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Cases for two fluid mass flow rate variation combinations, hot fluid inlet temperature and hot and cold fluid mass flow rate variation combinations are modeled and analyzed.
Also, the hysteresis associated with the fluid mass flow rate variation is investigated.
The transient response of the heat exchanger under temperature variation, mass flow rate variation, and multiple variation combination scenarios are performed using the CFD compact models.
For this purpose, SHUNCL1 thermal hydraulic loop has been designed and constructed under atmospheric conditions and an experimental scenario has been arranged to investigate the mass flow rate variation due to heat flux.
Afterwards, the reactor responses to three typical transient initiators have been simulated (i.e., reduction of feedwater mass flow rate, variation of the turbine admission valve coefficient and transient of overpower).
The proposed technique measures the flow rate and converts the flow rate variation into an electrical current which can be easily transmitted to a remote location like a control room.
Similar(28)
Anode performances were compared when subject to temperature, substrate concentration and flow rate variations.
The overall control strategy is tested with composition and flow rate variations in the fresh feed stream.
Results for a significant flow profile and flow rate variations show that the overall error dispersion of the flow rate evaluation is of the order of 0.5%.
In order to keep water distribution uniformity at an appropriate value, pressure and flow rate variations of emitters along a lateral should be within acceptable limits.
However, under practical working conditions, the events of changing operational conditions and working load may influence temperature and mass flow rate variations to the heat exchangers.
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