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Coarse sea spray keeps lightning strikes away, study finds

Researchers discover why there's less lightning in storms over oceans than on land

Date:
August 8, 2022
Source:
The Hebrew University of Jerusalem
Summary:
Larger, coarse sea spray reduces the amount of lightning by as much as 90 percent, whereas smaller aerosols increase lightning. The size of particle also affects rainfall.
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As the world grapples with the cataclysmic events associated with climate change, it is increasingly important to have accurate climate models that can help predict what might lie ahead.

Research at the Hebrew University of Jerusalem (HU)'s Institute of Earth Sciences, led by Professor Daniel Rosenfeld and his doctoral student Zengxin Pan, focused on the role of small particles (aerosols) in controlling the amount of rain and lightning produced by clouds. Their research has been able to explain why heavy ocean storms are accompanied by much less lightning than when a similar event occurs on land. They identified that it is the larger, coarse sea spray that reduces the amount of lightning by as much as 90%, whereas smaller aerosols increase lightning. The size of particle also affects rainfall. Their work clearly shows that the role of aerosols in clouds needs to be incorporated in climate models.

Rosenfeld's findings, published inNature Communications, fill in the gaps in previous theories about what was responsible for the difference in lightning between land and ocean storms. It had always been assumed that the dearth of lightning in ocean storms was due to cleaner air over the ocean. However, keen observations had already shown that even highly polluted air is associated with reduced lightning at sea when sea spray aerosols are abundant.

The HU researchers in collaboration with scientists at Wuhan and Nanjing Universities in China, and the University of Washington, were able to use satellite imagery to track clouds over land and sea. This was combined with lightening measurements from the Worldwide Lightning Location Network (WLLN) and with data that provided information on the amount of aerosols in the clouds. "We found a major cause for such a difference between ocean storms and those on land," shared Rosenfeld. "The effect of aerosols on clouds has been underappreciated. It needs to be incorporated into the models for better weather and climate prediction."

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Materials provided byThe Hebrew University of Jerusalem.注意:内容可能被编辑风格d length.


Journal Reference:

  1. Zengxin Pan, Feiyue Mao, Daniel Rosenfeld, Yannian Zhu, Lin Zang, Xin Lu, Joel A. Thornton, Robert H. Holzworth, Jianhua Yin, Avichay Efraim, Wei Gong.Coarse sea spray inhibits lightning.Nature Communications, 2022; 13 (1) DOI:10.1038/s41467-022-31714-5

Cite This Page:

耶路撒冷的希伯来大学。“海粗spray keeps lightning strikes away, study finds: Researchers discover why there's less lightning in storms over oceans than on land." ScienceDaily. ScienceDaily, 8 August 2022. /releases/2022/08/220808162220.htm>.
耶路撒冷的希伯来大学。(2022, August 8). Coarse sea spray keeps lightning strikes away, study finds: Researchers discover why there's less lightning in storms over oceans than on land.ScienceDaily. Retrieved August 15, 2023 from www.koonmotors.com/releases/2022/08/220808162220.htm
耶路撒冷的希伯来大学。“海粗spray keeps lightning strikes away, study finds: Researchers discover why there's less lightning in storms over oceans than on land." ScienceDaily. www.koonmotors.com/releases/2022/08/220808162220.htm (accessed August 15, 2023).

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