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Heat current
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A heat current or thermal current is a kinetic exchange rate between , relative to the material in which the occurs. It is defined as the net rate of flow of . The of heat current is the , which is the flow of heat across a surface at the rate of one per second.

For conduction, heat current is defined by Fourier's law

(1984). 9780120598588, Academic Press.
as
\frac{\partial Q}{\partial t} = -k \oint_S{\overrightarrow{\nabla} T \cdot \,\overrightarrow{dS}}
where
\big. \frac{\partial Q}{\partial t}\big. is the amount of heat transferred per unit time W and
\overrightarrow{dS} is an oriented surface area element m2
The above differential equation, when for a homogeneous material of 1-D geometry between two endpoints at constant temperature, gives the heat flow rate as:
\big. \frac{\Delta Q}{\Delta t} = -k A \frac{\Delta T}{\Delta x}
where
A is the cross-sectional surface area,
\Delta T is the temperature difference between the ends,
\Delta x is the distance between the ends.

For thermal radiation, heat current is defined as

W = \sigma \cdot A \cdot T^4
where the constant of proportionality \sigma is the Stefan–Boltzmann constant, A is the radiating surface area, and T is temperature.

Heat current can also be thought of as the total distribution multiplied by the energy of one phonon, times the of the . The phonon distribution of a particular phonon mode is given by the Bose-Einstein factor, which is dependent on temperature and energy.


See also
  • Thermal conduction
  • Thermal conductivity

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