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  2. Thermal conduction - Wikipedia

    en.wikipedia.org/wiki/Thermal_conduction

    The differential form of Fourier's law of thermal conduction shows that the local heat flux density is equal to the product of thermal conductivity and the negative local temperature gradient . The heat flux density is the amount of energy that flows through a unit area per unit time.

  3. Heat equation - Wikipedia

    en.wikipedia.org/wiki/Heat_equation

    For heat flow, the heat equation follows from the physical laws of conduction of heat and conservation of energy (Cannon 1984). By Fourier's law for an isotropic medium, the rate of flow of heat energy per unit area through a surface is proportional to the negative temperature gradient across it: =

  4. Fourier heat conduction equation - Wikipedia

    en.wikipedia.org/?title=Fourier_heat_conduction...

    Fourier heat conduction equation. Add languages. Add links. ... Download as PDF; Printable version; ... Redirect page. Redirect to: Thermal conduction#Fourier's law;

  5. Fourier number - Wikipedia

    en.wikipedia.org/wiki/Fourier_number

    In the study of heat conduction, the Fourier number, is the ratio of time, , to a characteristic time scale for heat diffusion, . This dimensionless group is named in honor of J.B.J. Fourier , who formulated the modern understanding of heat conduction. [ 1 ]

  6. Rate of heat flow - Wikipedia

    en.wikipedia.org/wiki/Rate_of_heat_flow

    The equation of heat flow is given by Fourier's law of heat conduction. Rate of heat flow = - (heat transfer coefficient) * (area of the body) * (variation of the temperature) / (length of the material) The formula for the rate of heat flow is: = where is the net heat (energy) transfer,

  7. Transport phenomena - Wikipedia

    en.wikipedia.org/wiki/Transport_phenomena

    The molecular transfer equations of Newton's law for fluid momentum, Fourier's law for heat, and Fick's law for mass are very similar. One can convert from one transport coefficient to another in order to compare all three different transport phenomena.

  8. Heat current - Wikipedia

    en.wikipedia.org/wiki/Heat_current

    The SI unit of heat current is the watt, which is the flow of heat across a surface at the rate of one Joule per second. For conduction , heat current is defined by Fourier's law [ 1 ] as ∂ Q ∂ t = − k ∮ S ∇ → T ⋅ d S → {\displaystyle {\frac {\partial Q}{\partial t}}=-k\oint _{S}{{\overrightarrow {\nabla }}T\cdot ...

  9. Thermal conductance and resistance - Wikipedia

    en.wikipedia.org/wiki/Thermal_conductance_and...

    A 2008 review paper written by Philips researcher Clemens J. M. Lasance notes that: "Although there is an analogy between heat flow by conduction (Fourier's law) and the flow of an electric current (Ohm’s law), the corresponding physical properties of thermal conductivity and electrical conductivity conspire to make the behavior of heat flow ...