Studi eksperimen rumah pengering ultra-violet (solar dryer) sistem hibrid tungku biomassa melalui variasi kecepatan aliran udara panas

Verdy A. Koehuan, Margaretha Kewa Unarajan, Defmit B. N. Riwu, Muhamad Jafri
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Abstract

The ultra-violet dryer integrated with the biomass furnace is a drying method with a forced mechanism. In this study, an experimental study was carried out. The drying process of porang tubers uses a hybrid system ultra violet plastic dryer (UV solar dryer) through varying the speed of the inlet air to obtain efficient drying results and porang tuber products. The results showed that the final moisture content of porang tubers after drying per day for each variation of air speed obtained the lowest value of 10.50%bb with the highest drying rate of 0.3373 kg/hour from the assumption of an initial moisture content of 70%bb, which occurs in variations airspeed of 1.8 m/s. while the speed is 1.3 m/s with the lowest drying rate of 0.330 kg/hour with a final moisture content of 11.74%.bb) Drying efficiency for variations in the speed of hot air flow into the hot air duct of the biomass furnace shows the highest value at a speed of 1.3 m/s of 16.76% with the lowest specific energy consumption (KES) of 51975.7 kJ/kg.
与生物质炉集成的紫外线干燥机是一种强制机构的干燥方法。在本研究中,进行了一项实验研究。porportur的干燥过程采用混合系统紫外线塑料干燥机(UV太阳能干燥机)通过改变入口空气的速度来获得有效的干燥效果和porportur制品。结果表明:在风速为1.8 m/s时,假设初始含水率为70%bb,每天干燥后的最终含水率最低,为10.50%bb,干燥速率最高,为0.3373 kg/h;当速度为1.3 m/s时,最低干燥速率为0.330 kg/h,最终含水率为11.74%.bb)生物质炉热风管热风速度变化的干燥效率在速度为1.3 m/s时最高,为16.76%,比能耗(KES)最低,为51975.7 kJ/kg。
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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