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Dynamic Behaviour of a Hybrid Steam Generator Equipped with a Gate Valve

机译:闸阀配备闸阀的混合蒸汽发生器的动态行为

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Cogeneration is an often viable and efficient solution to cover combined demands of electric and thermal power, especially when the demand of the latter remains fairly constant over time. The efficient use of energy and the economic advantages that are associate to it have made cogeneration the solution of choice in many industrial applications, among which paper mills represent a significant share. The heat recovery steam generator often has an auxiliary burner to ensure full coverage of the thermal load in all operating conditions. In order to reduce installation and conduction costs, the combustion chamber may lack an extraction fan, which has the drawback that pressure varies according to changes in the loads, and this affects the stability of the flame adversely. In order to ensure constant pressure in the combustion chamber, application of a gate valve downstream of the heat recovery steam generator is proposed. A lumped-parameter model is set up in Simulink? and the feedback loop tested for to sudden variations in the thermal power required by the paper mill, mainly due to variations in the number of operating machines, and to failure of the internal combustion engine. It is demonstrated that the gate valve is necessary and that the use of a PID feedback control system ensures a constant pressure in the combustion chamber.
机译:热电联产是一种经常可行和有效的解决方案,可以涵盖电气和火力的组合需求,特别是当后者的需求随着时间的推移而仍然相当恒定。有效地利用能源和与其关联的经济优势使得在许多工业应用中的选择解决方案,其中造纸厂代表了重要份额。热回收蒸汽发生器通常具有辅助燃烧器,以确保在所有操作条件下完全覆盖热负荷。为了降低安装和传导成本,燃烧室可能缺乏提取风扇,其具有根据负载变化的压力变化的缺点,这会对火焰的稳定性产生不利影响。为了确保燃烧室中的恒定压力,提出了在热回收蒸汽发生器的下游的施加闸阀。在Simulink中设置了一个集合参数模型?并且测试回路用于造纸厂所需的热功率的突然变化,主要是由于操作机器数量的变化以及内燃机的故障。据证明闸阀是必要的并且使用PID反馈控制系统的使用确保燃烧室中的恒定压力。

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