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Initially, design constraints of the cycle i.e. pump exit temperature, source exit temperature, cooling fluid exit temperature, and flue gases exit temperature are applied to check the ORC applicability.
So the only two ''floating" cycle parameters that remain to be defined are the compressor exit temperature and the turbine exit temperature.
On the contrary, it results in low combustor exit temperature.
This means that the compressor exit temperature approaches the turbine entry temperature.
We are seeking basically only one item concerning combustor exit conditions, namely the exit temperature or the exit enthalpy.
A VHTR could generate up to ∼600 MWth at an exit temperature of 900 1300 K.
Finally, visual appearances of flames are consistently well with the analysis about exit temperature profile.
However, potential problem may arise as the result of high reactor exit temperature (Tout).
Reactor and exit temperature increases were considerably lower than those predicted from first principles.
Finally, the heat carrier exit temperature is restricted and addition of a recuperator is considered.
However, the exit temperature distributions can be significantly altered as the mixing becomes decreasingly efficient.
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