首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Interaction between volcanic plumes and wind during the 2010 Eyjafjallaj?kull eruption, Iceland
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Interaction between volcanic plumes and wind during the 2010 Eyjafjallaj?kull eruption, Iceland

机译:冰岛2010年艾雅菲亚德拉火山爆发期间,火山羽与风之间的相互作用

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Estimates of volcanic source mass flux, currently deduced from observations of plume height, are crucial for ash dispersion models for aviation and population hazard. This study addresses the role of the atmospheric wind in determining the height at which volcanic plumes spread in the atmosphere and the relationship between source mass flux and plume height in a wind field. We present a predictive model of volcanic plumes that describes the bending over of the plume trajectory in a crosswind and show that model predictions are in accord with a dataset of historic eruptions if the profile of atmospheric wind shear is described. The wind restricts the rise height of volcanic plumes such that obtaining equivalent rise heights for a plume in a windy environment would require an order of magnitude increase in the source mass flux over a plume in a quiescent environment. Our model calculations are used to calibrate a semi-empirical relationship between the plume height and the source mass flux that explicitly includes the atmospheric wind speed. We demonstrate that the model can account for the variations in plume height observed during the first explosive phase of the 2010 Eyjafjallaj?kull eruption using independently measured wind speeds and show that changes in the observed plume height are better explained by changing meteorology than abrupt changes in the source mass flux. This study shows that unless the wind is properly accounted for, estimates of the source mass flux during an explosive eruption are likely to be very significant underpredictions of the volcanic source conditions. Key Points Volcanic plumes are affected by wind Estimate of source mass flux for wind-blown plumes Observations of plume height variations accounted for by meteorology
机译:目前从羽流高度的观测值得出的火山源质量通量估计值对航空和人口危害的灰分扩散模型至关重要。这项研究探讨了大气风在确定火山羽在大气中扩散的高度中的作用,以及在风场中源质量通量和羽高之间的关系。我们提供了一个火山羽流的预测模型,该模型描述了逆风中羽流轨迹的弯曲,并且如果描述了大气风切变的剖面,则表明该模型的预测与历史喷发的数据集是一致的。风限制了火山羽流的上升高度,因此要在多风的环境中获得与羽流相当的上升高度,将需要在静态环境中相对于羽流增加源质量通量一个数量级。我们的模型计算用于校准羽流高度与明确包括大气风速的源质量通量之间的半经验关系。我们证明了该模型可以解释使用独立测量的风速在2010年Eyjafjallaj?kull爆发的第一个爆炸阶段观测到的羽流高度的变化,并表明,通过气象学的改变比观测到的突然变化更好地解释了观测到的羽流高度的变化。源质量通量。这项研究表明,除非适当地考虑了风,否则在爆发性喷发过程中对源质量通量的估计可能对火山源条件的预测非常重要。关键点火山羽流受风影响估计风吹羽流的源质量通量气象观测到的羽流高度变化

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