热泳
冷凝
燃烧
粒子(生态学)
化学
材料科学
沉积(地质)
热力学
纳米颗粒
纳米流体
纳米技术
地质学
物理化学
海洋学
物理
古生物学
沉积物
作者
Xin Yang,D.B. Ingham,Lin Ma,Hao Zhou,Mohamed Pourkashanian
出处
期刊:Fuel
[Elsevier BV]
日期:2017-01-12
卷期号:194: 533-543
被引量:82
标识
DOI:10.1016/j.fuel.2017.01.026
摘要
A dynamic CFD model, which is based on the inertia impaction, the thermophoresis and the direct alkali vapour condensation incorporating the influence of the heat transfer to the tube, has been developed for predicting the ash deposition formation in Zhundong lignite combustion in a pilot-scale furnace. The results show that particle deposition from the inertia impaction and the thermophoresis dictates the ash deposition formation under high furnace temperatures. The deposition caused by the direct alkali vapour condensation is less significant. As deposition time increases, particle impaction efficiency decreases and sticking efficiency increases due to the thermophoresis and the local temperature conditions, which result in the time-dependent behaviour of the deposition growth. In addition, the ash deposition characteristics are influenced under different furnace temperatures, due to the change in the particle impaction and sticking behaviours. Qualitative agreement is obtained between the predicted results and the measurements for the heat flux to the tube and the ash deposition growth.
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