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The Novel Design of Feed-water Control System for Thermal Power Plant Using Super-critical Start-up Motor-Boiler Feed-water Pump

机译:火力发电厂超临界启动电机锅炉给水泵给水控制系统的新型设计

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In normal condition of thermal power plant, the boiler feed-water pump (BFP) speed modulates to control economizer feed-water (FW) flow, and/or the regulation valve is used for start-up and low load. However, super-critical motor-BFP at its minimum speed can not sufficiently modulate to control economizer FW flow during low pressure boiler start-up. Moreover, the requirement of high drop pressure can not be achieved with one control valve given the wide flow control range required. Therefore, the study conducts the experiment and evaluation for a novel design with additional letdown control valves downstream pump in series with regulation valve to control feed-water during unit start-up and low load for the configuration of super-critical Motor-BFP. The results show that the ramp rates of temperature and pressure per minutes are equivalent and within permission of ASME codes in comparison with the configuration of sub-critical Motor-BFP with one control valve during start-up time tests. From the results of the study, it is advisable that Vietnam can apply this viable design for the new thermal power units in order to proof against the increase of periodic start-ups or partial shutdowns caused by the problems related to variable renewable electricity and potential grid stability in the near future.
机译:在火力发电厂的正常情况下,锅炉给水泵(BFP)的速度进行调节以控制省煤器给水(FW)的流量,和/或调节阀用于启动和低负荷。但是,超临界电动机BFP的最低速度无法在低压锅炉启动过程中进行充分调节以控制节能器FW流量。此外,鉴于所需的宽流量控制范围,使用一个控制阀无法实现高滴降压力的要求。因此,本研究进行了一种新颖设计的实验和评估,该设计在下游泵上附加了泄压控制阀,并与调节阀串联,以在机组启动和低负载时控制给水,以配置超临界Motor-BFP。结果表明,在启动时间测试中,与具有一个控制阀的亚临界Motor-BFP的配置相比,每分钟的温度和压力的上升速率是相等的,并且符合ASME法规的要求。根据研究结果,建议越南可以将这种可行的设计应用于新的火电机组,以防止因可变的可再生电力和潜在的电网相关问题而导致的定期启动或部分关闭的增加在不久的将来保持稳定。

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