Collaborative Research: Dynamics and Predictability of Tropical Weather and Climate through Cloud-resolving Ensemble Assimilation of Sounding and Radar Observations from DYNAMO
Collaborative Research: Dynamics and Predictability of Tropical Weather and Climate through Cloud-resolving Ensemble Assimilation of Sounding and Radar Observations from DYNAMO
批准号:
1305798
负责人:
Fuqing Zhang
金额:
$47.68万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-05-01 至 2018-04-30
中文摘要
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英文摘要
The Madden-Julian Oscillation (MJO), which is the dominant mode of the tropical atmosphere at intraseasonal time scales, has significant impacts on many aspects of weather and climate across the globe. While the basic features of the MJO have been revealed by observations for many years, its underlying dynamics remain poorly understood and current generation numerical weather and climate models have low skills in simulating and predicting MJO events. The recently completed NSF-sponsored Dynamics of the Madden-Julian Oscillation (DYNAMO) field campaign targeted processes critically related to MJO initiation in the Indian Ocean.This grant seeks to use ensemble-based data assimilation (EnDA) based on the Weather Research and Forecasting (WRF) model to explore the dynamics and predictability of tropical weather and climate from convective to intraseasonal scales by assimilating radar, sounding, and satellite observations collected during DYNAMO. The DYNAMO observations of particular interest to the research are those from three Doppler radars, and those from an enhanced mesoscale sounding network. Major objectives of the research include: (1) exploring the most reliable and effective EnDA methods for tropical weather analysis and forecasts ranging from convective to regional scales by comparing different variational, ensemble-based and hybrid data assimilation approaches; (2) conducting convective- and regional-scale reanalysis using the most accurate and affordable EnDA method over the entire DYNAMO period, and verify with regular and field observations as well as existing global analysis or reanalysis; and (3) examining the dynamics and predictability of tropical weather and climate (including the MJO) from convective to intraseasonal scales using convection-permitting (i.e., very high temporal and spatial resolution) ensemble analysis and forecasting.Intellectual merits: The combination of the EnDA technique with field observations constitutes a potentially significant advance in data assimilation, and our understanding of the dynamics, evolution, prediction, and predictability of tropical weather and climate from convective to intraseasonal scales. The analysis and forecasts also provide an efficient pathway to bridge the understandings of tropical weather and climate from convective to intraseasonal scales.Broader impacts: The research efforts will provide educational benefits through the extensive participation of a doctoral graduate student and a postdoctoral scientist. Research findings will also be directly used in classroom teaching and for directing undergraduate research projects. The findings on the initialization, prediction, and predictability of MJO events will improve operational forecasts of tropical weather and climate, providing a direct benefit to the general public, whether they live in the tropics or in areas around the world that are affected by MJO events. The EnDA systems developed from this support, and the reanalysis of DYNAMO observations by WRF simulations, will be made freely available online with ample documentation to benefit the larger academic community.
期刊论文(8)
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DOI:
10.1175/jas-d-17-0092.1
发表时间:
2017-12
期刊:
Journal of the Atmospheric Sciences
影响因子:
3.1
作者:
[Juan Fang;O. Pauluis;Fuqing Zhang]
通讯作者:
Juan Fang;O. Pauluis;Fuqing Zhang
The influence of sea- and land-breeze circulations on the diurnal variability in precipitation over a tropical island
海陆风环流对热带岛屿降水日变化的影响
DOI:
10.5194/acp-17-13213-2017
发表时间:
2017
期刊:
Atmospheric Chemistry and Physics
影响因子:
6.3
作者:
[Zhu, Lei, Meng, Zhiyong, Zhang, Fuqing, Markowski, Paul M.]
通讯作者:
Markowski, Paul M.
Potentials in Improving Predictability of Multiscale Tropical Weather Systems Evaluated through Ensemble Assimilation of Simulated Satellite-Based Observations
通过模拟卫星观测的集合同化评估提高多尺度热带天气系统可预测性的潜力
DOI:
10.1175/jas-d-17-0245.1
发表时间:
2018
期刊:
Journal of the Atmospheric Sciences
影响因子:
3.1
作者:
[Ying, Yue, Zhang, Fuqing]
通讯作者:
Zhang, Fuqing
Reconstruction of Thermodynamic Cycles in a High-Resolution Simulation of a Hurricane
飓风高分辨率模拟中热力学循环的重建
DOI:
10.1175/jas-d-16-0353.1
发表时间:
2017
期刊:
Journal of the Atmospheric Sciences
影响因子:
3.1
作者:
[Pauluis, Olivier M., Zhang, Fuqing]
通讯作者:
Zhang, Fuqing
DOI:
10.5194/acp-18-1003-2018
发表时间:
2017-07
期刊:
Atmospheric Chemistry and Physics
影响因子:
6.3
作者:
[Xingchao Chen;O. Pauluis;Fuqing Zhang]
通讯作者:
Xingchao Chen;O. Pauluis;Fuqing Zhang
共 7 条
Dynamics and Impacts of Mesoscale Gravity Waves in the Moist Baroclinic Jet-Front Systems
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批准号:1114849
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项目类别:Continuing Grant
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资助金额:$49.26万
-
财政年份:2011
-
负责人:Fuqing Zhang
-
依托单位:
Doppler Radar Observations and Ensemble-Based Data Assimilation for Cloud-Resolving Hurricane Prediction
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批准号:0840651
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项目类别:Standard Grant
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资助金额:$55.01万
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财政年份:2009
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负责人:Fuqing Zhang
-
依托单位:
Dynamics and Impacts of Mesoscale Gravity Waves in Baroclinic Jet-Front Systems
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批准号:0904635
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项目类别:Continuing Grant
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资助金额:$25.05万
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财政年份:2008
-
负责人:Fuqing Zhang
-
依托单位:
Dynamics and Impacts of Mesoscale Gravity Waves in Baroclinic Jet-Front Systems
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批准号:0618662
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项目类别:Continuing Grant
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资助金额:$40.0万
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财政年份:2006
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负责人:Fuqing Zhang
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依托单位:
The Effects of Tropical Waves on the Formation and Structure of Tropical Cyclones
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批准号:0630364
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项目类别:Standard Grant
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资助金额:$0.0万
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财政年份:2006
-
负责人:Fuqing Zhang
-
依托单位:
Collaborative Research: ITR--Ensemble-Based State Estimation for a Next-Generation Weather Forecasting Model
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批准号:0205599
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项目类别:Standard Grant
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资助金额:$0.0万
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财政年份:2002
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负责人:Fuqing Zhang
-
依托单位:
Dynamics and Impacts of Mesoscale Gravity Waves
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批准号:0203238
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项目类别:Continuing Grant
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资助金额:$22.48万
-
财政年份:2002
-
负责人:Fuqing Zhang
-
依托单位:
国内基金
海外基金
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