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A METHOD OF DETERMINING THERMAL PARAMETERS OF GRANULAR COAL PARTICLES DURING DEVOLATILIZATION

机译:挥发过程中粒状煤颗粒热参数的确定方法

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Fluidized bed combustion offers great potential for the utilization of high-sulphur coal and low-grade coal in an environmentally acceptable manner. Utilization of fluidized bed technology, especially for the combustion of low quality lignites, enables pollutant emission control as well as efficient combustion. The most important stage during the combustion of coal particles is devolatilization, in which various factors such as heat transfer from the surroundings to the particle surface, heat conduction within the particle, the chemicals involved, the kinetics and the transport of volatile compounds within the particle play significant roles. The heat transfer coefficient, thermal diffusivity, thermal conductivity, heating coefficient and lag factor are the most significant thermal parameters in this process. In this study, a 1-D transient heat transfer analysis is carried out for a granular coal particle during devolatilization in a fluidized bed. The particle is idealized as a spherical solid body. Models are developed to determine the thermal parameters of such particles, and are verified using experimental centre temperatures of a 10 mm granular coal particle subjected to devolatilization at a medium temperature of 960 K. The data are taken from the literature. The results show that the thermal parameters determined here are in good agreement with experimental findings.
机译:流化床燃烧为以环境可接受的方式利用高硫煤和低品位煤提供了巨大的潜力。利用流化床技术,尤其是燃烧低质量褐煤,可以控制污染物排放并实现高效燃烧。煤颗粒燃烧过程中最重要的阶段是脱挥发分,其中各种因素,例如从周围环境到颗粒表面的热传递,颗粒内的热传导,所涉及的化学物质,颗粒内挥发性化合物的动力学和迁移发挥重要作用。传热系数,热扩散系数,导热系数,加热系数和滞后系数是此过程中最重要的热参数。在这项研究中,在流化床脱挥发分期间对粒状煤颗粒进行了一维瞬态传热分析。该颗粒理想化为球形固体。建立确定这些颗粒的热参数的模型,并使用在960 K的中等温度下进行脱挥发分的10 mm颗粒煤颗粒的实验中心温度进行验证。数据取自文献。结果表明,此处确定的热参数与实验结果非常吻合。

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