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Design Modelling and the Performance Analysis of a Recycling Drum Dryer for a Salt Adsorbent

机译:盐分吸附式鼓式干燥机的设计建模和性能分析

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Solid desiccants play a major role as well as liquid desiccants today in the dehumidification appliances. Although salt adsorbents have a better moisture adsorbing capacity than organic adsorbents, deliquescence limits their performance. Therefore, the study was carried out to identify a suitable recycling mechanism for salt adsorbent. Damprid one of the commercially developed moisture absorber was used for the experiment. A drum dryer was designed to regenerate Damprid from its hydrate solution. For computational fluid dynamic analysis, ANSYS Fluent fluid flow systems in ANSYS Workbench was used. Simulation results were obtained to determine the temperature and velocity distribution for 3 different RPMs. Experiments were conducted by varying parameters: heat input, drum rotating RPM and liquid spray rate, to obtain the maximum recovery rate. The highest recovery rate, 433.3g/h was gained at 1.18 RPM and 22ml/min. It was identified that the recovery rate can be optimized by improving the heat utilization.
机译:如今,固态除湿剂和液态除湿剂在除湿设备中起着重要的作用。尽管盐吸附剂比有机吸附剂具有更好的水分吸附能力,但潮解会限制其性能。因此,进行了研究以找出合适的盐吸附剂再循环机制。实验中使用了一种商业开发的吸湿剂Damprid。鼓式干燥机旨在将Damprid的水合物溶液再生。为了进行计算流体动力学分析,使用了ANSYS Workbench中的ANSYS Fluent流体流动系统。获得了仿真结果,以确定3种不同RPM的温度和速度分布。通过改变参数进行实验:热输入,转鼓旋转RPM和液体喷雾速率,以获得最大的回收率。在1.18 RPM和22ml / min的条件下,最高回收率达到433.3g / h。已经确定,可以通过提高热利用率来优化回收率。

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