operating Prssure Psig

Heat Exchanged Btu/hr

Design Pressure Psig

Test pressure Psig

Design Temperature ˚F

Hot Side

Cp @ ˚F

Cp @ ˚F

Cold Side

Cp @ ˚F

Cp @ ˚F

Data Required

Plates: ❑ 304SS ❑ 316SS ❑ Titanium

Other:

Gasket: ❑ NBR ❑ EPDM ❑ Viton

Other:

Materials of Construction

Note: For fluids other than water or steam, properties should be furnished for FASTEST and most ACCURATE sizing.

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Notes:

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Notes:

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Tranter PHE, Inc. ▲ Texas Division ▲ P.O. Box 2289 ▲ Wichita Falls, Texas 76307(940) 723-7125 ▲ Fax (940) 723-5131

http://www.tranterphe.com

Tranter, Inc. also manufactures PLATECOIL® prime surface, MAXCHANGER® compact all-welded plate,ULTRAMAX™ all-welded plate, WIDEMAX™ all-welded wide-gap plate and SUPERMAX™ plate and shell.

5000/PER/0802 Bulletin SC-8 Printed in U.S.A. © 2002 Tranter, inc.

I S O 9 0 0 1 C E R T I F I E D