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Controlling drum level of a utility boiler during boiler feed pump runback using related rate concept

机译:使用相关的速率概念在锅炉给水泵运行期间控制电站锅炉的汽包水位

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Steam boiler provides appropriate quality and quantity of steam to the turbine for power generation. In drum type boiler, water and steam flow in the drum is controlled in such a way that the water level in the drum is maintained fairly at a preset value. While very low water level in the drum may lead to starvation and explosion of boiler, too high level may cause carryover of water particle and damages the super-heaters. Therefore Drum level is an important parameter for safe operation of a boiler. Drum level in a drum type boiler is influenced by number of factors, such as sudden change in load demand and changed in heat input to the boiler etc. During Boiler Feed Pump (BFP) runback, the boiler steam generation is reduced through fuel cut off while steam out flow to the turbine is controlled by pressure controller. Under such circumstance, due to mismatch between steam out and feed water in, it becomes difficult in maintaining water level in the drum to its pre set value. This paper has suggested an innovative drum level control by adopting the concept of related rate variation. The related rate module uniquely co-relates two independent time varying parameters namely steam flow and feed water flow in real time and accordingly apply correction of steam flow to match steam and water flow during BFP runback. Simulation result shows real time correction of steam flow maintains drum level within its safe operating limit during BFP runback. The innovative related rate module can be used as a control block in the future boiler controls for coordination between many parameters varying independently with respect to time.
机译:蒸汽锅炉向涡轮提供适当质量和数量的蒸汽以进行发电。在鼓式锅炉中,以这样的方式控制鼓中的水和蒸汽流动,以使鼓中的水位相当地保持在预设值。滚筒中的水位过低可能会导致锅炉饿死和爆炸,而水位太高则可能导致水颗粒残留并损坏过热器。因此,汽包水位是确保锅炉安全运行的重要参数。汽包式锅炉的汽包水位受多种因素的影响,例如负荷需求的突然变化和向锅炉输入的热量等。在锅炉给水泵(BFP)回流期间,通过切断燃料减少了锅炉蒸汽的产生蒸汽流出涡轮的过程由压力控制器控制。在这种情况下,由于蒸汽和进水之间的不匹配,难以将滚筒中的水位维持在其预设值。本文提出了一种创新的鼓电平控制,它采用了相关速率变化的概念。相关的速率模块唯一地实时关联两个独立的时变参数,即蒸汽流量和给水流量,并相应地应用蒸汽流量校正以在BFP回流期间匹配蒸汽和水流量。仿真结果表明,在BFP回流期间,蒸汽流量的实时校正可将汽包液位保持在其安全操作极限内。创新的相关费率模块可以用作将来锅炉控制中的控制块,以协调许多随时间变化的参数。

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