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Shape-independent limits to near-field radiative heat transfer.
The radiative heat conduction is treated implicitly.
Each pit acts as a resonator, capable of giving off radiative heat at only certain wavelengths.
Convective and radiative heat transfers were limited by insulation.
They had a machine that emitted radiative heat at 1,800 degrees Fahrenheit without convective heat, and they started placing different flammable materials in front of it.
Cloud cover lowers maximum temperatures but also limits radiative heat loss at night, so that minimum temperatures are kept relatively high.
This technique properly accounts for biases caused by radiative heat loss and allowed for accurate measurement of the drop in conductivity as the sample was heated.
Finally, the spectral and Rossland extinction coefficients and radiative heat conductivity of the composite are obtained.
The CPU time for nongray radiative heat transfer analysis with a fog model is evaluated.
Similar results are also revealed in the radiative heat flux behaviors.
The radiative heat transfer is calculated using a discrete-ordinates method.
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