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Energy interaction of sub processes in drying value chain using exergy waste. Study case: drying and greenhouse growing of tomato

机译:Deacten R废料干燥价值链亚过程的能量相互作用。研究案例:番茄的干燥和温室生长

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In the drying value chain for fruits and vegetables, nine sub-processes have been identified. This work analyses the interaction between growing in greenhouses and drying sub processes for exergy and water flow reutilization. By thermodynamic model simulation, wet air from drying process is retrieved back to the crops within greenhouses. This interaction is an economic solution for the problem of high temperatures and low relative humidity within the greenhouses in hot dry environments. Humidity after the drying is quantified to estimate exergy profiles. Results are an average decrease of temperature of 12.8°C and 8.7°C and an increment of relative humidity of 7% and 9%, for different day conditions.
机译:在水果和蔬菜的干燥价值链中,已经确定了九个子过程。这项工作分析了温室中生长与干燥副过程之间的相互作用,用于走水流再利用。通过热力学模型模拟,从干燥过程中湿空气被检索回到温室内的作物。这种互动是热干燥环境中温室内高温和低相对湿度的经济解决方案。干燥后的湿度量化以估计出漏洞的轮廓。结果平均降低温度为12.8°C和8.7°C,相对湿度为7%和9%,对于不同的日期条件。

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