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This is achieved by adding convective heating surfaces in the boiler.
It was the first convective heating system.
This energy starts to return to the atmosphere as evaporative and convective heating in mid- to late-summer.
There are weaknesses to using a single laboratory model to simultaneously assess the properties of a material to resist conducted, radiated, or convective heating.
This adds an element of conductive and convective heating to the radiant heat typical of a basic fireplace.
Thunderstorms form from daytime convective heating and frontal activity, in the south, lake breeze convergences also intensify storms.
Convective heating can also be achieve indirectly by means of a burner firing into a heat exchanger with the space air blown over the heat exchanger.
It can be considered, together with the Bolivian High, as the regional response of the tropospheric circulation to the strong convective heating over the Amazon-central Brazil.
This is known as the boundary layer and in effect insulates the leaf from the environment, providing an atmosphere rich in moisture and less prone to convective heating or cooling.
As a perfect emitter of radiation, a hot material with black body behavior would create an efficient infrared heater, particularly in space or in a vacuum where convective heating is unavailable.
Convective heating requires large quantities of circulating heated air while radiant heating relies on infrared radiation to selected areas where the intervening air and the surroundings receive heat only incidentally.
A weakness of this scheme is convective heating, in that this parameterization scheme assumes that convection heats by mixing cloud and environmental air, instead of heating produced by subsidence between clouds.
NASA built a special laboratory, the Giant Planet Facility, to simulate the heat load, which was similar to the convective heating experienced by an ICBM warhead reentering the atmosphere combined with the radiative heating of a thermonuclear fireball.