温室小气候流动模拟:入口流动条件的影响

I. Janajreh, S. Raza, K. Kadi
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引用次数: 2

摘要

温室(GH)已被证明是一种具有较低灌溉用水需求的粮食生产技术。为了优化温室蒸馏系统的运行,建立了温室蒸馏系统内部小气候环境的数值模型。介绍了系统的性能(温度、流速、相对湿度),并提出了系统性能的改进因素。结果表明,进口速度和植物蒸腾作用对相对湿度的影响比进口温度变化更显著。当温度升高8Co时,相对湿度降低了几个百分点(~2%)。当风速在0.2-0.7m/s之间变化时,在GH的日运行范围内,观察到湿度增加了5个点。最后,当蒸腾从0.2 g/m3增加到1.2 g/m3时,相对湿度急剧上升超过15个点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Greenhouse Microclimate Flow Simulation: Influence of Inlet Flow Conditions
Greenhouse (GH) has been demonstrated as a profitable technology for food production with low demand of irrigation water. In this work, a numerical model is developed to study the micro-climatic environmental conditions inside a greenhouse distillation system for optimize operation. The system performance (temperatures, flow velocities, relative humidity) is presented and improvement factors for the system performance are suggested. The result shows that the inlet velocity and plant transpiration have a more pronounced effect on the relative humidity than the incoming temperature variation. As temperature increases by 8Co the relative humidity decreases with few percentiles (~2%). When velocity varies between 0.2-0.7m/s, and within the diurnal operation of the GH, an increase of up to 5 points in the humidity is observed. Finally, when the transpiration increases from 0.2 to 1.2 g/m3 the relative humidity observes a drastic jump of over 15 points.
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