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Modeling and simulation of moisture transfer during solar drying of carrot slices

机译:胡萝卜片太阳能干燥过程中水分传递的建模与仿真

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摘要

Carrot slices of 0.03m diameter and 0.005m thickness were dried in direct, indirect and mixed mode type natural convection solar dryers. Thin layer drying behavior of carrot slices was studied using 10 empirical and semi-empirical mathematical models. Wang and Singh model described the drying behavior of carrot accurately with maximum values of coefficient of determination (R-2) and minimum reduced chi-square ((2)), and root mean square error (RMSE). The effective diffusivity (D-eff) and convective mass transfer coefficient (h(m)) of carrot slices ranged from 2.59x10(-8)-6.36x10(-8) m(2)/s and 3.15x10(-7) to 4.28x10(-7) m/s, respectively, with maximum values obtained for mixed mode solar dried samples followed by direct and indirect solar dried samples. The diffusivity of carrot slices dried in direct, indirect and mixed-mode solar dryer were expressed as a function of temperature using Arrhenius relation. Finite element model was developed using COMSOL Multiphysics software to simulate moisture ratio during drying. The developed model predicted the transient moisture migration phenomenon inside the samples precisely during the drying process.Practical applicationsThe ever increasing worriment on climate change and growing demand for enactment of clean energy technologies in food industries is the motivation for investigating the solar drying behavior of carrot slices. It is well known that the physico-chemical and sensorial changes during drying are very much dependent on the moisture content of food product. In this regard, proper understanding and controlling of the solar drying process by accurately predicting moisture distribution inside the product will result in superior quality dried products. Moreover, mathematical models will assist in predicting the drying behavior of food product by analyzing the influence of process parameters and will be helpful to minimize the cost of drying process and deterioration of quality attributes of the product. The use of solar dryers is a proven technology and the food industry should promote its practical applications in food processing sector.
机译:在直接,间接和混合模式类型的自然对流太阳能干燥机中干燥直径为0.03m和厚度为0.005m的胡萝卜片。使用10个经验和半经验数学模型研究了胡萝卜切片的薄层干燥行为。 Wang和Singh模型以确定系数的最大值(R-2)和最小减少的卡方((2))和均方根误差(RMSE)准确描述了胡萝卜的干燥行为。胡萝卜片的有效扩散率(D-eff)和对流传质系数(h(m))范围为2.59x10(-8)-6.36x10(-8)m(2)/ s和3.15x10(-7)分别达到4.28x10(-7)m / s,混合模式太阳能干燥样品的最大值分别为直接和间接太阳能干燥样品的最大值。利用阿伦尼乌斯(Arrhenius)关系式,将直接,间接和混合模式太阳能干燥机中干燥的胡萝卜片的扩散率表示为温度的函数。使用COMSOL Multiphysics软件开发了有限元模型,以模拟干燥期间的水分比。所开发的模型准确地预测了干燥过程中样品内部的瞬时水分迁移现象。实际应用对气候变化的担忧日益加剧,食品工业对清洁能源技术的需求不断增长,这是研究胡萝卜片的太阳能干燥行为的动机。 。众所周知,干燥过程中的物理化学和感官变化在很大程度上取决于食品的水分含量。在这方面,通过准确地预测产品内部的水分分布来正确理解和控制太阳能干燥过程将产生质量更高的干燥产品。此外,数学模型将通过分析过程参数的影响来帮助预测食品的干燥行为,并将有助于最大程度地降低干燥过程的成本和产品质量属性的下降。太阳能干燥机的使用是一种行之有效的技术,食品工业应促进其在食品加工领域的实际应用。

著录项

  • 来源
    《Journal of food process engineering》 |2018年第8期|e12909.1-e12909.15|共15页
  • 作者单位

    Indian Inst Technol, Agr & Food Engn Dept, Kharagpur, W Bengal, India;

    Indian Inst Technol, Agr & Food Engn Dept, Kharagpur, W Bengal, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 04:02:59

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