Analisis Variasi Kecepatan Kipas terhadap Efisiensi Pengeringan Cabai dengan Solar Dryer
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Fakultas Keguruan dan Ilmu Pendidikan
Abstract
Red chili peppers (Capsicum annuum L.) are an important agricultural commodity
with high market demand; however, their shelf life is limited due to a moisture
content of up to 90%, making them highly susceptible to deterioration. Traditional
sun-drying methods are often inefficient because they depend on weather conditions
and expose the product to contamination. Therefore, using a solar dryer equipped
with a fan system offers a cleaner and more effective drying method. This study
aimed to determine the most efficient fan speed variation and analyze the heat
transfer rate during the drying process. A quantitative descriptive method with an
experimental approach was employed using four airflow treatments: no fan (0.05
m/s), low fan speed (0.38 m/s), medium fan speed (0.73 m/s), and high fan speed
(1.09 m/s). Each treatment used 0.5 kg of fresh red chili peppers and was conducted
for three consecutive days, six hours per day. The observed parameters included
temperature, relative humidity, mass reduction, drying efficiency, and heat transfer
rate. The results showed that fan speed affected the drying performance of the solar
dryer. The medium fan speed (0.73 m/s) produced the highest average temperature
(52.33°C), the lowest relative humidity (44.83%), and the greatest mass loss (444
g). It also achieved the highest drying efficiency (22.271%), whereas the no-fan
treatment resulted in the lowest efficiency (20.816%). Although the highest heat
transfer rate (37.798 W) occurred at the high fan speed (1.09 m/s), it did not
produce the highest drying efficiency because excessive airflow increased heat loss.
Therefore, a medium fan speed of 0.73 m/s was identified as yielding the highest
efficiency among the tested treatments, as it provides a better balance of
temperature, humidity, air circulation, and heat transfer for effective moisture
removal.
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:: Finalisasi file repositori 20 Juli 2026_Kurnadi
