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首页> 外文期刊>International journal of energy research >Fundamental heat transfer mechanism between bed-to-membrane water-walls in circulating fluidized bed combustors
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Fundamental heat transfer mechanism between bed-to-membrane water-walls in circulating fluidized bed combustors

机译:循环流化床燃烧器床-膜水壁之间的基本传热机理

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摘要

In the present work, the fundamental mechanism between bed-to-membrane water-walls in the riser column of a circulating fluidized bed (CFB) combustor is presented. The bed-to-membrane water-wall heat transfer depends on the contributions of particle heat transfer, dispersed phase heat transfer and radiation heat transfer. The fundamental mechanism of particle heat transfer and the effect of fraction of wall exposed to clusters and gas gap thickness between cluster and wall on particle heat transfer coefficient and bed-to-wall heat transfer coefficient are investigated. The influence of operating parameters like cross-sectional average volumetric solids concentration and bed temperature on particle and bed-to-wall heat transfer are also reported. The present work contributes some fundamental information on particle heat transfer mechanism, which is responsible for increasing the bed-to-wall heat transfer coefficient (apart from dispersed phase convection and radiation heat transfer). The details on particle heat transfer mechanism will enable to understand the basic heat transfer phenomena between bed-to-membrane water-walls in circulating fluidized bed combustors in a detailed way, which in turn will aid for better design of CFB combustor units. The particle heat transfer mechanism is significantly influenced by the fraction of wall exposed to clusters and gas gap thickness between clusters and wall.
机译:在目前的工作中,提出了循环流化床(CFB)燃烧室提升管柱中的床到膜水壁之间的基本机理。床到膜的水壁传热取决于颗粒传热,分散相传热和辐射传热的作用。研究了颗粒传热的基本机理以及暴露于团簇的壁的比例和团簇与壁之间的气隙厚度对颗粒传热系数和床对壁传热系数的影响。还报告了诸如横截面平均体积固体浓度和床温之类的操作参数对颗粒和床对壁传热的影响。目前的工作为粒子传热机理提供了一些基础信息,这些信息有助于增加床对壁的传热系数(除了分散相对流和辐射传热)。有关颗粒传热机理的详细信息将使您能够详细了解循环流化床燃烧器中床对膜水壁之间的基本传热现象,从而有助于更好地设计CFB燃烧器单元。颗粒传热机理受暴露于团簇的壁的比例和团簇与壁之间气隙厚度的显着影响。

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