Johannes Martua Hutagalung
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引用次数: 0

摘要

REA模型的优点之一是,由实验数据得到的相对活化能方程可用于具有相同初始物料和含水率的其他干燥条件。通过对流数据,得到了活化能方程,该方程将用于微波干燥数据。仿真是将模型数据与功率为0.25 W/g、干燥空气温度为50℃、功率为0.7 W/g、干燥温度为70℃的微波实验数据进行对比。随着微波的增加,换热系数(h)的值越高,模拟结果越接近研制初期的实验数据,随着时间的增加,实验数据也越来越接近。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pemodelan Pengeringan Menggunakan Microwave Dengan Model Relative Energy Activation (REA) Untuk Pengeringan Kacang Hijau Berbentuk Sphere
One of the advantages of the REA model is that the relative activation energy equation obtained from the experimental data can be used for other drying conditions with the same initial material and moisture content. Through convective data, an equation of activation energy is obtained which will be used for drying the data using a microwave. The simulation carried out is to compare the model data with experimental data of a microwave with a power of 0.25 W/g and a drying air temperature of 50 0C, then a power of 0.7 W/g and a drying temperature of 70 0C. increasing with microwave, the higher the value of the heat transfer coefficient (h) the simulation results are getting closer to the experimental data for the initial period of development, even making experimental data with increasing time.
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