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A NOVEL APPROACH FOR MODELING MATERIAL BED IN A ROTARY KILN

机译:一种用于旋转窑中材料床的新方法

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Handling and processing contaminated, as well as environmentally hazardous materials, requires a deeper understanding of their physics of deformation and flow. In industrial scale, a sampling procedure can be applied at the end of the large reactor aperture such as a rotary kiln. In order to predict the processes involved in systems such as a rotary kiln, in the present study computational models are used to develop a useful tool to guide the refinement of the design process. Employing hydrodynamic continuum equations for describing the deformation and flow of dense gas-particle mixtures, the behavior of the materials within the bed and the release process of the contaminants are modeled during the handling process. The present model assumes a thin active layer at the bed surface with the rest of the bed material deforming plastically like a solid under weak shear. Material transport properties are defined in order to describe the mixing processes in the above-mentioned system. The numerical results obtained elucidate the physics of movement of the bed material, opening the possibility for developing a meaningful numerical model for the heat and mass transfer in a rotary kiln that may be of industrial use.
机译:处理和加工污染,以及环境危险材料需要更深入地了解其变形和流量的物理。在工业规模中,采样过程可以在大型反应器孔径的末端施加,例如旋转窑。为了预测诸如旋转窑的系统所涉及的过程,在本研究中,用于开发一种有用的工具来引导设计过程的改进。采用用于描述致密气体颗粒混合物的变形和流动的流体动力连续体方程,在处理过程中建模床内的材料和污染物的释放过程的行为。本模型在床表面处具有薄的有源层,其余的床材料在弱剪切下塑性地变形。定义材料传输性能,以便描述上述系统中的混合过程。获得的数值结果阐明了床材料的运动的物理学,打开了在可能具有工业用途的旋转窑中发育有意义的数值模型的可能性。

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