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Description: DesChamps heat exchangers offer designs utilizing plate counterflow heat exchangers, heat pipe, and energy recovery wheels. These heat exchangers form the backbone of many system configurations and can be configured with unique traversing frost prevention. DesChamps heat exchangers have been used
- Applications: HVAC
- Gas / Air Flow Rate: 620 to 24792 SCFM
- Temperature Range: 0.0 to 125 F
- Type: Shell and Tube
Description: ProAir heat exchangers use our unique counterflow aluminum core for high efficiency and high performance heat transfer except for the XR20 and the XR29-08 which use a modified heat pipe core. Top quality ball bearing fans and impellers make these units run quietly and with increased reliability
- Applications: Electronics / Power Supply Cooling
- Temperature Range: -20 to 140 F
- NEMA Rated: Yes
- Type: Air-Cooled
Description: E-Z-AIRE is a unique and simple counterflow air-to-air plate type heat exchanger. Counterflow airstreams are brought into close proximity separated by one continuous, dimpled, and folded sheet of aluminum, which acts as a primary heat transfer surface. This heat transfer surface is configured
- System Type: Air to Air Heat Exchanger, Exhaust /Flue Heat Recovery
Description: to provide the most flexible design capability in the industry. Wringer™ systems can be configured for any climate and utilize the unique DesChamps counterflow heat exhangers. Units are designed between 800 to 11,000 cfm with options for packaged dx, electric, hot water and indirect fired gas heating.
- Removal Technique: Solid Desiccant Rotor
- Air Volume: 800 to 11000 SCFM
- Relative Humidity: 30 to 70 %
- Desiccant Reactivation: Electric, Steam, Other
Supplier: Taco, Inc.
Description: , counterflow style heat exchanger for system isolation, all in a single unit. The SXPB can be set up to maintain a setpoint differential between the solar collector and a primary and optional auxiliary storage tank and it can support a booster pump as part of a drainback system. The SXPB features
- Type Of Pump: Circulation Pumps
- Media: Water
- Industry: General Industrial
Supplier: Crown Boiler Co.
Description: , color-coded wiring. This furnace is manufactured with a heavy duty heat exchanger, fabricated from precision-made 13 gauge sheet steel, 100% welded and quality tested to last a lifetime. Options on the Horizontal/Counterflow Furnace consist of your choice of four different oil burners: Beckett AF, Beckett NX
Supplier: United Refrigeration, Inc.
Description: drain port(s) sealed TOUGHER Flame roll--out sensors standard Adjustable heating blower OFF delay Factory set blower ON delay Stainless steel secondary heat exchanger High temperature limit control prevents overheating Direct ignition with Silicon Nitride ignitor High-quality, corrosion-resistant
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Featured Products for Counterflow Heat Exchanger Top
Anguil Environmental Systems, Inc.
Plate Heat Exchanger-up to 80% heat recovery!
exchanger up to a 60" X 144". · Efficiencies can range from a 20% cross flow to a 80% counter-flow unit. · Vertical or horizontal orientations and multiple flow patterns available. · Aluminzed Steel, or 409, 304L, 316L and 309 Stainless Steels for economy, corrosion resistance and high temperature. Learn More... (read more)
Browse Heat Exchangers Datasheets for Anguil Environmental Systems, Inc.
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Hot tips for cool enclosures
exchangers use the counterflow principle. High-powered fans force two separate air circuits through the heat-exchanger cassettes. Separate air circuits keep dust out of the enclosure. They are also used where the ambient temperature is lower than the enclosure temperature, and have performance
Designing Custom Cold Plates
impedances of cold. plate technologies . Figure 2: This Press-Lock™ cold plate. uses counterflow through two different. layers of tube for averaging of. temperatures. Figure 3: Gun-drilled custom cold plate . Figure 4: Custom channeled cold plate. with ladder configuration. Figure 5: Custom
Pollution Control that Pays Its Way
in a staggered cycle. When an adsorber is fully charged with solvent, it is regenerated (desorbed) by the counterflow passage of live steam. The steam heats the carbon to about 220oF causing release of the solvent vapors from the carbon pores, and these are carried as a steam/solvent mixture
Capturing Organic Vapors from Non-Condensable Gases Using Activated Carbon Technology
, it is regenerated by the counterflow passage of live steam. The steam heats the carbon, which releases some of the VOCs, and then is swept away to a condenser and separation. This type of system is called deep static bed technology. FIGURE 2 - A simplified adsorption flow diagram. Adsorption system
Chemical Pumps: Zero Liquid Discharge in Surface Treatment Shop
operate on three parameters (figure 5): drag in/out volume ,. numbers of static rinsing. number of counter-flow rinsing tanks. Fig. 5 - Rinsing sequence. The flow Q of rinsing water to be used can be calculated through the formula: where: n = number of rinsing water tanks. C0 = concentration
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Fundamentals of Heat Exchanger Design Complete Document
...1]; represents an overall exchanger eﬀectiveness for a multipass unit, dimensionless temperature eﬀectiveness of the cold fluid [de�?ned by Eq. (3.52)], also as the exchanger eﬀectiveness of the cold fluid in Appendix B, dimensionless counterflow heat exchanger eﬀectiveness [see Eq. (3...
Fundamentals of Heat Exchanger Design - Chapter 3 Basic Thermal Design Theory for Recuperators
It would be obtained in a ‘‘perfect’’ counterflow heat exchanger (recuperator) of infinite surface area, zero longitudinal wall heat conduction, and zero flow leakages from one fluid to the other fluid, operating with fluid flow rates and fluid inlet temperatures the same...
Experimental Comparison of Mixed-Refrigerant Joule-Thomson Cryocoolers with Two Types of Counterflow Heat Exchangers .....................
Rohrleitungs- and apparatus construction
263 3.2 surface heat transmitters as countercurrent heat exchanger .
Fundamentals of Heat Exchanger Design Complete Document
In Fig. 11.1 a schematic of a counterflow heat exchanger is presented.
Similar analysis can be performed for counterflow heat ex- changers , shown in Figure VIa.2.2(b).
Counterflow, crossflow and cocurrent flow heat transfer in heat exchangers: analytical solution based on transfer units
...42) the actual number of transfer units available in the heat exchanger, NHTUA, is equal to 0.782, so the heat transfer capacity of this exchanger as a fraction of the capacity of a full counterflow heat exchanger is given by the...
Cold-Cycle Dilution Refrigeration
The liquid 3He is throttled to low pressure and cooled to the mixing chamber temperature by a counterflow heat exchanger .
Fundamentals of Heat Exchanger Design - Chapter 1 Classification of Heat Exchangers
When the rotational speed or frequency of switching hot and cold fluids through such a regenerator is increased, its thermal performance ideally approaches that of a pure counterflow heat exchanger ; but in reality, the carryover leakage may become significant with increased speed...
Fundamentals of Heat Exchanger Design - Chapter 12 Flow Maldistribution and Header Design
The influence of gross flow maldistribution is shown in Fig. 12.2 for a balanced (C * ¼ 1) counterflow heat exchanger in terms of "* for a two-step inlet velocity distribution function (i.e., for two subexchangers).
Fundamentals of Heat Exchanger Design - Chapter 4 Additional Considerations for Thermal Design of Recuperators
For example, let us review typical temperature distributions in the hot fluid, cold fluid, and wall for a counterflow heat exchanger as shown in Fig. 4.1.