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  2. Heat-transfer fluid - Wikipedia

    en.wikipedia.org/wiki/Heat-transfer_fluid

    Heat Capacity: A fluid’s heat capacity indicates how much thermal energy it can transport and store, impacting the efficiency of the heat transfer process. [ 2 ] Thermal Conductivity and Thermal Diffusivity : These properties influence the rate at which heat is transferred through the fluid, affecting how quickly a system can respond to ...

  3. Anora Group - Wikipedia

    en.wikipedia.org/wiki/Anora_Group

    The Rajamäki ethanol plant produces geothermal fluids that enable the transfer of natural heat from soil, [36] water bodies, and rocks into heating energy for buildings. Natural heat transfer fluid, manufactured at the Rajamäki plant, is a Finnish market leader in ethanol-based heat transfer fluids. [37]

  4. Therminol - Wikipedia

    en.wikipedia.org/wiki/Therminol

    Therminol is a synthetic heat transfer fluid [1] produced by Eastman Chemical Company.. Therminol fluids are used in a variety of applications, including: [2] Hydrocarbon processing (oil and gas, refining, asphalt, gas-to-liquid, etc.)

  5. Thermic fluid heater - Wikipedia

    en.wikipedia.org/wiki/Thermic_fluid_heater

    A thermic fluid heater (TFH), [1] also known as a thermal oil heater, is a device used for indirect heat transfer through a thermic fluid. It heats the fluid to a desired temperature and then transfers that heat to various processes without any direct contact between the heating source and the product.

  6. Coolant - Wikipedia

    en.wikipedia.org/wiki/Coolant

    Polyalkylene glycol (PAG) is used as high temperature, thermally stable heat transfer fluids exhibiting strong resistance to oxidation. Modern PAGs can also be non-toxic and non-hazardous. [2] Cutting fluid is a coolant that also serves as a lubricant for metal-shaping machine tools. Oils are often used for applications where water is unsuitable.

  7. Plate heat exchanger - Wikipedia

    en.wikipedia.org/wiki/Plate_heat_exchanger

    The total rate of heat transfer between the hot and cold fluids passing through a plate heat exchanger may be expressed as: Q = UA∆Tm where U is the Overall heat transfer coefficient, A is the total plate area, and ∆Tm is the Log mean temperature difference. U is dependent upon the heat transfer coefficients in the hot and cold streams. [2]