太阳能干燥技术的最新进展:综述

Q3 Energy
D. Behera, A. Mohanty, R. Mohanty
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引用次数: 2

摘要

食品和蔬菜产品的保存是一种古老的保持风味、外观和质量的做法。自古以来,用于干燥粮食的干燥机依靠阳光、木柴、化石燃料和煤炭直接工作,从而释放碳。这些可用的方法昂贵、不可靠且不卫生;从而使用利用免费和清洁能源的太阳能干燥器对于食品保存的更高附加值是更好的。本次探索的目的是研究使用不同类型的太阳能烘干机烘干食品、蔬菜、海鲜等的最新进展。在太阳能烘干过程中,对温度、相对湿度和空气速度、湍流效应、太阳辐射和位置纬度等参数的影响进行了许多研究。研究结果表明,太阳辐射和大气等气候条件对太阳能烘干机的烘干效率起着重要作用。相变材料在白天储存热能,在夜间释放热量。该工艺提高了热效率并减少了干燥期间的热损失。一方面,与太阳能电池板集成的混合式干燥机为直流鼓风机的运行提供电力,直流鼓风机在干燥室内循环热空气,以实现更好的干燥。此外,还对不同吸收板的使用、提高传热率、使用各种相变材料进行储热以及CFD模拟分析进行了批判性综述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent advances in solar drying technologies: A Comprehensive review
Preservation of food and vegetable products is an age-old practice for the retention of flavor, appearance, and quality. From ancient times, driers for drying food grains work on direct sun rays, firewood, fossil fuels, and coals causing carbon release. These available methods are expensive, unreliable, and unhygienic; thereby the use of a solar dryer working on free and clean energy is better for higher value addition to food preservation. The objective of this exploration is to study the recent developments in the use of different types of solar dryers for drying foods, vegetables, seafood, etc. There exist many studies on the effects of the parameters such as temperature, relative humidity, and speed of air, turbulence effect, sun irradiation, and the latitude of the location in the solar drying process. The findings show that the climate conditions such as solar radiation and atmospheric air play an important role in the drying efficiency of the solar dryer. A phase change material stores thermal energy during the daytime and releases heat during the nighttime. This process improves thermal efficiency and reduces heat loss during the drying period. On the one hand, a hybrid dryer integrated with a solar panel produces electricity for the operation of a DC blower circulating hot air inside the drying chamber for better drying. In addition, a critical review has been performed on the usage of different absorbing plates increasing heat transfer rate, use of various phase change materials for heat storage, and analysis of CFD simulation.
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来源期刊
Journal of Energy Systems
Journal of Energy Systems Environmental Science-Management, Monitoring, Policy and Law
CiteScore
1.60
自引率
0.00%
发文量
29
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