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首页> 外文期刊>International Journal of Heat and Mass Transfer >Novel process for the rapid and efficient generation of superheated steam using a water-containing porous material
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Novel process for the rapid and efficient generation of superheated steam using a water-containing porous material

机译:使用含水多孔材料快速有效地产生过热蒸汽的新方法

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Heat treatment by superheated steam has been utilized in several industrial fields including sterilization, desiccation, and cooking. Saturated and superheated steam is used in a number of home appliances, such as humidifiers, steam cookers, and steam irons. In these applications, in order to save electricity, it is necessary to produce steam on demand. Therefore, quick start-up and cut-off responses are required. However, most electrically energized steam generators require a relatively long time to generate steam due to the large heat capacities of the water in the container. We proposed a new method using containing porous material to generate saturated or superheated steam quickly. Steam may be generated rapidly using containing porous material because the heat capacity of the water in the meniscus is extremely small. The main objective of the present work was to show the performance of rapid steam generator we proposed and experimentally investigate the effect of the effective thermal conductivity of the porous material on the rapid and efficient generation of saturated and superheated steam. As a result, in order to generate superheated steam quickly and efficiently, the generator should be constructed from low-thermal-conductivity material. The energy utilization efficiency was analyzed based on a simplified one-dimensional model of the heat and fluid flow in the porous material, the calculated results were shown to be in good agreement with the experimental results. Based on the proposed model for the energy utilization efficiency on steam generation, the proposed rapid superheated steam generator is suitable for miniaturization.
机译:通过过热蒸汽进行的热处理已经在包括灭菌,干燥和烹饪的多个工业领域中被利用。饱和和过热蒸汽用于许多家用电器,例如加湿器,蒸汽炊具和蒸汽熨斗。在这些应用中,为了节省电力,有必要按需生产蒸汽。因此,需要快速启动和截止响应。然而,由于容器中水的大热容量,大多数带电的蒸汽发生器需要相对较长的时间来产生蒸汽。我们提出了一种使用含有多孔材料的新方法来快速产生饱和或过热蒸汽的方法。由于弯液面中水的热容量极小,使用含多孔材料可能会迅速产生蒸汽。本工作的主要目的是证明我们提出的快速蒸汽发生器的性能,并通过实验研究了多孔材料的有效导热率对快速有效地产生饱和和过热蒸汽的影响。结果,为了快速且有效地产生过热蒸汽,发电机应该由低导热率的材料构成。基于简化的多孔材料热流和流体流的一维模型,对能量利用效率进行了分析,计算结果与实验结果吻合良好。基于所提出的蒸汽产生能量利用效率模型,所提出的快速过热蒸汽发生器适合于小型化。

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