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Study on the fiber fouling in drying exhaust heat utilization of wood industry

机译:木材工业干燥废热利用中的纤维污染研究

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Based on the viscoelastic and creep deformation properties, a new deposition mechanism model for slender wood fiber particles in wast heat utilization is proposed in this paper. And the equivalent sphere method is used to describe the particle feature size in the model. With the proposed deposition model of flexible slender particles, the critical criteria are obtained. The influence of particle size, aspect ratio and damping factor on particle deposition has been investigated. The results indicate that particle deposition increases with the particle size decrease, aspect ratio and damping factor increase. According to the present deposition model, a coupling simulation with FLUENT and EDEM method was carried out for the flow field of fiber drying tail gas in heat piping exchanger, which indicated that particle deposition mainly occurred at the central windward area of fin due to the direction changer and the magnitude decrease of collision velocity between fiber particles and wall. Experiment of heat recovery of drying tail gas revealed that using the H fin tubes instead of rectangular fin tubes can greatly relieve the deposition of wood fiber particles, which provided a useful way to save energy in wood industries.
机译:基于粘弹性和蠕变变形特性,提出了一种细长木纤维颗粒在余热利用中的沉积机理模型。等效球法用于描述模型中的粒子特征尺寸。利用提出的柔性细长颗粒的沉积模型,获得了临界标准。研究了粒径,长宽比和阻尼因子对颗粒沉积的影响。结果表明,随着粒径的减小,长径比和阻尼因子的增加,颗粒的沉积增加。根据目前的沉积模型,利用FLUENT和EDEM方法对换热器中纤维干燥尾气的流场进行了耦合模拟,结果表明,颗粒沉积主要发生在翅片中心向风区域。交换器和纤维颗粒与壁之间碰撞速度的减小幅度。干燥尾气的热回收实验表明,用H翅片管代替矩形翅片管可以大大减轻木纤维颗粒的沉积,为木材工业节约能源提供了一种有用的途径。

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