从圆形截面喷水床到方形截面喷水床:多级热力装置的放大和设计概述

Giorgio Rovero, Massimo Curti, Cristina Moliner, Elisabetta Arato
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摘要

这项工作总结了几个研究项目的成果,证明了通过组装一些方形喷射装置来扩大喷射床规模的可能性。带底锥的圆柱形容器和带底锥的平行六面体容器在流体力学特征方面差别不大。现有的相关性可用来预测这些方形喷流床。喷流床可以非常合理地描述为混合良好的反应器。通过组合多个单元,可以在连续过程中接近固体停留时间分布(RTD)的塞流状态。当各单元之间互不干扰时,就能完全达到稳定的喷出状态:要达到这一目标,可将下游单元设置在一定的较低位置,并让固体通过溢流移动;在相邻单元之间设置内部垂直挡板是一种解决方案。我们提出了两种流体力学模型来描述单层和多层喷水床;它们的预测有助于为组合选择最佳的几何配置。设想了多喷嘴床反应器在气化造粒纺织残留物以产生合成气方面的可能应用,这种合成气可直接在原地用作辅助燃料。我们建造了两个装置:一个边长为 0.2 米的方形喷淋床炉和相应的适用于自动热工艺的双级放大装置。在底部阶段,四个单元独立运行,对低质量固体残留物进行燃烧/气化,而在上部阶段,四个模块级联运行,对选定的生物质进行热解/气化,并获得有价值的二次产品。
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From circular to square‐based section spouted beds: Scale‐up and design overview of a multistage thermal unit
This work summarizes the results of several research projects to demonstrate the possibility of scaling‐up spouted beds by assembling a number of square‐based jet units. Cylindrical vessels with a bottom cone and parallelepiped ones with a frustum base do not differ to a large extent in terms of hydrodynamic features. The existing correlations can be used to predict these square‐based spouted beds. Spouted beds can be very reasonably described as well‐mixed reactors. By assembling several units, it is possible to approach a plug flow state for solids residence time distribution (RTD) in continuous processes. Spouting stability is fully reached when the modules do not interfere each other: this goal is obtained by positioning the downstream units at a certain lower level and having the solids move by overflow; placing internal vertical baffles between contiguous units is the solution. Two hydrodynamical models are proposed to describe single and multiple spouted beds; their predictions help in choosing the best geometrical configuration for the assemblage. A possible application of a multiple spouted bed reactor was envisaged for gasifying pelletized textile residues to generate syngas which can be directly used in situ as a co‐fuel. Two units were built: a single 0.2 m side square‐based spouted bed furnace and the consequent dual stage scale‐up apparatus suitable for an auto thermal process. In the bottom stage, four units work independently to run combustion/gasification of low‐quality solid residues, while the upper stage had a cascade of four modules to run pyrolysis/gasification of selected biomass and obtain valuable secondary products.
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