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Thermal Evaluation of a Hybrid Dryer with Solar and Geothermal Energy for Agroindustry Application

机译:农业工业应用中太阳能和地热能混合干燥机的热评价

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摘要

The process of drying at the agroindustry level is considered the most important stage for the storage and conservation of food, but an inadequate sizing of the systems can generate an excessive consumption of fuel and energy. In the case of the agricultural sector, especially in small and medium producers in Ecuador, they tend to dry cereals outdoors, spreading the product over black plastics, asphalt floors, or cements called “tendal”. This process depends on the weather conditions of the area and can take between one or four days of drying, tending to damage the product by fungi. On the other hand, certain producers build dryers empirically, using as the main fuel gas for domestic use, diesel, or firewood. Among the problems presented for these types of dryers are heat losses in the drying chamber as it is not thermally insolated, a lack of temperature control (above 60 °C) and drying speed, excessive fuel use, and 10% burned product, which are essential to control to obtain a quality product and savings in the energy consumption of the dryer. With regard to the problem raised above, the design and construction of a hybrid dryer that worked with 80% of thermal solar and low enthalpy aerogeothermal energy and 20% with electric power was conducted to optimize the drying process and ensure a quality dry product. The work proposes the dimensioning of each component of the dryer. As a result, it was found that the efficiency of the equipment was around 60%, reaching a maximum operating temperature of 52 °C, with a stabilization time of the system in the first hour within 40 min. It should be noted that the design of the prototype is easy to adapt and replicate.
机译:在农业工业水平上干燥的过程被认为是储存食物的最重要的阶段,但系统的尺寸不足可以产生过度消耗的燃料和能量。在农业部门的情况下,特别是在厄瓜多尔的中小型生产商中,他们倾向于在户外干燥谷物,将产品展示在黑色塑料,沥青地板或叫做“肌腱”的水泥。该过程取决于该地区的天气条件,并且可以在干燥的一或四天之间,倾向于通过真菌损坏产品。另一方面,某些生产商以经验为本的烘干机,用作家用的主要燃料气体,柴油或木柴。对于这些类型的干燥器所呈现的问题是干燥室中的热损失,因为它不受热不透中,缺乏温度控制(高于60℃)和干燥速度,过度燃料使用和10%烧伤的产品控制对于获得优质产品并节省烘干机的能耗至关重要。关于上述问题提出的,是进行与热太阳能和低焓aerogeothermal能量的80%,与电功率的20%工作的混合干燥机的设计和建造,以优化干燥过程,并确保质量干燥产品。该工作提出了干燥器各组分的尺寸。结果,发现设备的效率约为60%,达到52°C的最大工作温度,在40分钟内的第一小时内系统的稳定时间。应该指出的是,原型的设计易于适应和复制。

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