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Description: The Paratherm OR® sludge-resistant heat transfer fluid has substantial oxidation resistance and extended service life. This zero-pressure fluid provides precise, uniform temperature control to 550°F in closed-loop thermal oil systems where the heat
- Kinematic Viscosity (@ 40°C): 40.2 cSt
- Operating / Use Temperature: 550 F
- Flash Point: 330 F
- Density / Specific Gravity (@15.6°C, 60°F): 0.898695 specific gravity
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Supplier: Total Lubricants USA, Inc.
Description: Synthetic based, high temperature heat transfer fluid. Designed for applications in industrial plants where heating oil is used in the production of steam or hot water; manufacturing processes: paper, cement, timber.
- Features: Heat Transfer Fluid
- Type / Function: Hot Oil / Thermal Oil
- Composition / Chemistry: Synthetic / Semi-synthetic
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Supplier: Duratherm Extended Life Fluids
Description: Duratherm HF heat transfer fluid satisfies the needs of industry and insurance officials who recommend operating systems at temperatures below the heat transfer fluid's flashpoint. Engineered specifically for this purpose, its flashpoint is one of the
- Features: Heat Transfer Fluid
- Composition / Chemistry: Petroleum / Mineral Oil
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Description: Paratherm HR™ Heat Transfer Fluid is an alkylated-aromatic based heat transfer fluid formulated for closed loop liquid phase heating to 650°F in fired heaters and 675°F in waste heat recovery and full convection heaters. High Temperature
- Kinematic Viscosity (@ 40°C): 11 cSt
- Operating / Use Temperature: 13 to 700 F
- Flash Point: 300 F
- Density / Specific Gravity (@15.6°C, 60°F): 0.958608 specific gravity
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Description: Synthetic Hydrogenated Terphenyl heat transfer fluid is a partially based product designed for closed-loop liquid phase heating; Chemical equivalent and compatible with Therminol® 66. Partially hydrogenated terphenyls have been used successfully in high temperature
- Kinematic Viscosity (@ 40°C): 0.45 to 31.4 cSt
- Operating / Use Temperature: 52 to 675 F
- Flash Point: 315 F
- Density / Specific Gravity (@15.6°C, 60°F): 1.012 specific gravity
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Supplier: Accuris
Description: Assessing Thermal Performance of Boilers for Steam, Hot Water and High Temperature Heat Transfer Fluids Part 1: Concise Procedure
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Supplier: Accuris
Description: Methods for Assessing Thermal Performance of Boilers for Steam, Hot Water and High Temperature Heat Transfer Fluids - Part 2: Comprehensive Procedure
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Supplier: ASTM International
Description: additional information on pumpability topics found in companion guides for evaluating heat transfer fluids, Guides D5372 and D7665. 1.2 Pumpability of heat transfer fluids is dependent on both fluid properties and the design of the fluid
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Supplier: DME Company
Description: Transfers heat away from electronic devices High thermal conductivity Temperature range to 400ºF
- Operating / Use Temperature: 400 F
- Features: Electrical / Electronic, Heat Transfer Fluid
- Composition / Chemistry: Silicone, Synthetic / Semi-synthetic
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Supplier: SantoLubes LLC
Description: SANTOLUBE OS-105 is a diphenyl ether derivative with exceptionally low volatility, good broad-temperature properties, and resistance to degradation from heat, oxygen, radiation, and chemical attack. SANTOLUBE OS-105 is therefore suitable for use in designing lubricants for
- Kinematic Viscosity (@ 40°C): 102 cSt
- Operating / Use Temperature: -40 to 482 F
- Pour Point: -35 F
- Flash Point: 510 F
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Supplier: ASTM International
Description: 1.1 This test method covers the determination of the thermal stability of unused organic heat transfer fluids. The procedure is applicable to fluids used for the transfer of heat at temperatures both above and below their boiling point (refers to
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Supplier: SantoLubes LLC
Description: SANTOVAC fluid is often used as a vacuum diffusion pump fluid and operates efficiently, economically, and safely to produce ultra-high vacuum of 5 x 10-10 torr or greater, at 25°C. Diffusion pumps are the most economical and reliable means of reaching such low pressures and
- Kinematic Viscosity (@ 40°C): 370 cSt
- Pour Point: 39.2 F
- Flash Point: 550.4 F
- Features: Compressors / Piston Pumps, Corrosion Inhibitor / Rust Preventative, Fluid / Oil, Heat Transfer Fluid, Lubricant, Machine / Gears, Straight Oil (Non-soluble), Vacuum / Diffusion Pump
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Supplier: Dry Coolers, Inc.
Description: Plate & frame heat exchangers work by passing fluids through alternating fluid cavities that are separated by corrugated stainless steal plates. The fluids are alternated so that hot fluid is surrounded by cool fluid throughout the entire exchanger. The
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Supplier: Parent Petroleum Co.
Description: and outstanding overall performance. Hydroclear Diamond Class Heat Transfer Fluids O/S 32 and O/S 46 are optimized for use in pressure-relieved, liquid-phase heat transfer systems equipped with expansion tanks, where there is a possibility of contact between the
- Type / Function: Hydraulic Oil / Fluid
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Supplier: Cleaver-Brooks
Description: Leveraging our extensive experience and expertise in heat and mass transfer to supply custom waste heat recovery units for turbine exhaust, process furnaces and other heat sources for water, glycol mixtures and thermal oil fluid heaters. Waste Heat Recovery
- Maximum Pressure: 350 psi
- Fuel Type / Heat Source: Gas (Natural / Propane), Oil, Waste Heat / Indirect
- Orientation: Horizontal, Vertical
- Type: Steam
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Supplier: Parent Petroleum Co.
Description: and outstanding overall performance. Hydroclear Diamond Class Heat Transfer Fluids O/S 32 and O/S 46 are optimized for use in pressure-relieved, liquid-phase heat transfer systems equipped with expansion tanks, where there is a possibility of contact between the
- Type / Function: Hydraulic Oil / Fluid
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Supplier: Travaini Pumps USA
Description: Self-cooling - there is no cooling requirements even with 608°F (320°C) process fluid. Positive seaking - provided by mechanical seal. Positive support - provided by heavy duty oil lubricated ball bearings - No internal shaft sleeves. Low operating temperatures - at shaft
- Discharge Size: 1.574804 inch
- Pump Type: Centrifugal Pumps
- Power Source: None, Pump Only
- Pump Housing Material: Stainless Steel
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Supplier: Heat Exchange & Transfer, Inc.
Description: The GFO series heat transfer systems are high capacity, natural gas fired thermal fluid heaters with maximum operating temperatures up to 750°F and heating capacity from 500,000 to 20MM BTU/HR. GFW series systems are gas fired water heaters with maximum operating
- Operating Temperature: 250 to 750 F
- Heater Capacity: 5,861 kW
- Other Features: ASME Vessels, Emergency Alarms, Insulated Pipes, Skid Mounted
- Transfer Media: Glycol, Hot Oil
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Supplier: MAYA Heat Transfer Technologies Limited
Description: since the coupled solver will create the appropriate heat transfer coupling at all the solid/fluid interfaces at runtime. The thermo-fluid explicit solver coupling models 3D fluid velocity, temperature and pressure by solving the Navier-Stokes equations:
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Supplier: IHS ESDU
Description: recommended that the most conservative of the predictions for the other two regimes on either side be used. For the low Reynolds number regime three boundary conditions are considered: uniform wall temperature, uniform wall flux, and uniform wall flux axially combined with uniform wall
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Supplier: Micro Sensor Co., Ltd.
Description: MPM4530 high-temperature pressure transmitter is designed for high and low-temperature medium in the range of -40~150℃, it is the whole welding structure with a pressure accuracy of ≤0.5%FS and the temp. error ≤±0.025%FS/℃, the robust performance enables working in a
- Working Pressure Range: 1.450377 to 14,503.77 psi
- Pressure Measurement: Absolute, Gauge
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Supplier: Cleaver-Brooks
Description: Leveraging our extensive experience and expertise in heat and mass transfer to supply custom waste heat recovery units for turbine exhaust, process furnaces and other heat sources for water, glycol mixtures and thermal oil fluid heaters. Waste Heat Recovery
- Heater Type: Circulation Heater, Water Heater
- Features: Clean Water Heating, Other
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Supplier: IHS ESDU
Description: ESDU 90001 gives methods for calculating the heat transfer coefficient in the post dry-out region (that is when the critical heat flux is exceeded and the liquid no longer wets the tube walls) for upward flow in vertical tubes. The methods are restricted to high quality
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Supplier: SAE International
Description: evaporator arrangement can transfer more heat in phase change applications by setting the high temperature difference in the area of low heat transfer coefficients. Different air flow rates across the condenser show little variation in cycle efficiency with
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Supplier: Witte Company, Inc. (The)
Description: Witte Vibrating Fluid Bed Dryers showcase the company's signature vertical air flow engineering. Featuring a porous conveying surface set within an enclosed vibrating vessel, Witte designs promote heat transfer air or gas to pass up vertically through the product, creating the
- Applications / Materials Handled: Bulk Materials / Briquettes, Foods / Grains, Mining / Ores / Minerals, Pharmaceutical, Waste / Sludge, Wood / Wood Products
- Equipment Type: Fluidized Bed Dryer, Vibratory Dryer
- Features: Other
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Supplier: IHS ESDU
Description: correlations were developed from published data for the estimation of tubeside heat transfer and pressure drop of single-phase Newtonian fluids. The following types of tube insert are considered: twisted tapes (high and low twist ratios), helically-coiled wires, wire
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Supplier: Taylor Dynamometer, Inc.
Description: during testing. Low Temperature Aftercooler Features Temperature Controller: Full PID autotuning Upper Display: 4 digits, high brightness green LED. 0.4 in. (10mm) high. (Process temperature) Lower Display: 4 digits, Orange LED. 0.35 in. (9mm) high (set
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Supplier: Advantage Engineering, Inc.
Description: Oil temperature control units circulate oil through the process and are used for applications were the required temperature ranges from 100° to 400°F. (Up to 500° with optional controller) These units use a high flow pump to circulate high temperature oil through
- Heater Capacity: 48 kW
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Supplier: Regloplas Corp.
Description: High-performance temperature control units for thermal oil up to 300 °F • Microprocessor-control system RT100 • Pumps with high flow rate: 18 GPM • High cooling capacity • Swiss Quality
- Operating Temperature: 300 to 390 F
- Media Flow Rate: 16 to 18 GPM
- Discharge Pressure: 16 to 18 psi
- Heater Capacity: 12 kW
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Supplier: Witte Company, Inc. (The)
Description: Witte Vibrating Coolers showcase the company's signature vertical air flow engineering. Featuring a porous conveying surface set within an enclosed vibrating vessel, Witte Coolers invite heat transfer air or gas to pass up vertically through the product, creating the high degree
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Supplier: MOKON
Description: all-welded construction, reduces internal piping which limits potential leak points. Systems are available in single and multiple zone configurations, with pumping capacities up to 120 GPM and come completely pre-wired. Mokon oil systems offer many advantages when using heat transfer
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Supplier: SAE International
Description: is capable of predicting surface heat transfer and maximum temperatures is of high importance for concept design studies. Computational Fluid Dynamics (CFD) is a suitable method to carry out this task. In this work, a time efficient and accurate simulation strategy
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Supplier: Regloplas Corp.
Description: Temperature control unit for thermal oil up to 300 °F: 150smart • Microprocessor-control system RT61 • Pump with high flow rate: 16 GPM • Water circuit of non-rusting materials • High cooling and heating capacity • Simple to operate • Swiss Quality
- Operating Temperature: 300 F
- Media Flow Rate: 16 GPM
- Discharge Pressure: 55 psi
- Heater Capacity: 6 kW
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Supplier: Bell & Gossett, a xylem brand
Description: “GPX” heat exchangers are of a gasketed plate pack design. Some features and benefits of this design are its small size, light weight and high efficiency in transferring heat with either large or small fluid temperature differences. Design produces high
- Liquid Flow Rate: 18,000 GPM
- Maximum Working Pressure: 0 to 450 psi
- Temperature Range: -31 to 338 F
- Technology: Air-Cooled, Plate
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Supplier: Siemens EDA
Description: is a full-featured 3D fluid flow, heat transfer analysis package that is both fast to learn and to use because it doesn’t come with the numerical complexity and meshing overheads of traditional high-end CFD. Features and Benefits Easy-to-use CAD embedded Concurrent CFD
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Simple-cycle: Burn natural gas in a combustion turbine to produce high-pressure, high-temperature gas, that is then used to spin the turbine. These plants have short start-up times and are used during periods of peak demand. They are relatively inefficient in their ability (read more)
Browse Fluid Heat Transfer Systems Datasheets for Gaumer Process -
inlet and outlet connections. The process air, liquid, or gas is force flowed from the inlet side of the heater vessel over the metal sheathed nichrome resistive heating elements to the outlet side of the heater vessel. This effectively allows 100% heat transfer efficiency from heater element to the (read more)
Browse Circulation Heaters Datasheets for Gaumer Process -
-owned manufacturer of fluid transfer systems that produces high-quality tubing, hose, fittings, clamps, and accessories and offers expert project guidance and services. As a reliable provider that offers an exceptional customer experience, a culture of social responsibility, and a focus on sustainability, we help businesses engineer products that create positive global impact. (read more)
Browse Plastic Tubing Datasheets for NewAge Performance Products | NAPP -
NewAge Industries NewAge Industries is a leading independent, employee-owned manufacturer of fluid transfer systems that produces high-quality tubing, hose, fittings, clamps, and accessories and offers expert project (read more)
Browse Tubing Datasheets for NewAge Performance Products | NAPP -
Sealless Pumps? Hot oil sealless pumps are specifically engineered to handle high-temperature fluids without the risk of leakage. Unlike (read more)
Browse Magnetic Drive Pumps Datasheets for Dickow Pump Company, Inc. -
rework the component. Under typical circumstances, the component would be held in place with some form of mechanical fastening systems and the compound applied to simply improve heat dissipation. These silicone compounds are work stable and will withstand reasonably high temperatures. For (read more)
Browse Thermal Compounds and Thermal Interface Materials Datasheets for CHT USA Inc. -
inlet and outlet connections. The process air, liquid, or gas is force flowed from the inlet side of the heater vessel over the metal sheathed nichrome resistive heating elements to the outlet side of the heater vessel. This effectively allows 100% heat transfer efficiency from heater element to the (read more)
Browse Tubular Heaters Datasheets for Gaumer Process -
piped in line with your process inlet and outlet connections. The process air, liquid, or gas is force flowed from the inlet side of the heater vessel over the metal sheathed nichrome resistive heating elements to the outlet side of the heater vessel. This effectively allows 100% heat transfer (read more)
Browse Circulation Heaters Datasheets for Gaumer Process -
transfer and mass transfer. The absence of moving parts in the tube support system provides a simple, reliable, robust design that enhances scalability. Additionally, the tumbling action of the product within the tube results in high degrees of temperature uniformity and gas-solid contact, producing (read more)
Browse Furnaces (industrial) Datasheets for Harper International Corporation -
High temperature resistance is essential in many applications. Gas turbines, fuel nozzles, heat treating fixtures, and furnace baffles. These materials must stand up to high heat, extreme oxidation potential and cycling. HASTELLOY (read more)
Browse Specialty Nonferrous Metals and Alloys Datasheets for High Performance Alloys, Inc.
Conduct Research Top
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A Higher Power (.pdf)
Solar power is emerging as a popular alternative to fossil fuels. And while it will still be some time before solar power is a widely adopted, cost-effective alternative, the chemistry to help convert heat into electricity exists. At two major installations, high temperature heat transfer fluid
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Phase Change Technology
Phase Change Technology utilizes the Latent Heat of Vaporization of a working fluid to absorb thermal energy during the evaporator cycle and release this energy during the condenser cycle. Heat may be defined as energy in transit from a high temperature object to a lower temperature object
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Infrared Imaging in Engineering Applications (.pdf)
Temperature variations that provide valuable information about heat transfer and fluid phenomena that occur during a mechanical and chemical process stand out clearly in an infrared image. An overview is given for three different mechanical engineering projects currently using infrared imaging
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Agilent vs. Bio-Rad in Pharma s YouTube Wars
Selected to Control Manufacturing Processes at Major U.S. Biotech Site The Effect of Water on Low Temperature Heat Transfer Fluid Performance Advances In Pharmaceutical Vent Duct Technology Legal Disclaimers, Terms and Conditions >>
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Improving heat capture for power generation in coal gasification plants
A high temperature heat transfer fluid is oftentimes accompanied by much higher wall temperatures, unless the thermal resistance between the walls and fluid is sufficiently high to keep the walls at the same temperature as the fluid inside them.
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Phenylnaphthalene as a Heat Transfer Fluid for Concentrating Solar Power: High-Temperature Static Experiments
The first phase of the project focused on the chemistry of the proposed high temperature heat transfer fluids .
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Assessment of Parabolic Trough and Power Tower Solar Technology Cost and Performance Forecasts
Integral with advanced thermal storage is the implementation of a higher temperature heat transfer fluid in the 450°–500°C range.
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Handbook of Clean Energy Systems, 6 Volume Set
The solar field provides fuel in the form of high temper- ature heat transfer fluid .
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Rules of Thumb in Engineering Practice
…G–L Condensers 81 Thermal Energy: G–G Thermal Wheels and Pebble Regenerators and Regenerators 81 Thermal Energy: Heat Loss to the Atmosphere 82 Thermal Energy: Refrigeration 82 Thermal Energy: Steam Generation and Distribution 83 High Temperature Heat Transfer Fluids 84 Tempered Heat Exchange…
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Adsorption at the Nanoparticle Interface for Increased
Thermal Capacity in Solar Thermal Systems
In concentrated solar power (CSP) systems, high temperature heat transfer fluids (HTFs) are responsible for collecting energy from the sun at the solar receiver and transporting it to the turbine where steam is produced and electricity is generated.
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Nanoscale Materials and Devices for Electronics, Photonics and Solar Energy
…C.L. Chan, Q. Hao, P.A. Deymier, K. Muralidharan, D.F. Gervasio, M. Momayez, S. Jeter, A.S. Teja, A. M. Kannan, Halide and oxy-halide eutectic systems for high perfor- mance high temperature heat transfer fluids , SunShot Concentrating Solar Power…
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FEASIBILITY OF HYDROGEN PRODUCTION USING LASER INERTIAL FUSION AS THE PRIMARY ENERGY SOURCE
This concept features a “bayonet” reactor made of SiC that would be immersed in the high temperature heat transfer fluid (pressurized helium in the intended application) with the seal maintained at lower temperature.
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