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Modeling and Numerical Analysis of an Atypical Convective Coal Drying Process
Authors:Milan Staki&#x  Evangelos Tsotsas
Affiliation:  a Thermal Process Engineering, Otto-von-Guericke-University, Magdeburg, Germany
Abstract:This work presents modeling and numerical simulation of batch convective coal drying in a deep packed bed after a high-pressure steam treatment (a part of the Fleissner coal drying process). The process is atypical, because ambient air is used to dry and cool hot particles, while usually, e.g., in the deep packed bed drying of biomaterials, hot air is contacting cold particles. Product-specific data (intraparticle mass transfer, gas-solids moisture equilibrium) for coal (here lignite) are taken over from literature. Available data on coal drying in packed beds of medium height are used for model validation. Then, the model is applied to the considered industrial process. The design point of the process is critically reviewed, and alternatives are developed by systematically simulating the influence of inlet air conditions (temperature, humidity, flow-rate) and coal particle size. This type of analysis is necessary for efficiently scheduling plant dryers, since coal particle size may change, and air inlet temperature and humidity are changing with the ambient conditions.
Keywords:Coal  Drying  Heat transfer  Mass transfer  Modeling  Numerical analysis  Packed bed
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