China Safety Science Journal ›› 2022, Vol. 32 ›› Issue (9): 76-85.doi: 10.16265/j.cnki.issn1003-3033.2022.09.2649
• Public safety • Previous Articles Next Articles
ZHOU Yong1(), YANG Bo2, TANG Wei1,**(
), LI Yue'an2, WANG Yuedong2, LI Zechun2
Received:
2022-03-10
Revised:
2022-06-18
Online:
2022-10-19
Published:
2023-03-28
Contact:
TANG Wei
ZHOU Yong, YANG Bo, TANG Wei, LI Yue'an, WANG Yuedong, LI Zechun. Overview of development of public safety-oriented meteorological monitoring, forecasting and early warning software[J]. China Safety Science Journal, 2022, 32(9): 76-85.
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URL: http://www.cssjj.com.cn/EN/10.16265/j.cnki.issn1003-3033.2022.09.2649
Tab.1
Main deterministic global numerical weather forecast system in World Meteorological Centres
机构 | 系统 | 最长预 报时 效/h | 水平分 辨率 | 垂直 层数 |
---|---|---|---|---|
澳大利亚 气象局 | 社区气候和 地球系统 模拟器 | 240 | ~25 km | 70 |
中国气 象局 | 中国气象局全 球天气模式 | 240 | 0.25°×0.25° | 60 |
加拿大 气象局 | 全球确定性 预测系统 | 240 | 0.23°×0.23° | 80 |
德国气 象局 | 二十面体非静 力全球数值 预报模式 | 180 | 13 km | 90 |
ECMWF | 高分辨率集合 预报系统 | 240 | ~9 km | 137 |
日本气 象厅 | 全球谱模式 | 264 | 0.187 5°× 0.187 5° | 100 |
美国环境 预报中心 | 全球预报系统 | 384 | 0.25°×0.25° | 64 |
英国气 象局 | 统一模式 | 144 | 10 km | 70 |
俄罗斯 气象局 | 半拉格朗日 绝对涡度大 气模式 | 240 | (0.16×0.24)°× 0.225° | 51 |
[1] |
许小峰. 安全生产与气象[M]. 北京: 气象出版社, 2017: 1-37.
|
[2] |
梁海河, 孟昭林, 张春晖, 等. 综合气象观测运行监控系统[J]. 气象, 2011, 37(10):1292-1300.
|
|
|
[3] |
裴翀, 宋连春, 吴可军, 等. 我国综合气象观测运行监控系统的设计与实践[J]. 气象, 2011, 37(2):213-218.
|
|
|
[4] |
郭建平, 刘博铭, 郭晓冉, 等. 风廓线雷达组网观测新型应用研究进展[J]. 气象科技进展, 2021, 11(2):5-12,51.
|
[5] |
韩丰, 沃伟峰. SWAN2.0系统的设计与实现[J]. 应用气象学报, 2018, 29(1):25-34.
|
|
|
[6] |
俞小鼎, 郑永光. 中国当代强对流天气研究与业务进展[J]. 气象学报, 2020, 78(3):391-418.
|
|
|
[7] |
林青云, 何建新, 王皓, 等. 基于双偏振天气雷达的水凝物相态识别技术研究进展[J]. 遥感技术与应用, 2020, 35(3):517-526.
|
|
|
[8] |
doi: 10.5194/amt-9-4425-2016 |
[9] |
|
[10] |
doi: 10.3390/rs12142179 |
[11] |
doi: 10.1007/s00376-019-8215-x |
[12] |
唐伟, 周勇, 董昊, 等. 我国气象领域应用人工智能技术的现状和国际对比[J]. 气象科技进展, 2019, 9(5):55-56,62.
|
[13] |
沈学顺, 王建捷, 李泽椿, 等. 中国数值天气预报的自主创新发展[J]. 气象学报, 2020, 78(3):451-476.
|
|
|
[14] |
王毅, 周庆亮, 代刊, 等. 全球数据处理和预报系统发展及展望[J]. 气象科技进展, 2019, 9(2):6-10.
|
|
|
[15] |
李月安, 曹莉, 高嵩, 等. MICAPS预报业务平台现状与发展[J]. 气象, 2010, 36(7):50-55.
|
|
|
[16] |
高嵩, 毕宝贵, 李月安, 等. MICAPS4预报业务系统建设进展与未来发展[J]. 应用气象学报, 2017, 28(5):513-531.
|
|
|
[17] |
蒋宗孝, 李良宗, 邓晓璐, 等. 地面气象观测智能监控平台设计[J]. 海峡科学, 2019(8):20-24.
|
[18] |
卫星君, 赵晓萌, 马长玲, 等. 降雨型滑坡灾害的约简和逻辑回归预测模型[J]. 中国安全科学学报, 2018, 28(8):1-6.
doi: 10.16265/j.cnki.issn1003-3033.2018.08.001 |
doi: 10.16265/j.cnki.issn1003-3033.2018.08.001 |
|
[19] |
周勇, 胡爱军, 杨诗芳, 等. 智慧气象的内涵与特征研究[J]. 中国信息化, 2016(3):83-88.
|
[20] |
明承瀚, 徐晓林, 王少波. 政务数据中台:城市政务服务生态新动能[J]. 中国行政管理, 2020(12):33-39,89.
|
|
|
[21] |
张弛. 数据中台在应对突发公共事件中的核心价值研究[J]. 华中科技大学学报:社会科学版, 2021, 35(1):77-84.
|
|
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