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This cost is not only less than the conventional double reheat system, but also even less than the single reheat system.
Through comprehensive system optimization, an optimized double reheat system adopting 10-stage extractions and two outer steam coolers is proposed, whose heat rate can be further reduced by 80.7 kJ/kWh (1.04%) based on conventional double reheat system.
The research of this paper may provide an effective method for the optimization of a double reheat system in ultra supercritical power plants.
In this study, the thermodynamic analysis and design optimization of a double reheat system in an ultra-supercritical power plant are comprehensively conducted.
Considering that the additional investment of the optimized double reheat system is only increased by 0.76%, the cost of electricity of the optimized system is only 55.89 USD/MWh.
Heat in the exposure chamber was generated by a combination of the building reheat system, an in-line air heater and two small surface heaters.
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The zone control of all-air air-conditioning systems can be achieved with the constant-volume-reheat system, variable-air-volume system, bypass system, dual-duct system, multizone system, three-deck multizone system, dual-duct, variable air volume system, and dual path outside air system.
A two area non reheat thermal system is considered to be equipped with PID controller.
This paper proposes the Load Frequency Control (LFC) of an interconnected two-area multiple-unit thermal reheat power system in a restructured environment.
This paper also deals with the concept of AGC in two-area reheat power system having coordinated control action with Redox Flow Battery (RFB) and Unified Power Flow Controller (UPFC) are capable of controlling the network performance in a very fast manner and improve power transfer limits in order to have a better restoration.
Double reheat steam systems have been receiving more attention because of the rapid development of ultra-supercritical power plants.
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