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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Droplet growth by gravitational coagulation enhanced by turbulence: Comparison of theory and measurements
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Droplet growth by gravitational coagulation enhanced by turbulence: Comparison of theory and measurements

机译:湍流增强了重力凝结引起的液滴生长:理论与测量的比较

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While it is well known that cloud droplets grow in an inherently turbulent environment, the role of turbulence is only now being elucidated. To shed light on this issue, we compare published measurements of droplet growth by collision in turbulent flow with numerical simulations. Because the measurements demonstrate an accelerated growth under turbulent conditions compared to laminar ones, the data clearly cannot be reproduced using the well-established kernel for sedimentation under laminar conditions. By employing a collision kernel that has been recently derived from direct numerical simulations, we perform sensitivity studies and quantify the parameter ranges that are compatible with the experimental data. This experiment does not enable us to uniquely determine the model parameters but we were able to place constraints on the form of acceptable models that reproduce the experimental data successfully. Moreover, we gain insight into how laboratory experiments could be improved to aid model validation.
机译:众所周知,云滴是在固有的湍流环境中生长的,但是直到现在才阐明了湍流的作用。为了阐明这一问题,我们将已发表的湍流中碰撞引起的液滴生长的测量结果与数值模拟进行了比较。由于测量结果表明,与层流条件相比,湍流条件下的生长加快了,因此,使用层流条件下成熟的内核进行沉降,显然无法再现数据。通过采用最近从直接数值模拟中得出的碰撞核,我们进行了敏感性研究并量化了与实验数据兼容的参数范围。该实验无法使我们唯一地确定模型参数,但是我们能够对成功复制实验数据的可接受模型的形式施加约束。此外,我们深入了解了如何改进实验室实验以帮助模型验证。

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