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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Effects of airflow and liquid temperature on ammonia mass transfer above an emission surface: Experimental study on emission rate
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Effects of airflow and liquid temperature on ammonia mass transfer above an emission surface: Experimental study on emission rate

机译:气流和液体温度对排放表面上方氨气传质的影响:排放速率的实验研究

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The present study performed a series of experiments in a wind tunnel to investigate the impact of velocity, turbulence intensity and liquid-air temperature difference on ammonia emission rates. Decreasing velocity, turbulence intensity and liquid temperature are shown to reduce the ammonia emission rates. The emission rates are more sensitive to the change of velocity at a low velocity compared to change of velocity at a higher velocity range, which corresponds with the conclusion that the boundary layer thickness of velocity increases sharply when velocity is changed from 0.2 m/s to 0.1 m/s. In addition, the emission rates are more sensitive to the change of temperature at a higher temperature than at a lower liquid temperature range. The influence of velocity and liquid-air temperature difference on boundary layer thickness is also analyzed. The relationship between the emission rate and boundary layer thickness is presented.
机译:本研究在风洞中进行了一系列实验,以研究速度,湍流强度和液空气温差对氨排放速率的影响。降低速度,湍流强度和液体温度可降低氨的排放速率。与在较高速度范围内的速度变化相比,发射速率对低速度下的速度变化更敏感,这对应于以下结论:当速度从0.2 m / s更改为时,速度的边界层厚度会急剧增加。 0.1 m / s。另外,在较高温度下而不是在较低液体温度范围内,排放速率对温度变化更敏感。还分析了速度和液-空气温差对边界层厚度的影响。给出了发射速率与边界层厚度之间的关系。

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