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Supplier: APV, An SPX Brand
Description: APV ParaTube (tube-in-tube heat exchangers) can be supplied with either straight tubes or corrugated tubes. They all follow a similar construction format with a single tube or number of smaller tubes enclosed within an outer shell. They are
- Applications: Food and Beverage Processing
- Liquid Flow Rate: 25 to 400 GPM
- Temperature Range: Up to 200 F
- Type: Shell and Tube
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Supplier: Alfa Laval Inc.
Description: precisely what it says – a circular heat exchanger with two concentric spiral channels, one for each fluid. The curved channels provide optimum heat transfer and flow conditions for a wide variety of fluids, while keeping the overall size of the unit to a minimum.
- Applications: Chemical Processing, Other
- Connection Type: Flange
- Maximum Working Pressure: 1450 psi
- Primary Exchanger Material: Steel
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Supplier: Inductotherm Group
Description: from nonmetallic material, the tooling can withstand the temperature of the fasteners being heated. Closed Loop Water Cooling Tower The water cooling tower is comprised of two main sections; an air cooled heat exchanger and a closed loop pumping section. The heat transfer coil
- AC Voltage Required: 440 to 480 volts
- Applications: Annealing / Heat Treating
- Output Frequency: 200 to 400 kHz
- Output Power: 100 kW
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Supplier: INTEC Energy Systems
Description: from tube bundles while in operation Heater consisting of concentric coils for the heat recovery of waste gas heat from combustion engines and gas turbines in onshore and marine applications
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Supplier: Peerless Boilers
Description: The Peerless® Combi (PC) 160 gas-fired boiler is a 93% efficient condensing boiler that uses premixed burner technology for optimal combustion. The boiler offers hydronic heat and domestic hot water in one complete unit by using an integrated coil-type hot water tank! Stainless steel
- Fuel Type / Heat Source: Gas (Natural / Propane)
- Heat Output (Capacity): 27000 BTU/hr
- Type: Hot Water
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Supplier: ProSonix Corporation
Description: delivers a superior end product as compared to traditional heat exchangers, steam spargers, and steam eductors. Steam mixing valves and steam sparging when done incorrectly can lead to steam hammer, poor starch cook-out, and poor temperature control. Because starch and steam are
- Heater Type: Steam Injection Heater, Other
- Sleeve (Sheath) Material: Stainless Steel, Steel
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Supplier: Alfa Laval Inc.
Description: Alfa Laval supports the compressed air industry with the latest developments for refrigerated air dryers. Going further with brazed heat exchanger technology and integrated values than ever before. Features and advantages Low energy consumption due to the very
- Applications: Refrigeration (Evaporator / Condenser)
- Connection Type: Flange, Solder, Tubular / Tube Fitting, Other
- Gas / Air Flow Rate: 825 SCFM
- Liquid Flow Rate: 409 GPM
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Supplier: Alfa Laval Inc.
Description: The BaseLine range consists of reliable, cost-effective plate heat exchangers designed for food, beverage, dairy and other hygienic applications that are generally less sensitive than those handled by the premium FrontLine range. Dependable gasketed plate heat exchanger
- Applications: Domestic Water Use, Food and Beverage Processing
- Connection Type: Flange, Tubular / Tube Fitting
- Maximum Working Pressure: 145 psi
- Primary Exchanger Material: Steel, Stainless Steel
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Supplier: Tranter, Inc.
Description: The SUPERCHANGER® heat exchanger is designed to provide maximum efficiency in transferring heat from one liquid to another, or from steam to liquid. The SUPERCHANGER® consists of a series of gasketed, embossed metal plates arranged alternately and bolted together between end
- Applications: Automotive / Vehicular, Chemical Processing, Food and Beverage Processing, HVAC, Hydraulic, Oil Heating / Cooling, Marine / Shipboard, Power Generation, Steam, Other
- Connection Type: NPT, Flange, Tubular / Tube Fitting, Other
- Liquid Flow Rate: 25400 GPM
- Maximum Working Pressure: 400 psi
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Supplier: Pfannenberg
Description: With cooling capacities ranging from 2,218 BTU (650 W) to 34,121 BTU (10,000 W) these units are specifically engineered to allow safe, efficient use of liquid coolant to cool enclosure electronics. Additionally our sloped horizontal cover surfaces and optional NEMA Type 4X stainless steel type
- Applications: Aerospace, Electronics / Power Supply Cooling, Food and Beverage Processing, HVAC, Oil Heating / Cooling, Marine / Shipboard, Other
- Connection Type: Tubular / Tube Fitting
- Gas / Air Flow Rate: 1180 SCFM
- Liquid Flow Rate: 5 GPM
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Supplier: Alfa Laval Inc.
Description: The AlfaNova is the first plate heat exchanger in the world to be made completely of stainless steel – made possible by the unique active diffusion bonding technology patented by Alfa Laval. AlfaNova plate heat exchangers are made of 100% stainless steel, with the
- ASME Certified: Yes
- Applications: HVAC
- Connection Type: Flange, Solder, Tubular / Tube Fitting, Other
- Liquid Flow Rate: 881 GPM
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Supplier: Pfannenberg
Description: The PKS 336X series Air/Air Heat Exchangers use Pfannenberg’s Kinetic System™ next generation cooling to exchange and move the heat from an electrical enclosure to the outside environment. This is a perfect solution when concerned with the open loop Filterfan® designs
- Applications: Aerospace, Electronics / Power Supply Cooling, Food and Beverage Processing, HVAC, Oil Heating / Cooling, Marine / Shipboard, Other
- Connection Type: Tubular / Tube Fitting
- Primary Exchanger Material: Steel
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Supplier: Pfannenberg
Description: Our PWS 3202 SS (NEMA Type 12/3R/4/4x) Advantage Series Air/Water Heat Exchangers offer over 7000 Btu/h cooling capacity and are ideal for harsh ambient conditions. Requiring only a cool liquid source and power. Need a cool liquid source? Pair this unit with one of our packaged
- Applications: Aerospace, Electronics / Power Supply Cooling, Food and Beverage Processing, HVAC, Oil Heating / Cooling, Marine / Shipboard, Other
- Connection Type: Tubular / Tube Fitting
- Gas / Air Flow Rate: 300 SCFM
- Liquid Flow Rate: 2 GPM
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Supplier: Paul Mueller Company
Description: Free flow design, ideal for viscous liquids, particulates, and fibers
- Applications: Other
- Connection Type: Solder, Tubular / Tube Fitting
- Liquid Flow Rate: 800 GPM
- Primary Exchanger Material: Steel, Stainless Steel
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Supplier: Pfannenberg
Description: Our PWS 3102 SS (NEMA Type 12/3R/4/4x) Advantage Series Air/Water Heat Exchangers offer over 3700 Btu/h cooling capacity and are ideal for harsh ambient conditions. Requiring only a cool liquid source and power. Need a cool liquid source? Pair this unit with one of our packaged
- Applications: Aerospace, Electronics / Power Supply Cooling, Food and Beverage Processing, HVAC, Oil Heating / Cooling, Marine / Shipboard, Other
- Connection Type: Tubular / Tube Fitting
- Gas / Air Flow Rate: 175 SCFM
- Liquid Flow Rate: 2 GPM
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Supplier: Bell & Gossett, a xylem brand
Description: BPX™ Brazed Plate Heat Exchangers offer the highest level of thermal efficiency and durability in a compact, low cost unit. The corrugated plate design provides very high heat transfer coefficients resulting in a more compact design. The unit’s stainless steel plates are vacuum
- Applications: Automotive / Vehicular, Domestic Water Use, HVAC, Oil Heating / Cooling, Refrigeration (Evaporator / Condenser), Other
- Connection Type: NPT, Flange, Tubular / Tube Fitting
- Liquid Flow Rate: Up to 800 GPM
- Maximum Working Pressure: 0.0 to 435 psi
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Supplier: Bell & Gossett, a xylem brand
Description: A complete line of efficient heat exchangers • OC and OF (straight tube) heat exchanger • TS tank suction heater • TCW and TCS tank heaters • CHX/CHXS compact heat exchangers • WU and SU heat exchangers • Diamondback heat
- Applications: Chemical Processing, Domestic Water Use, Food and Beverage Processing, HVAC, Hydraulic, Pneumatic, Other
- Connection Type: NPT, Flange, Tubular / Tube Fitting
- Primary Exchanger Material: Stainless Steel, Titanium
- Temperature Range: Up to 1000 F
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Supplier: Bell & Gossett, a xylem brand
Description: ratios than conventional shell and tube heat exchangers. GPX offer superior heat transfer coefficients compared to shell and tube heat exchangers. GPX offers “true” countercurrent flow, which maximizes the mean temperature difference between fluids.
- Applications: Domestic Water Use, Food and Beverage Processing, HVAC
- Connection Type: NPT, Flange, Tubular / Tube Fitting
- Liquid Flow Rate: Up to 18000 GPM
- Maximum Working Pressure: 0.0 to 450 psi
Find Suppliers by Category Top
Featured Products Top
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SiC Silicon Carbide Heat Exchange Furnace Tube Pipe SiC heat exchange furnace tube is used in diffusion furnaces in semiconductor and photovoltaic industries as atmosphere sintering furnace tubes. Silicon carbide furnace tube, also known as fire (read more)
Browse Silicon Carbide and Silicon Carbide Ceramics Datasheets for 3X Ceramic Parts Company Limited -
HEXNOVAS Shell Coil Heat Exchanger (Spiral tube heat exchanger ) is a compact all-welded heat exchanger designed for heating, cooling and heat recovery applications where conventional shell and tube units are oversized and gasketed plate heat exchangers may not be preferred. Built with (read more)
Browse Heat Exchangers Datasheets for Hexnovas Heat Exchanger Technology Co., Ltd -
-temperature fluids. The compact block design provides excellent thermal performance while minimizing installation space. Compared to traditional shell-and-tube heat exchangers, the welded plate design offers significantly higher heat transfer efficiency and reduced footprint. Key (read more)
Browse Heat Exchangers Datasheets for Hexnovas Heat Exchanger Technology Co., Ltd -
enabling a self-cleaning effect due to high turbulence. This makes it particularly suitable for media such as sludge, wastewater, and fluids with suspended solids. Compared to conventional shell-and-tube or plate heat exchangers, spiral heat exchangers offer superior resistance to fouling and (read more)
Browse Heat Exchangers Datasheets for Hexnovas Heat Exchanger Technology Co., Ltd -
, inspection, and capacity expansion. This makes GPHE an ideal solution for processes requiring frequent maintenance or future scalability. Compared to traditional shell-and-tube heat exchangers, GPHE offers significantly higher heat transfer coefficients, reduced footprint, and lower energy (read more)
Browse Heat Exchangers Datasheets for Hexnovas Heat Exchanger Technology Co., Ltd -
McElroy produces the finest finned tube manufacturing equipment in the world. These machines offer the versatility, speed, durability and efficiency required to maximize the potential of your finned tube manufacturing operations. (read more)
Browse Tube Mills and Pipe Mills Datasheets for McElroy Manufacturing, Inc. -
(evaporation and condensation) • Reduced footprint compared to shell-and-tube heat exchangers Typical Applications: • Ammonia (NH3) refrigeration systems • CO2 (R744) refrigeration and heat recovery • Industrial refrigeration and cold storage (read more)
Browse Heat Exchangers Datasheets for Hexnovas Heat Exchanger Technology Co., Ltd -
petrochemical industry, it is applied in reactors, pipelines, and heat exchanger tubes exposed to acids and corrosive gases. In semiconductor manufacturing, it functions as diffusion and oxidation tubes, or (read more)
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Qualtek heat shrinkable products include Polyolefin, Silicon, Teflon, Viton®, Kynar®, Halogen-Free, high temp, single wall, and adhesive lined tubing with varying shrink ratio, colors and sizes. Wire Harnesses & Splices Hose & Pipe Protection (read more)
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More Information Top
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Shell-and-double concentric-tube heat exchangers
Optimizing a shell-and-double concentric tube heat exchanger lengthwise provides a considerable amount of savings in space and material when compared with a shell- and-tube heat exchanger with the same outer tube diameter of the double concentric-tubes and the …
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Experimental and numerical investigation of thermal characteristics of a novel concentric type tube heat exchanger with turbulators
SUMMARY In this study, the heat transfer performance and friction characteristics of a novel concentric tube heat exchanger with different pitches of helical turbulators were investigated experimentally and numerically for a Reynolds number range from 3000 to 14 000.
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An analytical study of laminar counterflow double‐pipe heat exchangers
Abstract An orthogonal expansion technique for solving a new class of counterflow heat transfer problems is developed and applied to the detailed study of laminar flow concentric tube heat exchangers .
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Aerospace Sciences Meetings > Conceptual Design of Aeropropulsion Engine Heat Exchangers Part 1: Micro channels and Selection of Advanced Configurations
A simple counter-flow type concentric tube heat exchanger has been proposed as a baseline configuration.
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Experimental Studies on Wire Coiled Coil Matrix Turbulators with and Without Centre Core Rod
To the best of the authors’ knowledge, no researchworkshavebeendonebasedonbondingofWCCMT with and without core rod on the wall of the test section of the concentric tube heat exchanger .
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Energies | Free Full-Text | Experimental Study of a Triple Concentric Tube Heat Exchanger Integrated into a Wood-Based Air-Heating System for Energy-Efficient ...
Experimental Study of a Triple Concentric Tube Heat Exchanger Integrated into a Wood-Based Air-Heating System for Energy-Efficient Dwellings .
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http://www.doiserbia.nb.rs/img/doi/0354-9836/2012/0354-98361100117S.pdf
EFFECT OF WIRE COILED COIL MATRIX TURBULATORS WITH AND WITHOUT BONDING ON THE WALL OF THE TEST SECTION OF CONCENTRIC TUBE HEAT EXCHANGER .
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Biotransport: Principles and Applications
For a cocurrent concentric tube heat exchanger this relationship is .
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High viscous liquids as a source in micro-screw heat exchanger: fabrication, simulation and experiments
In this paper, an exper- imental and numerical simulation of a micro screw concentric tube heat exchanger is presented to deter- mine the overall heat transfer coefficient and the amount of heat created by friction.
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http://dspace.mit.edu/bitstream/handle/1721.1/40444/191730700-MIT.pdf?sequence=2
For the exhaust pipe waste heat exchanger, a concentric tube heat exchanger design was chosen because of the relative simplicity involved in its installation and design and the heat transfer characteristics of this design.
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