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2D gas and solids flow prediction in circulating fluidized beds based on suction probe and pressure profile measurements

机译:基于吸力探头和压力分布测量的循环流化床中二维气体和固体流量预测

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摘要

A fluid-mechanical model for the recirculation zone of circulating fluidized bed (CFB) risers is presented which considers the local flow structure of the CFB to be composed of an upward flowing lean suspension and downward flowing strands or clusters of particles. The model parameters are obtained by fitting the model to at least one measured horizontal profile of the upward and one downward solids fluxes and making use of a measured pressure profile along the riser height. The model allows the two-dimensional gas and solids flows inside the whole recirculation zone to be predicted. The model has been developed on the basis of measurements in a pilot-scale CFB unit (riser height 15.6 m, 0.4 m diameter). The application of the model to large-scale CFB combustors of Chalmers University, Goeteborg/Sweden and Stadtwerke Flensburg/Germany illustrates its practical applicability.
机译:提出了一种循环流化床立管回流区的流体力学模型,该模型考虑了CFB的局部流动结构由向上流动的稀悬浮液和向下流动的股线或颗粒簇组成。通过将模型拟合到至少一个测量的向上和一个向下的固体通量的水平轮廓,并利用沿立管高度的测量压力轮廓来获得模型参数。该模型可以预测整个再循环区内的二维气体和固体流动。该模型是根据中试规模CFB装置(立管高度15.6 m,直径0.4 m)中的测量结果开发的。该模型在查尔姆斯大学,哥德堡/瑞典和Stadtwerke Flensburg /德国的大型CFB燃烧器中的应用说明了其实际应用性。

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