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A new design method for fluidized bed conversion of largely heterogeneous binary fuels

机译:一种主要用于非均质二元燃料流化床转化的新设计方法

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Binary fuels of a fluidized bed combustor or gasifier are solids composed of two groups of particles. Their optimal handling in the same bed becomes rather difficult if their hydrodynamic properties differ by two orders of magnitude or more. Both of these fuel classes are directly fed into the reactor in most cases but the rather homogeneous fuel originally fed switches into a binary character inside the reactor in some others. A typical example of the latter case is the thermal utilization of rubber wastes. A novel design is proposed in the present paper by setting up a non-mixing, non-elutriated binary bed. Design criteria and procedure are formulated as well. One of the known calculation methods is proposed to be applied for assuring a segregated bed by means of choosing the bed components, geometry, and gas velocity conveniently. Cold model experiments are proposed to be applied for assuring no elutriation of the fine fuel particles and no sinking of the coarse fuel particles in the same time. A simple experiment is proposed for determining the common minimum fluidization velocity of the binary bed because known calculation methods can not be applied here.
机译:流化床燃烧器或气化炉的二元燃料是由两组颗粒组成的固体。如果它们的流体力学特性相差两个或更多个数量级,则它们在同一床中的最佳处理将变得相当困难。在大多数情况下,这两种燃料都直接输入到反应堆中,但是在其他情况下,最初输入的相当均质的燃料则转换为反应堆内部的二元特性。后一种情况的典型示例是橡胶废料的热利用。通过建立非混合,非水洗的二元床,本文提出了一种新颖的设计。还制定了设计标准和程序。提出了一种已知的计算方法,该方法通过方便地选择床的成分,几何形状和气体速度而用于确保分离的床。提出将冷模型实验应用于确保不细燃料颗粒的淘析和粗燃料颗粒的沉没的同时。提出了一个简单的实验来确定二元床的共同最小流化速度,因为此处无法应用已知的计算方法。

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