Research of Super Typhoon Lekima: forecast, observation, numerical simulation and disaster survey
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Earth and Planetary Sciences
Link
https://link.springer.com/content/pdf/10.1007/s11707-021-0929-2.pdf
Reference6 articles.
1. Bai L, Meng Z, Huang L, Yan L, Li Z, Mai X, Huang Y, Yao D, Wang X (2017). An integrated damage, visual, and radar analysis of the 2015 Foshan, Guangdong, EF3 Tornado in China produced by the landfalling Typhoon Mujigae (2015). Bull Am Meteorol Soc, 98(12): 2619–2640
2. Ebert E E, McBride J (2000). Verification of precipitation in weather systems: determination of systematic errors. J Hydrol, 239: 179–202
3. Mori N, Kato M, Kim S, Mase H, Shibutani Y, Takemi T, Tsuboki K, Yasuda T (2014). Local amplification of storm surge by Super Typhoon Haiyan in Leyte Gulf. Geophys Res Lett, 41(14): 5106–5113
4. Tay C W J, Yun S H, Chin S T, Bhardwaj A, Jung J, Hill E M (2020). Rapid flood and damage mapping using synthetic aperture radar in response to Typhoon Hagibis, Japan. Sci Data, 7(1): 100
5. Yang S, Tang X, Zhong S, Chen B, Zhou Y, Gao S, Wang C (2019). Convective bursts episode of the rapidly intensified Typhoon Mujigae (2015). Adv Atmos Sci, 36: 541–556
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1. Response of Sea Surface Temperature and Chlorophyll-a to Typhoon Lekima (2019);Atmosphere;2024-07-31
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