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Thermal & Heating Equipment -> Heat Exchangers -> Plate Fin Heat Exchangers


Plate Fin Heat Exchangers




(Showing headlines 1 - 11)   

Brazed Plate Heat Exchangers feature double-wall construction.

Bell & Gossett    Morton Grove, IL 60053
Mar 23, 2011 Designed with complete peripheral copper braze for strength and 4 dedicated leak ports for leak detection, BPX(TM) BPDW Series features design pressure of 435 psi and max design temperature of 450°F. Double-wall heat exchangers are suited for residential hydronic heating applications such as radiant, snow melt, domestic hot water, and pool heating. They can also be used as refrigerant condensers, evaporators, and oil coolers.

Heat Exchanger provides control of food-grade products.

Dimple-t Bulk Solids Cooler    Winterswijk 7101GR  Netherlands
Aug 19, 2009 Featuring fully welded and totally sealed design, Dimple-t Heat Exchanger indirectly heats or cools free flowing powder and bulk solids, such as sugar or salt, while eliminating concern for dirt or contamination. With no plate supports and manifold pipe welded straight to heat exchanger plates, design eliminates ledges where food products can stay behind. Heat exchanger has no moving parts and does not require fans or large volumes of air to operate.

Heat Exchangers are available with copper brazed plate.

Diversified Heat Transfer, Inc.    Ridgewood, NY 11385
Feb 26, 2009 Offered in sizes to meet various dimensioning and installation requirements, brazed plate heat exchangers are available with stainless steel plate packs, with thermal output from 1,700 to 8.5 million BTUs/hr, and copper brazing. Various accessories and internationally accepted connection types are available. Areas of use include radiant heating, snow melt, HVAC, and commercial/domestic hot water applications.

Heat Exchanger targets refrigerant-based applications.

GEA PHE Systems NA    York, PA 17402
Mar 18, 2008 At 20 lb and 5 x 12 x 5.4 in., 5 Ton Chiller is brazed plate heat exchanger rated at 450 psig. It has copper-brazed SS construction with high-performance heat transfer surface and includes top sealing plate and Easy Sweat fittings. UL Listed device can handle wide range of fluids and can be computer selected for specific application conditions. System is suited for use in commercial, industrial process, or residential applications.

Heat Exchanger tolerates thermal variances.

Chart Industries, Inc.    Cleveland, OH 44124-4031
Jan 05, 2007 Suitable for applications involving high temperature and large temperature differentials, WPX Welded Plate Heat Exchanger can cover 6,000 square meter surface area and reach pressures up to 1,015 psi. Heat transfer elements allow minor local movements to relieve thermal stresses. Cross-counter-flow heat transfers through corrugated stamped sheets designed to optimize transfer coefficients. Heat exchanger is suited for variety of boiling, condensing, or single-phase flow regimes.

Plate Heat Exchanger handles capacities to 15,585 gpm.

Plate Heat Exchanger handles capacities to 15,585 gpm.

Alfa Laval Inc.    Richmond, VA 23231
Oct 28, 2005 Measuring approximately 13 ft, Model T50 has 20 in. port on plate with 38 sq-ft of heat transfer area and is suited for sea cooling applications in large plants. Plate is available in low-theta, medium-theta, and high-theta versions that can be combined in 5 channel combinations to provide optimized design for specific temperature programs. Unit can be supplied with options such as reinforced feet, extended connections, and earthing lugs.

Heat Exchangers have compact, plate-and-frame design.

Heat Exchangers have compact, plate-and-frame design.

ITT Standard    Buffalo, NY 14227 1233
Apr 18, 2005 Plateflow™ heat exchangers provide close temperature control of fluids for heat recovery applications where space is of concern. Offered as alternative to shell-and-tube exchangers, products produce countercurrent flow and feature removable plates for service or maintenance. Units can be specified in 20 different models for heat transfer surface as high as 9,180 ft˛. Products are also suited for CPI applications.

Heat Exchanger utilizes all-welded plates.

Heat Exchanger utilizes all-welded plates.

Tranter, Inc.    Wichita Falls, TX 76306
Apr 05, 2005 ULTRAMAX® is suited for liquids, gases, or 2-phase mixtures at extreme temperatures to 650°F and pressures to 1,015 psig. True countercurrent flow of hot and cold media within unit offers full LMTD and allows close temperature approaches. Large capacity or multi-pass configurations incorporate up to 5 cores within single frame. ULTRAMAX line offers 8 different plate lengths, including largest plate size with area of 10.65 ft˛.

Heat Exchanger meets local and state plumbing codes.

Heat Exchanger meets local and state plumbing codes.

FlatPlate, Inc.    York, PA 17404
Apr 21, 2003 DW Series double-wall, vented brazed plate heat exchanger incorporates double wall plates and double seal fluid ports that provide positive leak detection with overall capacity from ˝â€“150 gpm. UL listed with optional ASME code, product is suitable as alternative to shell and tube heat exchangers involved in projects where double separation of potable water from boiler water and non-potable fluids is required.

Heat Exchangers and Chillers have non-ferrous water circuits.

Heat Exchangers and Chillers have non-ferrous water circuits.

Oerlikon Metco    Westbury, NY 11590
May 30, 2002 CLIMET-HE™ regenerative turbine-pump and CLIMET-HE-200 brazed-plate heat exchangers operate from 380-460 and 200-240 Vac, respectively. Thermal capacity of 44kW handles all plasma guns. CLIMET-RC™ Refrigerated Chiller works in tandem with CLIMET-HE, supplying chilled water to cool heat exchanger at up to 98 l/min and at temperatures as low as 7°C. CLIMET-RC-HV™, rated at 16.4 kW, has hermetically sealed Maneurop compressor and stainless steel pump and impeller.

Plate Heat Exchangers lock together for tight seal.

Plate Heat Exchangers lock together for tight seal.

Calmac Mfg. Corp.    Englewood, NJ 07631 4880
Dec 21, 2001 Plate Exchangers use less floor space and weigh less than conventional shell-and-tube heat exchangers. They use less surface area to transfer same heat. Plates are pressed in patterns that are best suited to optimizing performance of each individual system. Interlocking plates have locking lip that secures connection between plates and keeps them precisely aligned and tightly sealed even at high working pressures.




(Showing headlines 1 - 11)   



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