将双层平板太阳能集热器和感热蓄热器结合起来用于干燥农产品

Mohamad Efendi, Yusuf Hendrawan, L. C. Hawa, B. D. Argo
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摘要

对流集热技术是一种很有前景的农产品干燥技术。这项研究旨在确定平板式集热器的温度特性、能效和热排放,该集热器采用双层玻璃技术,在被动和主动模式下与铁屑状态下的蓄热材料集成在一起。调查在阳光下进行了 7 个小时的曝晒(当地时间 08:00-15:00)。测量期间使用了 10 个温度传感器和 4 个湿度传感器,以确定集热器的热特性。作为蓄热材料的铁屑密度为 250 公斤/米 3,辐照时间为七小时。结果表明,被动运行模式的温度特性高于主动运行模式。在辐照过程中,主动和被动模式下吸收器的最高温度分别为 63 ℃ 和 55 ℃。同时,在辐照过程中,被动模式和主动模式下 TES 的最高温度分别为 55.6 ℃ 和 50.6 ℃。集热器的能效范围为 23.3-55.1%(被动模式)和 18.6-40.7%(主动模式)。热能储存器(TES)的能量效率范围为 7.4-22.7%(被动式)和 7.4-13.0%(主动式)。在放电过程中,被动模式下的 TES 可储存热量 275 分钟,主动模式下可储存热量 95 分钟。使用双层玻璃技术的集热器和使用密度为 250 公斤/米 3 的铁屑作为储热材料的集热器在延长农产品的干燥时间方面具有很大的潜力,因为这些集热器的阳光照射时间有限,而且是环保型集热器。
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Employing a Combination of a Double-Glazed Flat Solar Collector and Sensible Heat Storage for Drying Agricultural Products
Convection heat collector technology is a promising technology for drying agricultural products. The study aimed to determine the temperature characteristics, energy efficiency, and thermal discharging of a flat plate-type collector using double-glazing technology integrated with heat storage material in the state of iron scraps in passive and ac - tive modes. Investigation was conducted for seven hours of exposure under the sun (08:00–15:00 local time). Ten temperature sensors and four humidity sensors were used during measurements to determine the thermal character - istics of the heat collector. The density of iron scraps as heat storage material is 250 kg/m 3 with an irradiation time of seven hours. The results indicate that the passive mode of operation has a higher temperature characteristics than the active mode. During irradiation process, the highest temperatures on the absorber in active and passive modes were 63 °C and 55 °C, respectively. Meanwhile, the highest temperatures on the TES in passive and active modes during irradiation were 55.6 °C and 50.6 °C, respectively. The energy efficiency of the collector ranges from 23.3–55.1% (passive) and 18.6–40.7% (active). The energy efficiency of the TES (Thermal Energy Storage) has a range of 7.4–22.7% (passive) and 7.4–13.0% (active). During discharging process, it shows that the TES in passive mode can store heat for 275 minutes and active mode for 95 minutes. Heat collectors that used double glazing technology and heat storage materials using iron scraps with a density of 250 kg/m 3 have a significant potential to extend the drying duration of agricultural products with limited exposure to sunlight and environmentally friendly heat collectors.
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