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An experimental method was employed to visualize and investigate the airflow characteristics of this novel ventilation mode under isothermal conditions.
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The state of cure of around 96% has been determined either by calorimetry in scanning mode or by a moving die rheometer under isothermal conditions at three temperatures within the 170 190 °C range.
The reactor operates under isothermal condition.
Under isothermal heating at 170 °C, lac dye obviously exhibits a rapid degradation during the first 25 min of isothermal heating.
Crystallization under isothermal and non-isothermal conditions was extensively studied.
Measurements have been performed under isothermal, non-isothermal and transient non-isothermal conditions using a specifically designed apparatus.
The results show that the RTD parameters were completely different under isothermal and non-isothermal conditions.
The propane and butane released under isothermal gas flow is therefore generated under gas flow.
In addition, the bed is maintained under isothermal condition.
It was found that the hydrogenation kinetics under isothermal conditions were significantly different from those under non-isothermal conditions.
In our work, the model verification was carried out in two separate cases, one under isothermal and the other under non-isothermal conditions.
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