对降水的稳定同位素组成的监测揭示了雷暴动态
Ana-Voica Bojar1,2, Christophe Lécuyer3,4, Hans-Peter Bojar2
1Department of Geology, Salzburg University, Salzburg, Austria.
Isotopes in environmental and health studies
|July 27, 2024
概括
2019年欧洲的热浪随之而来的是严重的风暴. 罗马尼亚风暴降雨的稳定同位素分析揭示了独特的湿度模式和凝结动态,为极端天气事件提供了洞察力.
科学领域:
- 大气科学 大气科学
- 水文学的水文学
- 同位素地球化学 同位素地球化学
背景情况:
- 2019年欧洲夏季经历了严重的热浪,干旱和随后带有冰和大雨的破坏性雷暴.
- 这些极端天气事件造成了严重的区域作物损害.
研究的目的:
- 为了研究罗马尼亚西南部一个大而持久的风暴细胞的动态.
- 用稳定的同位素和气象数据分析风暴降水,以了解风暴演变.
主要方法:
- 风暴降水的高时间分辨率采样,寻找稳定的同位素 (和氧).
- 测量降雨量和空气温度.
- 应用一个数值雷利凝结模型与非恒定的同位素分离因子.
主要成果:
- 稳定同位素分析显示,V形模式的时间趋势下降,表明雨带连续补充水分.
- 风暴涉及四个连续的潮湿阵线,每一个都遵循雷利分布.
- 大约40%的水蒸气由于增热冷却而凝结,当露点不能再维持时,凝结会停止.
结论:
- 风暴的特征,包括其持续时间,时间和规模,表明它是一个中等层次的对流复合体.
- 稳定同位素数据和建模提供了对极端对流风暴中降水控制的微物理过程的见解.
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