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Modeling for condensate throttling and its application on the flexible load control of power plants

机译:凝结水节流建模及其在电厂柔性负荷控制中的应用

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Most power associations have made stringent requirements on the load change speed and range of thermal power plants. However, it has become more and more difficult to improve their load change capabilities just through coordinated control system because of boiler's large delay. Condensate throttling is one of the few efficient methods which can be used to rapidly activate stored energy enough for unit load support. We first set up its static and dynamic models. Then we design an improved load control strategy by combining traditional coordinated control with condensate throttling control. This strategy can also recover the balance of deaerator level to prepare for the next load-change use. Finally, simulation results reveal that our strategy has much better performance than traditional coordinated control. (C) 2015 Elsevier Ltd. All rights reserved.
机译:大多数电力协会对火力发电厂的负荷变化速度和范围提出了严格的要求。然而,由于锅炉的大延迟,仅通过协调控制系统来提高其负荷变化能力变得越来越困难。冷凝水节流是为数不多的有效方法之一,可用于迅速激活足以存储单位负载的能量。我们首先建立其静态和动态模型。然后,我们将传统的协调控制与凝结节流控制相结合,设计了一种改进的负荷控制策略。该策略还可以恢复除氧器水平的平衡,为下一次负载变化使用做准备。最后,仿真结果表明我们的策略比传统的协调控制具有更好的性能。 (C)2015 Elsevier Ltd.保留所有权利。

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