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Modelling and dynamics of an air separation rectification column as part of an IGCC power plant

机译:作为IGCC电厂一部分的空气分离精馏塔的建模和动力学

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An Integrated Gasification Combined Cycle plant(IGCC)opens the well-proven and highly efficient combined cycle process to fossil fuels,like coal or heavy refinery residues.Such a plant thereby possesses a novel linkage of typical energy engineering related units,e.g.a gas turbine and typical process engineering parts,which in the present case is an air separation plant.Different responses from the connected components can cause undesired mass flow fluctuations within the system especially during changing load demands.The cryogenic rectification column,as the core of the air separation plant,strongly affects the system's transient behaviour.The upper part of such a heat-integrated double column,a packed column with structured packing,has therefore been more closely investigated in the present paper For this purpose,a dynamic model of such a column has been developed which is also able to describe the pressure dynamics supposedly responsible for these mass flow fluctuations.The transient behaviour of the uncontrolled column is analysed and discussed with special regard to pressure dynamics.The column pressure responds to disturbances on two different time scales.The short-term response,which is in the range of 100-200 s,is governed by the transient behaviour of the fluid dynamics and is discussed in detail.The long-term response is dominated by the nonlinear dynamics of the concentration profiles.The time constant of this response depends strongly on the direction and intensity of the disturbance and takes from 10,000 up to several 100,000 s.
机译:整体煤气化联合循环发电厂(IGCC)为煤,重质炼油残渣等化石燃料打开了行之有效的高效联合循环过程,从而使这种发电厂与典型的能源工程相关单位,ega燃气轮机和典型的过程工程零件,在当前情况下为空气分离设备。所连接组件的不同响应会导致系统内不希望的质量流量波动,尤其是在负载需求变化期间。低温精馏塔作为空气分离设备的核心因此,在本文中对这种热集成双塔的上部(具有规整填料的填充塔)进行了更深入的研究。为此,已经建立了这种塔的动力学模型。可以描述这些质量流量波动的压力动力学。分析并讨论了不受控制的色谱柱的行为,并特别着重于压力动力学。色谱柱压力在两个不同的时间尺度上对扰动做出响应。短期响应在100-200 s范围内受瞬态支配长期响应主要由浓度分布的非线性动力学决定,该响应的时间常数在很大程度上取决于扰动的方向和强度,范围从10,000到几个100,000秒

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