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Adaptation to Climate Change in the Lake Champlain Basin: New Understanding through Complex Systems Modeling

Adaptation to Climate Change in the Lake Champlain Basin: New Understanding through Complex Systems Modeling
尚普兰湖盆地适应气候变化:通过复杂系统建模的新认识
批准号:
1101317
负责人:
Judith Van Houten
金额:
$2000.0万
依托单位国家:
美国
项目类别:
Cooperative Agreement
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-09-01 至 2016-11-30

项目摘要

项目成果

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中文摘要
翻译
摘要提案编号:EPS-1101317提案标题:尚普兰湖流域气候变化适应:通过复杂系统建模的新认识机构:佛蒙特州立大学农学院项目负责人&:Judith货车Houten佛蒙特州EPSCoR的研究基础设施改进(RII)提案(VT EPSCoR)通过建立两个中心,适应气候变化研究中心(RACC)和劳动力发展和多样性中心(CWDD)。资助的参与者包括约翰逊州立学院(JSC),米德尔伯里学院(MC),圣迈克尔?佛蒙特大学(UVM)。佛蒙特州社区学院(CCV)是一个没有资金的合作伙伴。该项目将建立社会和自然科学家的跨学科团队,研究尚普兰湖流域作为一个受气候变化影响的耦合人类和自然系统,重点是复杂的系统建模。科学家们将调查内源性湖泊过程(例如内部负荷,冰盖和水动力学)与外源性湖泊过程(例如土地利用变化,雪/雨时间,风暴强度,土地管理)对藻类水华的相对重要性。科学家们将使用广泛的情景测试来研究如何设计和实施适应性管理,以应对气候变化和土地利用。生态系统和水的研究的中心主题,以及佛蒙特州科学和技术(ST计划),以及国家和国际interests.Intellectual MeritThis项目将解决如何气候变化和土地利用的相互作用改变水文过程和营养物质运输内尚普兰湖流域,并调查由此产生的影响,适应性管理战略。区域气候变化协调委员会将利用现有的流域研究和生物物理研究,并通过将这些研究与社会经济和治理研究相结合来增加重要价值。该项目将结合联合收割机广泛的观察和监测与两个贡献流域和10个较小集水区的建模。更广泛的影响应对气候和土地利用变化的水资源管理是一个科学问题,在美国和国际上具有广泛的适用性。项目?多尺度方法具有广泛适用的潜力,因为它包括对气候变化、城市/农业变化和社会生态界面等更广泛的全球环境问题的调查。该项目将继续VT?我们非常成功的Streams项目,旨在向高中生、教师和本科生推广,这对劳动力发展和鼓励STEM中代表性不足的少数民族追求科学事业产生了重大影响。CWDD将整合劳动力和多样性的努力,并将提供一套广泛的方法,以推广到公众和小企业的工作,以鼓励整个国家的经济发展。
英文摘要
ABSTRACTProposal Number: EPS-1101317Proposal Title: Adaptation to Climate Change in the Lake Champlain Basin:New Understanding through Complex Systems ModelingInstitution: University of Vermont & State Agricultural CollegeProject Director: Judith Van HoutenThis Research Infrastructure Improvement (RII) proposal from Vermont EPSCoR (VT EPSCoR) is focused on understanding the effects of changing climate and land use on the Lake Champlain Basin through the creation of two centers, the Center for Research on Adaptation to Climate Change (RACC) and the Center for Workforce Development and Diversity (CWDD). Funded participants include Johnson State College (JSC), Middlebury College (MC), St. Michael?s College (SMC), and University of Vermont (UVM). The Community College of Vermont (CCV) is an unfunded partner.The project will build transdisciplinary teams of social and natural scientists to study the Lake Champlain Basin as a coupled human and natural system affected by climate change, with an emphasis on complex systems modeling. Scientists will investigate the relative importance of endogenous in-lake processes (e.g. internal loading, ice cover, and hydrodynamics) versus exogenous to-lake processes (e.g. land use change, snow/rain timing, storm intensity, land management) to algal blooms. Scientists will use extensive scenario testing to investigate how adaptive management can be designed and implemented to respond to climate change and land use. The central theme of ecosystem and water research aligns well with Vermont State Science and technology (S&T plan), as well as national and international interest.Intellectual MeritThis project will address how the interaction of climate change and land use alter hydrological processes and nutrient transport within the Lake Champlain Basin, and investigate the resulting implications for adaptive management strategies. The RACC will leverage existing watershed studies and biophysical and add significant value through its integration of those studies with socio-economic and governance studies. The project will combine extensive observations and monitoring with modeling of two of the contributing watersheds and 10 smaller catchments. Broader ImpactsManagement of water resources in response to climate and land use changes is a scientific issue that has broad applicability across the US and internationally. The project?s multi-scale approach has the potential to be broadly applicable, in that it includes the investigation of broader global environmental issues of climate change, urban/agricultural change, and the socio-ecological interfaces. The project will be continuing VT?s very successful Streams project for outreach to high school students and teachers and undergraduates, which has shown a significant impact in workforce development and in encouraging underrepresented minorities in STEM to pursue science careers. The CWDD will integrate workforce and diversity efforts, and will offer an extensive suite of approaches to outreach to the general public and work with small businesses to encourage economic development across the state.
期刊论文(1)
专著(0)
科研奖励(0)
会议论文
Coupling of reactive riverine phosphorus and iron species during hot transport moments: impacts of land cover and seasonality
热运输时刻河流活性磷和铁物质的耦合:土地覆盖和季节性的影响
DOI: 10.1007/s10533-016-0290-9
发表时间: 2017
期刊: Biogeochemistry
影响因子: 4
作者: [Rosenberg, Braden D., Schroth, Andrew W.]
通讯作者: Schroth, Andrew W.
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Collaborative Research: North East Cyberinfrastructure Consortium
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