Thermal Study of the Utilization of Rice Husks Using the Forced Convection Method as Energy for a Rotating Cylinder Dryer

I. B. Alit, I. Susana
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Abstract

Small farmers in rural areas use the sun as their main energy source to dry post-harvest products. Due to limited knowledge and technology, farmers depend on the sun through direct drying. Direct use of the sun for the drying process has disadvantages in uncertain weather such as cloudy or rainy. This results in the drying process not being optimal or even stopping. This research aims to use rice husks as energy to replace direct sun drying to produce optimal temperatures so that drying time is shorter and the quality of the dried food is hygienic. Rice husk as an energy source is applied through a rotating cylinder dryer. This dryer is tailored to farmers' needs, namely easy to operate at an affordable price. This energy can be utilized sustainably because it is abundant through a forced convection system and energy conversion using a heat exchanger. The design of the compact rotary dryer includes an integrated drying chamber in one unit with the combustion furnace and a heat exchanger. The drying chamber includes a rotating cylinder and a fixed cylinder. The test results show that hot air from burning rice husks flows through the heat exchange pipes by conduction from the furnace to the walls of the drying chamber and by forced convection through an exhaust fan installed in the drying chamber. The average environmental temperature of 29.55-29.69oC has increased when using one exhaust fan to 64.46oC and two exhaust fans to 60.11oC. This drying temperature can produce shorter drying times, so it can be applied to post-harvest product drying, which is energy-efficient and sustainable for small farmers. Based on research results, rotating cylinder dryers powered by rice husks are very suitable for small farmers to replace direct sun drying.
利用强制对流法将稻壳作为回转圆筒干燥机能源的热研究
农村地区的小农户利用太阳作为主要能源来干燥收获后的产品。由于知识和技术有限,农民只能依靠太阳直接干燥。在阴天或雨天等不确定天气下,直接利用太阳进行干燥有其缺点。这导致干燥过程不理想,甚至停止。这项研究旨在利用稻壳作为能源,取代直接晒干,以产生最佳温度,从而缩短干燥时间,保证干燥食品的质量卫生。稻壳作为一种能源,通过转筒烘干机进行应用。这种烘干机符合农民的需求,操作简便,价格合理。通过强制对流系统和热交换器进行能量转换,稻壳中的能量可以得到持续利用。紧凑型旋转式烘干机的设计包括一个与燃烧炉和热交换器合二为一的集成烘干室。干燥室包括一个旋转圆筒和一个固定圆筒。测试结果表明,稻壳燃烧产生的热空气通过热交换管道从燃烧炉传导到干燥室的墙壁,并通过安装在干燥室的排气扇强制对流。当使用一个排气扇时,29.55-29.69 摄氏度的平均环境温度升至 64.46 摄氏度,而使用两个排气扇时,平均环境温度升至 60.11 摄氏度。这种干燥温度可缩短干燥时间,因此可用于收获后的产品干燥,对小农户来说既节能又可持续。根据研究结果,以稻壳为动力的转筒烘干机非常适合小农户取代直接晒干。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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