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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Computational fluid dynamics modeling of rice husk combustion in a fluidised bed combustor
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Computational fluid dynamics modeling of rice husk combustion in a fluidised bed combustor

机译:流化床燃烧器中稻壳燃烧的计算流体动力学模型

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Computational fluid dynamics (CFD) modeling was carried out to determine the trajectories and residence time of burning rice husk particles in the fluidised bed combustor (FBC) at different secondary air flowrates. In FBC, the intra and extra-particle mass transfer resistance of the oxidising agent plays a major role in determining the combustion rate because of high temperature processing. Moreover, factors such as turbulence and retention time determine the reaction rate. In actual combustion experiments, these two factors could not be observed or determined distinctly, thereby hindering any further improvements in operating parameters or combustor design in order to maximise the efficiency of particle combustion. This hitch was solved through the application of (CFD) modeling. The modeling results offered significant insights into the trajectory and mass loss history of the rice husk particle combustion. The actual experimental results also showed agreement with the modeling results.
机译:进行了计算流体动力学(CFD)建模,以确定在不同二次空气流量下流化床燃烧器(FBC)中燃烧的稻壳颗粒的轨迹和停留时间。在FBC中,由于高温处理,氧化剂的颗粒内和颗粒外传质阻力在确定燃烧速率中起主要作用。此外,湍流和保留时间等因素决定了反应速率。在实际的燃烧实验中,这两个因素无法被清楚地观察到或确定,从而阻碍了运行参数或燃烧室设计的任何进一步改进,从而使颗粒燃烧的效率最大化。通过(CFD)建模的应用解决了这一难题。建模结果为稻壳颗粒燃烧的轨迹和质量损失历史提供了重要的见识。实际实验结果也表明与建模结果吻合。

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