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首页> 外文期刊>Atmospheric Measurement Techniques >Modeling the dynamic behavior of a droplet evaporation device for the delivery of isotopically calibrated low-humidity water vapor
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Modeling the dynamic behavior of a droplet evaporation device for the delivery of isotopically calibrated low-humidity water vapor

机译:模拟液滴蒸发装置的动态行为,以输送同位素校准低湿度水蒸气

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A model is presented that gives a quantitative description of the dynamic behavior of a low-humidity water vapor generator in terms of water vapor concentration (humidity) and isotope ratios. The generator is based on the evaporation of a nanoliter-sized droplet produced at the end of a syringe needle by balancing the inlet water flow and the evaporation of water from the droplet surface into a dry-air stream. The humidity level is adjusted by changing the speed of the high-precision syringe pump and, if needed, the dry-air flow. The generator was developed specifically for use with laser-based water isotope analyzers in Antarctica, and it was recently described in Leroy-Dos Santos et al. ( 2021 ) . Apart from operating parameters such as temperature, pressure, and water and dry-air flows, the model has as “free” input parameters: water isotope fractionation factors and the evaporation rate. We show that the experimental data constrain these parameters to physically realistic values that are in reasonable to good agreement with available literature values. With the advent of new ultraprecise isotope ratio spectrometers, the approach used here may permit the measurement of not only the evaporation rate but also the effective fractionation factors and isotopologue-dependent diffusivity ratios, in the evaporation of small droplets.
机译:提出了一种模型,其在水蒸气浓度(湿度)和同位素比方面给出了低湿度水蒸气发生器的动态行为的定量描述。通过将入口水流与从液滴表面的水流平衡到干燥空气流,发电机基于注射器针末端在注射器针末端产生的纳米磨液液滴的蒸发。通过改变高精度注射器泵的速度来调节湿度水平,并且如果需要,干燥空气流量。发电机专门用于南极洲的激光基水同位素分析仪,最近在Leroy-Dos Santos等人中描述。 (2021)。除了温度,压力和水和干空流动等工作参数外,该模型具有“自由”输入参数:水同位素分馏因子和蒸发速率。我们表明实验数据限制了这些参数,以合理与可用文献价值良好的良好协议。随着新的Ultrapise同位素比率光谱仪的出现,这里使用的方法可能允许测量蒸发速率,而且允许测量小液滴的蒸发中有效的分级因子和同位素依赖性扩散比率。

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