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Evaporation in relation to CO2 concentration: Analysis of mass transfer coefficient

机译:蒸发与二氧化碳浓度的关系:传质系数分析

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In this study, the potential of mass transfer approach in estimating evaporation changes under different CO_2 levels are evaluated using data from controlled chamber experiments in which radiation and wind velocity were kept constant and temperature and relative humidity profiles were varied in different patterns along with CO_2 concentration. Currently, FAO procedure lists three approaches to compute air vapour pressure based on temperature and relative humidity profiles. In this study, the impact of using different procedures of estimating air vapour pressure is examined to assess the use of mass transfer approach for estimating evaporation. To achieve this, a part of the data is used to calibrate mass transfer coefficient which is subsequently used to project evaporation for future states. Accordingly, strategies are ranked for their potential in estimating evaporation. The effect of evaporation rate is compared at 400 ppm and 600 ppm CO_2 level. It has been observed that the evaporation rate is more pronounced at higher CO_2 level.
机译:在这项研究中,使用控制室实验的数据评估了传质方法在不同CO_2水平下估算蒸发变化的潜力,在该实验中,辐射和风速保持恒定,温度和相对湿度分布随CO_2浓度的变化而变化。当前,粮农组织程序列出了三种根据温度和相对湿度曲线计算空气蒸气压力的方法。在这项研究中,研究了使用不同的估算空气蒸气压力的方法的影响,以评估使用传质方法估算蒸发量。为此,一部分数据用于校准传质系数,随后将其用于预测未来状态的蒸发量。因此,对战略的潜力进行了评估。在400 ppm和600 ppm CO_2浓度下比较蒸发速率的影响。已经观察到,在较高的CO_2水平下,蒸发速率更加明显。

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