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首页> 外文期刊>Chemical Engineering Science >Investigation of gas-solids flow characteristics in a circulating fluidized bed with annular combustion chamber by pressure measurements and CPFD simulation
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Investigation of gas-solids flow characteristics in a circulating fluidized bed with annular combustion chamber by pressure measurements and CPFD simulation

机译:通过压力测量和CPFD模拟研究环形燃烧室循环流化床中的气固流动特性

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摘要

For large scale circulating fluidized bed (CFB) boilers, a new type of annular combustion chamber was proposed to improve the secondary air penetration and provide adequate space to arrange the heat transfer surface. To investigate the gas-solids flow characteristics and optimize the structure of the annular combustion chamber, a "cold" test rig was built with a cross sectional area of 1.18 m(2) and a height of 8.0 m. High frequency pressure transducers were used to obtain the pressure fluctuations characteristics. CFD simulation based on computational particle fluid dynamic (CPFD) was used to obtain pressure fluctuations and particles concentration. The time domain analysis, power spectrum analysis and Hilbert-Huang transform were applied to the experimental and simulation data. Different flow regimes including single bubble regime, exploding bubble regime and turbulent fluidization regime were identified. The flow characteristics were investigated in terms of standard deviation and higher-order moments, auto-correlation, power spectrum, and EMD energy entropy. The results show that the gas-solids flow in the bottom region of the annular combustion chamber was relatively uniform. The gas-solids flow in annular combustion chamber was proved similar to that in a conventional CFB riser. (C) 2015 Elsevier Ltd. All rights reserved.
机译:对于大型循环流化床(CFB)锅炉,提出了一种新型的环形燃烧室,以改善二次空气渗透并提供足够的空间来布置传热表面。为了研究气固流动特性并优化环形燃烧室的结构,建造了“冷”试验台,其横截面积为1.18 m(2),高度为8.0 m。高频压力传感器用于获得压力波动特性。使用基于计算粒子流体动力学(CPFD)的CFD模拟获得压力波动和粒子浓度。将时域分析,功率谱分析和希尔伯特-黄变换应用于实验和仿真数据。确定了不同的流动状态,包括单气泡状态,爆炸气泡状态和湍流化状态。根据标准偏差和高阶矩,自相关,功率谱和EMD能量熵研究了流动特性。结果表明,在环形燃烧室底部的气固流相对均匀。事实证明,环形燃烧室中的气固流动与常规CFB立管中的相似。 (C)2015 Elsevier Ltd.保留所有权利。

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