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The thermodynamic and heat transfer models were established.
Appropriate user defined functions were developed to implement heterogeneous kinetics and heat transfer models in FLUENT.
The benchmark experimental data have been used to validate the three dimensional conjugate heat transfer models.
Simple heat transfer models were developed to aid in understanding and diagnosing detector behaviors and performances.
Based on experiments, the common heat transfer models of two CAAHXs are established.
The heat transfer models inside and outside the pot have been validated by reference experiments.
DWC heat transfer models developed so far consider only conduction inside the condensate droplets.
The heat transfer models of energy pile are explained and the corresponding characteristics are investigated.
Simplified yet accurate heat transfer models are essential for energy simulation of this system.
Then improvements to heat transfer models of precursory cooling have been introduced into RELAP5/MOD3.2.
Heat transfer models for reactor core and intermediate heat exchanger were also included.
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