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Development of Finite-Element Model for Drying of Tomato Flakes under Passive Greenhouse Dryer: Experimental Validation and Optimization Potential

机译:被动式温室干燥机下番茄片干燥有限元模型的开发:实验验证与优化潜力

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摘要

This research introduces and validates a finite-element (FE) model for drying tomato flakes in a passive greenhouse dryer, supported by experimental data. The simulations accurately monitor crop and ground temperatures, reaching 49.1 and 61.1 °C, respectively. The moisture reduction is 96–4.25 (Wb), with a minimum relative humidity of 28.40 and a drying efficiency of 50.30. Energy and exergy efficiencies are evaluated at 80 and 52.82, respectively. The embodied energy is 1209.56 kWh, and the total cost of the proposed system is 15433.50 INR. The FE model effectively monitors temperatures and achieves a remarkable reduction in moisture, demonstrating its potential to optimize greenhouse dryer and promote sustainable, cost-effective drying practices in the food industry. The rigorous comparison between experimental and simulated results confirms the precision of the FE model, highlighting its potential in optimizing greenhouse dryers and promoting sustainable, cost-effective drying practices in the food industry.
机译:本研究引入并验证了在被动式温室干燥机中干燥番茄片的有限元(FE)模型,并得到了实验数据的支持。模拟准确监测作物和地面温度,分别达到49.1和61.1°C。水分减少率为96-4.25%(Wb),最低相对湿度为28.40%,干燥效率为50.30%。能量和运动效率的评估分别为 80% 和 52.82%。隐含能量为1209.56 kWh,拟议系统的总成本为15433.50 INR。有限元模型可有效监测温度并显著降低水分,证明其在优化温室干燥机和促进食品工业中可持续、具有成本效益的干燥实践方面的潜力。实验结果和模拟结果之间的严格比较证实了有限元模型的精确性,突出了其在优化温室干燥机和促进食品工业中可持续、具有成本效益的干燥实践方面的潜力。

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