Robust Design Applying Taguchi’s Orthogonal Matrices to Determine the Optimal Work Parameters in The Fruit Dehydration Process in A Solar-Gas Hybrid Dehydration Equipment Under Environmental Conditions at 2800 MASL

Edison Gustavo Tapia Zurita, Melton Edmundo Tapia Zurita
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Abstract

In this research work, a prototype dehydrator Solar-gas was designed and manufactured in order to dehydrate tropical fruits under ambient conditions at 2800 MASL.  This equipment requires the development of study of parameter variation to determine the most optimal ones under these altitude conditions to which the Taguchi orthogonal matrices have been applied, varying at two levels the different parameters involved such as temperature, relative humidity, mass of product to be processed, product distribution within the equipment. By using this equation, the best combination of them was determined to achieve an efficient process and adequate dehydration. Validation of effectiveness is carried out by determining the homogeneity of the dehydrated product.
应用田口正交矩阵进行稳健设计,确定 2800 MASL 环境条件下太阳能-气体混合脱水设备中水果脱水过程的最佳工作参数
在这项研究工作中,设计并制造了太阳能-气体脱水机原型,以便在 2800 MASL 的环境条件下对热带水果进行脱水。 该设备需要对参数变化进行研究,以确定在这些海拔条件下的最佳参数,为此采用了田口正交矩阵,对温度、相对湿度、待处理产品的质量、产品在设备内的分布等不同参数进行两级变化。通过使用该方程,确定了它们的最佳组合,以实现高效工艺和充分脱水。通过确定脱水产品的均匀性来验证其有效性。
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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