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  • The greenhouse can be modeled as a [[heat exchanger]] using two gas flows (the air inside the greenhouse and the air outside it ...w rate, m’. The minimum capacity rate is whichever can absorb the least heat, and the maximum capacity rate is that of the other. Further, one gas stre
    2 KB (383 words) - 04:02, 21 January 2009

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  • The [[heat transfer]] through a flat wall or floor due to thermal conductivity is give The heat transfer through a half cylinder arch due to thermal conductivity is:
    8 KB (1,363 words) - 04:02, 21 January 2009
  • The greenhouse can be modeled as a [[heat exchanger]] using two gas flows (the air inside the greenhouse and the air outside it ...w rate, m’. The minimum capacity rate is whichever can absorb the least heat, and the maximum capacity rate is that of the other. Further, one gas stre
    2 KB (383 words) - 04:02, 21 January 2009
  • .... Radiative heat transfer alone is considered. Convective and conductive heat transfer are neglected. The radiative heat transfer through each surface is:
    9 KB (1,591 words) - 04:02, 21 January 2009
  • ...tive heat transfer and conductive heat transfer are considered. Radiative heat transfer is neglected. Heat transfer through the floor is primarily due to conduction. The thermal res
    14 KB (2,450 words) - 04:02, 21 January 2009
  • There are many techniques that can be used to model the heat flow of a Martian greenhouse. The following models will assume a half cylin ==Model 1 All Heat Transfer Though the Walls==
    5 KB (783 words) - 04:02, 21 January 2009