Collaborative Research: P2C2--Coral Proxy and Climate Model Comparison to understand Climate Variability in the Intra-Americas Sea Region
Collaborative Research: P2C2--Coral Proxy and Climate Model Comparison to understand Climate Variability in the Intra-Americas Sea Region
批准号:
2102970
负责人:
Elinor Martin
金额:
$33.51万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2021
资助国家:
美国
项目状态:
未结题
起止时间:
2021-07-01 至 2025-06-30
中文摘要
包括加勒比海和墨西哥湾在内的美洲海洋被认为对全球气候变化高度敏感,对这一拥有1.2亿人口的区域产生直接的社会和经济影响。 它是美洲降水的主要水分来源,并包含西半球暖池,驱动夏季降水和飓风强度和频率。大气环流模式(GCM)和海表温度数据(SST)在这一地区的比较,但是,揭示了大冷SST和干降水的偏见,阻碍了预测未来的气候变率在这一地区。该项目的目的是利用模式数据比较来描述和评估美洲海洋的SST和水文气候变异性,目的是查明模式技能的弱点,以改进今后的预测。具体来说,研究人员将使用1850年以来七个地点的珊瑚重建水文气候和SST。这些新的过去的气候记录和它们的直接观测和模式的比较将被用来调查的机制,通过该地区的年代际SST变化影响水文气候在该地区和北美。该项目将利用现有的SST重建,并从现有的样本中产生新的珊瑚记录,以解决GCM,观测SST记录和古气候SST重建之间的差异。潜在的更广泛的影响包括在IAS区域过去的海表温度和水文气候的时空数据覆盖范围的扩大。其他BI包括对十年时间尺度气候变率的更好理解,其驱动因素以及与大尺度大气环流的联系。确定时间段和地理区域,气候模型失去了复制IAS中水文气候变率的技能,并了解这些缺陷的原因,对于提高对IAS气候的科学理解以及它如何影响包括美国在内的周边陆地地区非常重要。美洲海内和沿着国家易受热带气旋、海平面上升和可用水减少的影响。此外,它还将为美洲和加勒比的资源管理人员改进模型衍生产品。该项目将通过现有的“应对气候变化的管理”在线课程开展外联活动,研究人员将提供西班牙语、法语和克里奥尔语的翻译,供各利害关系方用于气候教育。此外,该项目还将支持本科生和研究生以及博士后研究人员的科学培训和专业发展。该奖项反映了NSF的法定使命,并通过使用基金会的知识价值和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
The inter-American Seas, which include the Caribbean Sea and the Gulf of Mexico, is identified as highly sensitive to global climate variability with direct social and economic ramifications for this region of 120 million people. It is a primary moisture source for precipitation in the Americas and contains the Western Hemisphere Warm Pool that drives summer precipitation and hurricane intensity and frequency. The comparison of General circulation models (GCM) and Sea Surface Temperature data (SST) in this region, however, reveals large cold SST and dry precipitation biases hampering predictions of future climate variability in this region. This project aims to characterize and assess SST and hydroclimate variability in the Inter-American Seas using model-data comparison with the goal of pinpointing weaknesses in model skills to improve future projections. Specifically, the researchers will produce reconstructions of hydroclimate and SST using coral from seven locations back to 1850. These new past climate records and their comparison to direct observations and models will be used to investigate the mechanisms through which decadal SST variability in this region impacts the hydroclimate in the region and North America. The project will leverage existing SST reconstructions and produce new coral records from existing samples to address discrepancies among GCM, observational SST records, and paleoclimate SST reconstructions.The potential Broader Impacts include an expansion of the temporal and spatial data coverage of past sea surface temperature and hydroclimate in the IAS region. Other BI include a greater understanding of climate variability at decadal time scales, its drivers and links to large scale atmospheric circulation. Identifying time periods and geographic areas where climate models lose skill in replicating hydroclimate variability in the IAS and understanding the causes for such deficiencies is important for improving the scientific understanding of IAS climate and how it impacts the surrounding land regions, including the United States. Countries within and along the Inter-American Seas are vulnerable to tropical cyclones, sea-level rise, and decreased water availability. Further, it will improve model derived products for resource managers in the Americas and Caribbean. The project will develop outreach activities through an existing online course “managing for a changing climate” for which the researchers will provide translation in Spanish, French and Creole than can be used for climate education by various stakeholders. Additionally, the project will support the scientific training and professional development of undergraduate and graduate students, as well as a postdoctoral researcher.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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CAREER: Precipitation Variability Across Multiple Timescales
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批准号:1944177
-
项目类别:Standard Grant
-
资助金额:$94.04万
-
财政年份:2020
-
负责人:Elinor Martin
-
依托单位:
PREEVENTS Track 2: Collaborative Research: Developing a Framework for Seamless Prediction of Sub-Seasonal to Seasonal Extreme Precipitation Events in the United States
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批准号:1663840
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项目类别:Continuing Grant
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资助金额:$184.26万
-
财政年份:2017
-
负责人:Elinor Martin
-
依托单位:
国内基金
海外基金
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