Convection-Permitting Models for Climate Research

Convection-Permitting Models for Climate Research
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气候研究的对流允许模型

DOI:
10.1175/bams-d-21-0043.1
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发表时间:
2022
影响因子:
8
通讯作者:
Wu Ying-Hsin
Wu Ying-Hsin
中科院分区:
地球科学1区
文献类型:
--
作者:
Takayabu Izuru;Rasmussen Roy;Nakakita Eiichi;Prein Andreas;Kawase Hiroaki;Watanabe Shun-Ichi;Adachi Sachiho A.;Takemi Tetsuya;Yamaguchi Kosei;Osakada Yukari;Wu Ying-Hsin

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第四届国际允许对流建模研讨会原计划于2020年9月在日本京都面对面举行,但由于新冠肺炎的情况,改成了虚拟会议。由于新冠肺炎疫情仍在持续,我们在2021年9月又举行了一次虚拟会议。由于允许对流模拟(CPM)领域的快速发展,我们认为今年有必要主办一个虚拟研讨会,以维持社区互动,并提供一个展示和讨论科学进展的论坛。虚拟研讨会于2020年9月2日至4日举行,重点是利用允许对流模拟在全球和地方尺度上模拟中尺度过程和极端事件,并使用允许对流模拟数据进行危害和影响评估。重点介绍了CPM研究的最新进展,并讨论了关键挑战。讲习班有来自23个国家和地区的324人参加,共举行了四次会议,并作了特邀发言(图1)。在2020年9月2日至4日举行的现场讨论之前,与会者能够观看演讲并提出书面问题。这些问题在现场讨论期间得到了回答。讨论过程的录音也可通过上述网站查阅。在下文中,我们提供每个会议的简要总结,并通过确定未来可能的研究领域来结束。
The 4th International Convection-Permitting Modeling Workshop, originally planned as an in-person meeting for September 2020 in Kyoto, Japan, was converted to a virtual meeting due to the COVID-19 situation. We held another virtual meeting in September 2021 due to the ongoing COVID-19 pandemic. Because of the rapid development of the convection-permitting modeling (CPM) field, we felt the need to host a virtual workshop this year to maintain community interactions and to provide a forum where scientific advances are presented and discussed.The virtual workshop was held 2–4 September 2020 with a focus on the simulation of mesoscale processes and extreme events with CPMs at global and local scales and the use of CPM data for hazard and impact assessments. Recent advancements in CPM research were highlighted and key challenges were discussed. The workshop had 324 participants from 23 countries and regions and featured four sessions with invited presentations (Fig. 1). Participants were able to watch the presentations and ask written questions before the live discussion sessions, which occurred on 2–4 September 2020. The questions were answered during the live discussion period. A recording of the discussion sessions can also be accessed through the above website. In the following, we provide a brief summary of each session and conclude by identifying potential future research areas.
增强 Noah-MP 陆地表面模型中的水文过程以提高季节性预报技能
DOI: --
发表时间: 2018
期刊: --
影响因子: --
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发表时间: 2019
期刊: Philosophical transactions. Series A, Mathematical, physical, and engineering sciences
影响因子: --
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